Maxmium Strength Lipo-Drex Ingredients & Drug Interactions
by iSatori
What is this page for?
First and foremost: checking Maxmium Strength Lipo-Drex against your medications. The heart of this page is the interaction checker and the full interaction report — how this product’s ingredients may interact with prescription and over-the-counter medicines you may be taking.
Around that, we add a pharmacist’s high-level view of the product as a whole — what’s inside, the evidence for its stated use, how transparent the label is, and what safety data exists — so you can see the full picture in one place. It’s educational information from our licensed clinical databases and the clinical staff at HelloPharmacist — not medical advice — and we don’t sell or endorse products. Our editorial policy
Maxmium Strength Lipo-Drex is a dietary supplement by iSatori with 15 active ingredients. Its ingredients are commonly taken for energy and reduced fatigue, focus and mental alertness, mood support.Based on those ingredients, 1,635 medications have a known interaction with it, the most serious rated major. The ingredients most likely to interact are Green Tea (leaf) extract, Berberine HCl, Yohimbe (Pausinystalia yohimbe) (bark) extract. Use the checker below to test your specific medication, or read the full HelloPharmacist Interaction Report.
Check Your Meds Against Maxmium Strength Lipo-Drex by iSatori
Ask about any prescription or over-the-counter medication and we check it for interactions with Maxmium Strength Lipo-Drex by iSatori — and tell you which ingredient is responsible.
AI summaries are generated from our interaction database for education only — always confirm with your pharmacist. How we use AI
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HelloPharmacist Scorecard of Maxmium Strength Lipo-Drex by iSatori
Our pharmacy team’s full take, with four database checks built into the cards below — a summary of what is known, not a grade of the product itself.
What’s inside
Low disclosure
Maxmium Strength Lipo-Drex contains 15 active ingredients. The main ones are caffeine anhydrous (a stimulant), yohimbine (from yohimbe bark), N-acetyl L-carnitine, theacrine, berberine HCl, L-ornithine, and plant extracts: blackberry, aronia (chokeberry), purple corn, black pepper, bacopa, theobromine (cocoa), green tea, coleus (forskolin), and cayenne.
Several blend containers in the formula house multiple ingredients together — Yohimbe bark extract, ATTAK Mental Drive Complex, C3GMAX Nutrient Partitioning/Cutting Matrix, and THERMO-VAR Thermo-Burn Matrix/Appetite Control — so their exact sub-components aren't broken out separately. The product also contains inactive ingredients: gelatin, microcrystalline cellulose, vegetable magnesium stearate, silicon dioxide, titanium dioxide, and food colorings (blue #1 and red #40).
Does it work?
Strong evidence
The evidence for this product's effectiveness varies by ingredient and claimed use. Caffeine is effective for neonatal apnea and postoperative headache, and likely effective for mental alertness and athletic performance.
N-acetyl L-carnitine is possibly effective for age-related cognitive decline, Alzheimer disease, alcohol use disorder, diabetic neuropathy, and depression. Berberine is possibly effective for high cholesterol, polycystic ovary syndrome, H. pylori infection, high blood pressure, and diabetes.
Green tea is likely effective for human papillomavirus (HPV) and possibly effective for ovarian cancer and high cholesterol. Cayenne is likely effective for postherpetic neuralgia and diabetic neuropathy, and possibly effective for cluster headache, back pain, and postoperative nausea.
For most other ingredients — yohimbine, theacrine, L-ornithine, blackberry, aronia, purple corn, black pepper, bacopa, theobromine, and coleus — the evidence in our data is rated insufficient, meaning it's not established whether they work for their claimed purposes.
How safe is it?
Well-documented data
Caffeine in moderate doses is generally well tolerated, though high amounts can cause serious side effects; common ones include anxiety, tremor, headache, insomnia, nausea, and restlessness, and rarely stroke. Yohimbine carries significant caution: it can cause serious heart and blood pressure effects, and supplement potency is unpredictable.
The safety data advises against yohimbine in pregnancy and while breastfeeding. N-acetyl L-carnitine is generally well tolerated short-term, but long-term safety isn't fully established; there isn't enough data to know whether it's safe in pregnancy or breastfeeding.
Theacrine short-term use appears generally well tolerated, but long-term safety is unknown; avoid during pregnancy and breastfeeding due to insufficient data. Berberine is generally tolerated short-term but can cause digestive side effects and interacts with many medicines; the safety data advises against it in pregnancy and while breastfeeding.
L-ornithine, blackberry, aronia, purple corn, black pepper, bacopa, and coleus similarly lack sufficient pregnancy and breastfeeding safety data — the safety data advises against use or recommends caution. Green tea and cayenne (theobromine/cocoa) have similar pregnancy profiles: possibly safe, though high doses should be limited.
For breastfeeding, all caffeine-containing ingredients (caffeine, theacrine, cocoa, green tea) pass into breast milk in small amounts; moderate intake is generally considered acceptable but can affect the baby.
Meds to double-check
Major interaction found
Before starting this product, double-check with your doctor or pharmacist if you take: stimulant drugs, ephedrine, monoamine oxidase inhibitor (MAOI) antidepressants, blood pressure medications, calcium channel blockers (heart drugs), nitrates (chest pain medication), beta-blockers like nadolol, blood thinners or antiplatelet drugs, seizure medications, diabetes medications, thyroid hormone, sleep aids (barbiturates), quinolone or other antibiotics, or drugs metabolized by liver enzymes (CYP1A2, CYP2D6, CYP2C9, CYP3A4). No interactions are documented for L-ornithine among the ingredients we could check.
The bottom line
Scorecard at a glanceFormula with limited ingredient disclosure with strong clinical evidence behind its ingredients' uses. Major medication interactions have been identified, and safety information is well characterized.
This is a stimulant-heavy product — if you take any heart, blood pressure, seizure, diabetes, thyroid, blood-thinning, or psychiatric medication, you need to check your exact drugs with your doctor or pharmacist before taking it. The caffeine and yohimbine combination alone is risky for anyone on certain medications, and several other ingredients can slow or speed how your liver clears drugs.
If you're pregnant, breastfeeding, or have high blood pressure, heart problems, or anxiety, talk it over with your healthcare provider first — some ingredients are advised against in these situations.
Educational only — not medical advice; always confirm with your pharmacist. Our editorial policy · How we use AI
Assessment coverage: 15 of 15 active ingredients matched to our full ingredient reviews (monographs). Based on the product label dated May 22, 2020.
This Scorecard evaluates available label information, ingredient evidence, and known medication-safety considerations. It does not independently verify product identity, purity, potency, contamination, or manufacturing quality. How these ratings are computed
General information
Key facts about Maxmium Strength Lipo-Drex, straight from the product label.
| Brand | iSatori |
|---|---|
| Barcode (UPC) | 883488005183 |
| Net contents | 60 Thermo Capsule(s) |
| Market status | On market |
| Date entered into DSLD | May 22, 2020 |
| DSLD ID | 217103 |
| Product type | Other Combinations |
| Supplement form | Capsule |
| Dietary claims / uses | All Other, Structure/Function |
| Intended target group(s) | Adult (18 - 50 Years), Women (not pregnant or lactating) |
Everything in this section is reproduced from the manufacturer’s own product label — it’s the label speaking, not HelloPharmacist. We show it so you can see exactly what the maker states; we don’t verify or endorse those statements.
Supplement Facts
The label details for Maxmium Strength Lipo-Drex by iSatori, sourced from the NIH Dietary Supplement Label Database.
Supplement Facts
| Ingredient | Amount | % DV |
|---|---|---|
| Caffeine Anhydrous | 199.5 mg | -- |
| Yohimbine | 2 mg | -- |
| N-Acetyl L-Carnitine | 0 NP | -- |
| Theacrine | 0 NP | -- |
| Berberine HCl | 0 NP | -- |
| L-Ornithine | 0 NP | -- |
| Blackberry (berry) extract | 0 NP | -- |
| Aronia (Aronia melanocarpa) (fruit) powder | 0 NP | -- |
| Purple Corn (grain) extract | 0 NP | -- |
| Yohimbe (Pausinystalia yohimbe) (bark) extract | 0 NP | -- |
| Black Pepper (fruit) extract | 0 NP | -- |
| ATTAK Mental Drive Complex | 62.5 mg | -- |
| Bacopa | 0 NP | -- |
| Theobromine (Theobroma cacao) (seed) Extract | 0 NP | -- |
| C3GMAX Nutrient Partitioning/Cutting Matrix | 318 mg | -- |
| Green Tea (leaf) extract | 0 NP | -- |
| Coleus forskohlii extract | 0 NP | -- |
| THERMO-VAR Thermo-Burn Matrix/Appetite Control | 327.5 mg | -- |
| Cayenne powder | 0 NP | -- |
Other ingredients: Gelatin, Microcrystalline Cellulose, Vegetable Magnesium Stearate, Silicon Dioxide, Titanium Dioxide, Blue #1, Red #40
Tap any ingredient to jump to its full detail below.
These statements are the manufacturer’s wording, reproduced from the product label — the label is saying it, not HelloPharmacist. We don’t verify or endorse them.
Suggested/Recommended/Usage/Directions
Directions For Use: As a dietary supplement, adults take two servings (2 capsules) 30 minutes prior to your first meal. To assess your tolerance, start by taking one (1) capsule the first time you use this product. Do not exceed 2 capsules per day. Do not take within four (4) hours of sleep. Lipo-Drex can be used on its own or with other iSatori supplements that do not contain caffeine or other stimulants. To be used as part of a resistance training program.
Precautions
Warning: Keep out of reach of children.
This is a strong formula. Consult a physician before use.
Not intended for use by persons under the age of 18, or if you are pregnant, nursing or contemplating pregnancy.
Not intended for use by persons under the age of 18, or if you are pregnant, nursing or contemplating pregnancy.
Do not exceed recommended dose. Do not consume caffeine from other sources, including, but not limited to, coffee, tea, soda, or other dietary supplements or medications containing caffeine.
Do not consume caffeine from other sources, including, but not limited to, coffee, tea, soda, or other dietary supplements or medications containing caffeine.
One serving of Lipo-Drex contains as much caffeine as a large cup of coffee. Do not use for more than eight consecutive weeks.
Consult with your physician prior to use if you are taking any medications, including but not limited to MAOI inhibitors, antidepressants, aspirin, non-steroidal anti-inflammatory drugs, or products containing phylephrine, ephedrine, pseudophedrine, or other stimulants.
California residents Warning: Cancer and reproductive harm - www.P65Warnings.ca.gov/Food
FDA Disclaimer Statement
Consult your physician prior to use if you have a medical condition including but not limited to heart, liver, kidney, or thyroid disease, psychiatric or epileptic disorders, difficulty urinating, diabetes, high blood pressure, cardiac arrhythmia, recurrent headaches, enlarged prostate, or glaucoma. Discontinue use 2 weeks prior to surgery or if you experience rapid heartbeat, dizziness, severe headache, or shortness of breath. Use only as directed. Do not use if packaging has been tampered with.
These statements have not been evaluated by the Food and Drug Administration. This product is not intended to diagnose, treat, cure, or prevent any disease.
Storage
Store in a cool dry place. Avoid excessive heat.
General Statements
Free fat loss success plan inside
For more information on Lipo-Drex, visit iSatori.com/Lipo-Drex
30 Day Supply
The Lipo-Drex difference
(Stock symbol: FTLF)
Formulation
Lose more fat and maintain muscle with Lipo-Drex!
Getting lean and tight means maximizing fat loss and optimizing lean muscle at the same time. iSatori's latest innovation - Lipo-Drex - employs front-line technology known as "nutrient paritioning" to help you not only get leaner, but deliver the muscle maintenance you work so hard for!
Unleash the power of Lipo-Drex and experience the world's foremost accelerated fat loss + muscle maintenance agent!
Made in the USA from international and domestic ingredients.
Fast acting total body fat-loss Burn calories Maintain muscle Energy focus Appetite control
Lipo-Drex is a unique, high potency, custom engineered fat burner that employs cutting-edge technology known as "nutrient partitioning".
Nutrient partitioning not only helps drive the fat loss process, but diverts nutrients like fat and carbs from being stored as fat to being stored in the muscle. This is what contributed to the critical process of muscle maintenance. If you want to transform your body by losing fat and ensuring your muscles are in the best shape possible then Lipo-Drex is the only choice for you. Lipo-Drex is designed with the sole purpose of helping you lose the fat and keep the muscle!
Formula
The combination of C3GMAX Muscle Maintenance Technology, THERMO-VAR Thermo-Burn Blend, and the ATTAK Mental Drive Complex makes Lipo-Drex like nothing you've ever tried before.
Formulated with these premium ingredients/complexes: C3GMAX Capsitherm THERMO-VAR ATTAK TeaCrine BioPerine Theodrene
Nutrient partitioning Carbohydrates and fat from your diet Lipo-Drex with C3GMAX (Cyanidin-3-0-Glucoside) Activates AMPX (5' AMP - Activated Protein Kinase) Decreasing size of fat cells Increasing size of muscle cells
Brand IP Statement(s)
Lipo-Drex, C3GMAX, Capsitherm, THERMO-VAR Thermo-Burn Blend, ATTAK, TheoDrene trademarks owned by FitLife Brands, Inc. TeaCrine is a registered trademark and protected by Patents Pending Serial No. 61/903,362; under exclusive global distribution by Compound Solutions, Inc. BioPerine is a registered trademark of the Sabinsa Corporation.
2017 FitLife Brands, Inc.
Seals/Symbols
Made in the USA
FDA Statement of Identity
Dietary Supplement
Is this label outdated? Report a formula or label change and our pharmacy team will review it.
Maxmium Strength Lipo-Drex by iSatori label
The label scan from the NIH Dietary Supplement Label Database. Tap to enlarge.
Label images are published by the NIH Dietary Supplement Label Database for the version of this product on file. Always read your actual product label.
View the full label (PDF)The Ingredients in Maxmium Strength Lipo-Drex by iSatori
These are the 15 active ingredients this product is made of. Select any to open its full monograph.
Serving size1 Capsule(s) Dosage formCapsule Servings per container60 Amounts shown are per serving.
Most supplement products combine several ingredients, and a medication can interact with the product through any one of them. Each ingredient below shows whether it has known drug interactions.
ATTAK Mental Drive Complex
C3GMAX Nutrient Partitioning/Cutting Matrix
THERMO-VAR Thermo-Burn Matrix/Appetite Control
Other (inactive) ingredients: Gelatin, Microcrystalline Cellulose, Vegetable Magnesium Stearate, Silicon Dioxide, Titanium Dioxide, Blue #1, Red #40. These complete the product’s ingredient list but are not active constituents.
Maxmium Strength Lipo-Drex by iSatori Drug Interactions
HelloPharmacist Interaction Report
Maxmium Strength Lipo-Drex by iSatori interacts with medications through its caffeine, yohimbine, N-acetyl L-carnitine, berberine, aronia, purple corn, black pepper, bacopa, theobromine (cocoa), green tea, coleus, and cayenne content.
The most serious interaction is a Major-severity risk: caffeine combined with ephedrine can increase the risk of life-threatening stimulant side effects like high blood pressure, heart attack, stroke, and seizures.
Read the full breakdown — every affected drug type, severity by severity
Yohimbine and green tea extract also carry Major-severity concerns. Yohimbine with monoamine oxidase inhibitor (MAOI) antidepressants can cause additive effects at high doses.
Green tea can reduce the effectiveness of the beta-blocker nadolol by about 85% and reduce atorvastatin (a statin) levels by roughly 24%. Green tea with ephedrine also risks serious stimulant toxicity.
Coleus (forskolin) has two Major-severity interactions: combined use with nitrate heart medications or calcium channel blockers could dangerously increase blood vessel-widening effects. Berberine carries a Major concern with cyclosporine (an immunosuppressant), raising its blood levels.
Moderate-severity interactions span many drug types: stimulant drugs, blood pressure medications, blood thinners (anticoagulants and antiplatelet agents), seizure medications, antidepressants, diabetes medications, thyroid hormone, sleep aids, antibiotics, and heartburn medications. Altogether, these interactions span 1,636 individual medications.
Check your own medications below · Editorial policy · How we use AI
Want to check YOUR meds against Maxmium Strength Lipo-Drex?
Ask about interactions with your drugs in plain English — “Can I take it with lisinopril?” — and we find you the answer in seconds, ingredient by ingredient.
Go to the checkerIngredients driving the most interactions
Individual Drug Interactions
The ingredients in Maxmium Strength Lipo-Drex interact with 1,635 drugs. Click any drug to see the details.
13 of the 15 ingredients in Maxmium Strength Lipo-Drex interact with drugs. Each result below shows which ingredient is responsible. Green Tea (leaf) extract Berberine HCl Yohimbe (Pausinystalia yohimbe) (bark) extract Black Pepper (fruit) extract Bacopa Coleus forskohlii extract Aronia (Aronia melanocarpa) (fruit) powder Theobromine (Theobroma cacao) (seed) Extract Caffeine Anhydrous Purple Corn (grain) extract Theacrine Cayenne powder N-Acetyl L-Carnitine
Acetaminophen, Pamabrom, PyrilamineMidol Max Strength PMS, Pamprin, Pamprin ES
How Acetaminophen, Pamabrom, Pyrilamine interacts with Maxmium Strength Lipo-Drex — through 7 ingredients. Tap an ingredient for the detail:
BacopaAnticholinergic Drugs, Cytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, concurrent use might decrease the effectiveness of both agents.
Read the full Bacopa + Acetaminophen, Pamabrom, Pyrilamine interactionTheobromine (theobroma Cacao) (seed) ExtractDiuretic Drugs, Stimulant Drugs Moderate
Interaction Summary
Theoretically, using cocoa with diuretic drugs might increase the risk of hypokalemia.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Acetaminophen, Pamabrom, Pyrilamine interactionGreen Tea (leaf) ExtractHepatotoxic Drugs, Diuretic Drugs +1 Moderate
Interaction Summary
Theoretically, concomitant use might have additive adverse hepatotoxic effects.
Read the full Green Tea (leaf) Extract + Acetaminophen, Pamabrom, Pyrilamine interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractCytochrome P450 1a2 (cyp1a2) Substrates, Stimulant Drugs Moderate
Interaction Summary
Theoretically, yohimbe might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acetaminophen, Pamabrom, Pyrilamine interactionPurple Corn (grain) ExtractDiuretic Drugs Moderate
Interaction Summary
Taking corn silk with diuretic drugs might increase the risk of adverse effects such as hyponatremia and hypokalemia.
Read the full Purple Corn (grain) Extract + Acetaminophen, Pamabrom, Pyrilamine interactionCaffeine AnhydrousDiuretic Drugs, Stimulant Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine Anhydrous + Acetaminophen, Pamabrom, Pyrilamine interactionBlack Pepper (fruit) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, black pepper might decrease levels and clinical effects of drugs metabolized by CYP1A2.
Read the full Black Pepper (fruit) Extract + Acetaminophen, Pamabrom, Pyrilamine interactionAcetaminophen, PentazocineTalacen
How Acetaminophen, Pentazocine interacts with Maxmium Strength Lipo-Drex — through 6 ingredients. Tap an ingredient for the detail:
Green Tea (leaf) ExtractHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, concomitant use might have additive adverse hepatotoxic effects.
Read the full Green Tea (leaf) Extract + Acetaminophen, Pentazocine interactionBerberine HclCns Depressants Moderate
Interaction Summary
Theoretically, berberine might increase the sedative effects of CNS depressants.
Read the full Berberine Hcl + Acetaminophen, Pentazocine interactionBacopaCytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, bacopa might increase the levels and adverse effects of CYP1A2 substrates.
Read the full Bacopa + Acetaminophen, Pentazocine interactionTheacrineCns Depressants Moderate
Interaction Summary
Theoretically, theacrine might alter the effects of CNS depressants.
Read the full Theacrine + Acetaminophen, Pentazocine interactionBlack Pepper (fruit) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, black pepper might decrease levels and clinical effects of drugs metabolized by CYP1A2.
Read the full Black Pepper (fruit) Extract + Acetaminophen, Pentazocine interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, yohimbe might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acetaminophen, Pentazocine interactionAcetaminophen, Phenylephrine, ChlorpheniramineSuper Cold Tabs
How Acetaminophen, Phenylephrine, Chlorpheniramine interacts with Maxmium Strength Lipo-Drex — through 10 ingredients. Tap an ingredient for the detail:
Aronia (aronia Melanocarpa) (fruit) PowderCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, chokeberry might increase levels of drugs metabolized by CYP3A4.
Read the full Aronia (aronia Melanocarpa) (fruit) Powder + Acetaminophen, Phenylephrine, Chlorpheniramine interactionBerberine HclCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, berberine might increase serum levels of drugs metabolized by CYP3A4.
Read the full Berberine Hcl + Acetaminophen, Phenylephrine, Chlorpheniramine interactionColeus Forskohlii ExtractCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, taking coleus might decrease serum levels of drugs metabolized by CYP3A4.
Read the full Coleus Forskohlii Extract + Acetaminophen, Phenylephrine, Chlorpheniramine interactionCaffeine AnhydrousStimulant Drugs Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Caffeine Anhydrous + Acetaminophen, Phenylephrine, Chlorpheniramine interactionBacopaAnticholinergic Drugs, Cytochrome P450 1a2 (cyp1a2) Substrates +1 Moderate
Interaction Summary
Theoretically, concurrent use might decrease the effectiveness of both agents.
Read the full Bacopa + Acetaminophen, Phenylephrine, Chlorpheniramine interactionBlack Pepper (fruit) ExtractCytochrome P450 3a4 (cyp3a4) Substrates, Cytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, black pepper might increase levels of drugs metabolized by CYP3A4.
Read the full Black Pepper (fruit) Extract + Acetaminophen, Phenylephrine, Chlorpheniramine interactionGreen Tea (leaf) ExtractHepatotoxic Drugs, Cytochrome P450 3a4 (cyp3a4) Substrates +1 Moderate
Interaction Summary
Theoretically, concomitant use might have additive adverse hepatotoxic effects.
Read the full Green Tea (leaf) Extract + Acetaminophen, Phenylephrine, Chlorpheniramine interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractCytochrome P450 1a2 (cyp1a2) Substrates, Stimulant Drugs +2 Moderate
Interaction Summary
Theoretically, yohimbe might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acetaminophen, Phenylephrine, Chlorpheniramine interactionTheobromine (theobroma Cacao) (seed) ExtractStimulant Drugs Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Acetaminophen, Phenylephrine, Chlorpheniramine interactionN-acetyl L-carnitineSerotonergic Drugs Moderate
Interaction Summary
Theoretically, acetyl-L-carnitine might increase the risk of serotonergic side effects, including serotonin syndrome and cerebral vasoconstrictive disorders, when taken with serotonergic drugs.
Read the full N-acetyl L-carnitine + Acetaminophen, Phenylephrine, Chlorpheniramine interactionAcetaminophen, PhenylpropanolamineTetra Caps
How Acetaminophen, Phenylpropanolamine interacts with Maxmium Strength Lipo-Drex — through 6 ingredients. Tap an ingredient for the detail:
BacopaCytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, bacopa might increase the levels and adverse effects of CYP1A2 substrates.
Read the full Bacopa + Acetaminophen, Phenylpropanolamine interactionCaffeine AnhydrousStimulant Drugs, Phenylpropanolamine Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Caffeine Anhydrous + Acetaminophen, Phenylpropanolamine interactionGreen Tea (leaf) ExtractStimulant Drugs, Phenylpropanolamine +1 Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Green Tea (leaf) Extract + Acetaminophen, Phenylpropanolamine interactionTheobromine (theobroma Cacao) (seed) ExtractPhenylpropanolamine, Stimulant Drugs Moderate
Interaction Summary
Theoretically, phenylpropanolamine might increase the risk of hypertension, as well as the levels and adverse effects of caffeine.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Acetaminophen, Phenylpropanolamine interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractStimulant Drugs, Cytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, taking yohimbe with stimulant drugs can have additive effects.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acetaminophen, Phenylpropanolamine interactionBlack Pepper (fruit) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, black pepper might decrease levels and clinical effects of drugs metabolized by CYP1A2.
Read the full Black Pepper (fruit) Extract + Acetaminophen, Phenylpropanolamine interactionAcetaminophen, Phenylpropanolamine, PhenyltoloxamineSinubid
How Acetaminophen, Phenylpropanolamine, Phenyltoloxamine interacts with Maxmium Strength Lipo-Drex — through 6 ingredients. Tap an ingredient for the detail:
Yohimbe (pausinystalia Yohimbe) (bark) ExtractCytochrome P450 1a2 (cyp1a2) Substrates, Stimulant Drugs Moderate
Interaction Summary
Theoretically, yohimbe might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acetaminophen, Phenylpropanolamine, Phenyltoloxamine interactionBacopaCytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, bacopa might increase the levels and adverse effects of CYP1A2 substrates.
Read the full Bacopa + Acetaminophen, Phenylpropanolamine, Phenyltoloxamine interactionGreen Tea (leaf) ExtractHepatotoxic Drugs, Stimulant Drugs +1 Moderate
Interaction Summary
Theoretically, concomitant use might have additive adverse hepatotoxic effects.
Read the full Green Tea (leaf) Extract + Acetaminophen, Phenylpropanolamine, Phenyltoloxamine interactionCaffeine AnhydrousPhenylpropanolamine, Stimulant Drugs Moderate
Interaction Summary
Theoretically, phenylpropanolamine might increase the risk of hypertension, as well as the levels and adverse effects of caffeine.
Read the full Caffeine Anhydrous + Acetaminophen, Phenylpropanolamine, Phenyltoloxamine interactionTheobromine (theobroma Cacao) (seed) ExtractStimulant Drugs, Phenylpropanolamine Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Acetaminophen, Phenylpropanolamine, Phenyltoloxamine interactionBlack Pepper (fruit) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, black pepper might decrease levels and clinical effects of drugs metabolized by CYP1A2.
Read the full Black Pepper (fruit) Extract + Acetaminophen, Phenylpropanolamine, Phenyltoloxamine interactionAcetaminophen, PhenyltoloxaminePercogesic, Relagesic
How Acetaminophen, Phenyltoloxamine interacts with Maxmium Strength Lipo-Drex — through 4 ingredients. Tap an ingredient for the detail:
BacopaCytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, bacopa might increase the levels and adverse effects of CYP1A2 substrates.
Read the full Bacopa + Acetaminophen, Phenyltoloxamine interactionGreen Tea (leaf) ExtractHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, concomitant use might have additive adverse hepatotoxic effects.
Read the full Green Tea (leaf) Extract + Acetaminophen, Phenyltoloxamine interactionBlack Pepper (fruit) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, black pepper might decrease levels and clinical effects of drugs metabolized by CYP1A2.
Read the full Black Pepper (fruit) Extract + Acetaminophen, Phenyltoloxamine interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, yohimbe might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acetaminophen, Phenyltoloxamine interactionAcetaminophen, Phenyltoloxamine, SalicylamideLobac
How Acetaminophen, Phenyltoloxamine, Salicylamide interacts with Maxmium Strength Lipo-Drex — through 4 ingredients. Tap an ingredient for the detail:
Green Tea (leaf) ExtractHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, concomitant use might have additive adverse hepatotoxic effects.
Read the full Green Tea (leaf) Extract + Acetaminophen, Phenyltoloxamine, Salicylamide interactionBacopaCytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, bacopa might increase the levels and adverse effects of CYP1A2 substrates.
Read the full Bacopa + Acetaminophen, Phenyltoloxamine, Salicylamide interactionBlack Pepper (fruit) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, black pepper might decrease levels and clinical effects of drugs metabolized by CYP1A2.
Read the full Black Pepper (fruit) Extract + Acetaminophen, Phenyltoloxamine, Salicylamide interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, yohimbe might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acetaminophen, Phenyltoloxamine, Salicylamide interactionAcetaminophen, PropoxypheneDarvocet-N 100, Darvocet-N 50, E-Lor, Wygesic
How Acetaminophen, Propoxyphene interacts with Maxmium Strength Lipo-Drex — through 6 ingredients. Tap an ingredient for the detail:
Yohimbe (pausinystalia Yohimbe) (bark) ExtractCytochrome P450 1a2 (cyp1a2) Substrates, Cytochrome P450 2d6 (cyp2d6) Substrates +1 Moderate
Interaction Summary
Theoretically, yohimbe might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acetaminophen, Propoxyphene interactionGreen Tea (leaf) ExtractHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, concomitant use might have additive adverse hepatotoxic effects.
Read the full Green Tea (leaf) Extract + Acetaminophen, Propoxyphene interactionBerberine HclCns Depressants, Cytochrome P450 2d6 (cyp2d6) Substrates Moderate
Interaction Summary
Theoretically, berberine might increase the sedative effects of CNS depressants.
Read the full Berberine Hcl + Acetaminophen, Propoxyphene interactionTheacrineCns Depressants Moderate
Interaction Summary
Theoretically, theacrine might alter the effects of CNS depressants.
Read the full Theacrine + Acetaminophen, Propoxyphene interactionBlack Pepper (fruit) ExtractCytochrome P450 2d6 (cyp2d6) Substrates, Cytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, black pepper might increase levels of drugs metabolized by CYP2D6.
Read the full Black Pepper (fruit) Extract + Acetaminophen, Propoxyphene interactionBacopaCytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, bacopa might increase the levels and adverse effects of CYP1A2 substrates.
Read the full Bacopa + Acetaminophen, Propoxyphene interactionAcetaminophen, PseudoephedrineChildren's Tylenol Sinus, Dristan N.D., Non-Aspirin Sinus, Ornex, Ornex-Max, Sinutab +5 more
How Acetaminophen, Pseudoephedrine interacts with Maxmium Strength Lipo-Drex — through 6 ingredients. Tap an ingredient for the detail:
Theobromine (theobroma Cacao) (seed) ExtractStimulant Drugs Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Acetaminophen, Pseudoephedrine interactionGreen Tea (leaf) ExtractHepatotoxic Drugs, Stimulant Drugs Moderate
Interaction Summary
Theoretically, concomitant use might have additive adverse hepatotoxic effects.
Read the full Green Tea (leaf) Extract + Acetaminophen, Pseudoephedrine interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractCytochrome P450 1a2 (cyp1a2) Substrates, Stimulant Drugs Moderate
Interaction Summary
Theoretically, yohimbe might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acetaminophen, Pseudoephedrine interactionBacopaCytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, bacopa might increase the levels and adverse effects of CYP1A2 substrates.
Read the full Bacopa + Acetaminophen, Pseudoephedrine interactionCaffeine AnhydrousStimulant Drugs Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Caffeine Anhydrous + Acetaminophen, Pseudoephedrine interactionBlack Pepper (fruit) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, black pepper might decrease levels and clinical effects of drugs metabolized by CYP1A2.
Read the full Black Pepper (fruit) Extract + Acetaminophen, Pseudoephedrine interactionAcetaminophen, Pseudoephedrine, TriprolidineActifed Plus ES
How Acetaminophen, Pseudoephedrine, Triprolidine interacts with Maxmium Strength Lipo-Drex — through 6 ingredients. Tap an ingredient for the detail:
Caffeine AnhydrousStimulant Drugs Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Caffeine Anhydrous + Acetaminophen, Pseudoephedrine, Triprolidine interactionGreen Tea (leaf) ExtractStimulant Drugs, Hepatotoxic Drugs Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Green Tea (leaf) Extract + Acetaminophen, Pseudoephedrine, Triprolidine interactionTheobromine (theobroma Cacao) (seed) ExtractStimulant Drugs Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Acetaminophen, Pseudoephedrine, Triprolidine interactionBacopaCytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, bacopa might increase the levels and adverse effects of CYP1A2 substrates.
Read the full Bacopa + Acetaminophen, Pseudoephedrine, Triprolidine interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractStimulant Drugs, Cytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, taking yohimbe with stimulant drugs can have additive effects.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acetaminophen, Pseudoephedrine, Triprolidine interactionBlack Pepper (fruit) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, black pepper might decrease levels and clinical effects of drugs metabolized by CYP1A2.
Read the full Black Pepper (fruit) Extract + Acetaminophen, Pseudoephedrine, Triprolidine interactionAcetazolamideAk-Zol, Diamox
How Acetazolamide interacts with Maxmium Strength Lipo-Drex — through 8 ingredients. Tap an ingredient for the detail:
Purple Corn (grain) ExtractAntihypertensive Drugs, Diuretic Drugs Moderate
Interaction Summary
Taking corn silk extract with antihypertensive drugs might increase the risk of hypotension.
Read the full Purple Corn (grain) Extract + Acetazolamide interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, yohimbe might reduce the effects of antihypertensive drugs.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acetazolamide interactionGreen Tea (leaf) ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, using green tea with diuretic drugs might increase the risk of hypokalemia.
Read the full Green Tea (leaf) Extract + Acetazolamide interactionCaffeine AnhydrousDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine Anhydrous + Acetazolamide interactionColeus Forskohlii ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, combining coleus with antihypertensive drugs might cause additive blood pressure lowering effects and increase the risk of hypotension.
Read the full Coleus Forskohlii Extract + Acetazolamide interactionBerberine HclAcetazolamide, Antihypertensive Drugs +1 Moderate
Interaction Summary
Laboratory studies and initial clinical findings suggest that berberine has the potential to increase acetazolamide concentrations in the body.
Read the full Berberine Hcl + Acetazolamide interactionTheacrineCns Depressants Moderate
Interaction Summary
Theoretically, theacrine might alter the effects of CNS depressants.
Read the full Theacrine + Acetazolamide interactionTheobromine (theobroma Cacao) (seed) ExtractAntihypertensive Drugs, Diuretic Drugs Moderate
Interaction Summary
Theoretically, taking cocoa with antihypertensive drugs might increase the risk of hypotension.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Acetazolamide interactionAcetohexamideDymelor
How Acetohexamide interacts with Maxmium Strength Lipo-Drex — through 7 ingredients. Tap an ingredient for the detail:
Cayenne PowderAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, taking capsicum with antidiabetes drugs might increase the risk of hypoglycemia.
Read the full Cayenne Powder + Acetohexamide interactionBerberine HclAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, berberine may increase the risk of hypoglycemia when taken with antidiabetes drugs.
Read the full Berberine Hcl + Acetohexamide interactionAronia (aronia Melanocarpa) (fruit) PowderAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, chokeberry might increase the risk of hypoglycemia when taken with antidiabetes drugs.
Read the full Aronia (aronia Melanocarpa) (fruit) Powder + Acetohexamide interactionGreen Tea (leaf) ExtractHepatotoxic Drugs, Antidiabetes Drugs Moderate
Interaction Summary
Theoretically, concomitant use might have additive adverse hepatotoxic effects.
Read the full Green Tea (leaf) Extract + Acetohexamide interactionPurple Corn (grain) ExtractAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, taking corn silk with antidiabetes drugs might increase the risk of hypoglycemia.
Read the full Purple Corn (grain) Extract + Acetohexamide interactionBlack Pepper (fruit) ExtractAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, black pepper might increase the risk of hypoglycemia when taken with antidiabetes drugs.
Read the full Black Pepper (fruit) Extract + Acetohexamide interactionCaffeine AnhydrousAntidiabetes Drugs Minor
Interaction Summary
Theoretically, taking caffeine with antidiabetes drugs might interfere with blood glucose control.
Read the full Caffeine Anhydrous + Acetohexamide interactionAcetylcholineMiochol-E
How Acetylcholine interacts with Maxmium Strength Lipo-Drex — through 1 ingredient. Tap an ingredient for the detail:
BacopaCholinergic Drugs Moderate
Interaction Summary
Theoretically, concurrent use of bacopa with other cholinergic drugs might have additive effects.
Read the full Bacopa + Acetylcholine interactionAcetylsalicylic AcidEntrophen
How Acetylsalicylic Acid interacts with Maxmium Strength Lipo-Drex — through 9 ingredients. Tap an ingredient for the detail:
Black Pepper (fruit) ExtractAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, black pepper might increase the risk of bleeding when taken with antiplatelet or anticoagulant drugs.
Read the full Black Pepper (fruit) Extract + Acetylsalicylic Acid interactionBerberine HclAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, berberine might increase the risk of bleeding when used with anticoagulant or antiplatelet drugs.
Read the full Berberine Hcl + Acetylsalicylic Acid interactionAronia (aronia Melanocarpa) (fruit) PowderAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, chokeberry might increase the risk of bleeding when taken with anticoagulant or antiplatelet drugs.
Read the full Aronia (aronia Melanocarpa) (fruit) Powder + Acetylsalicylic Acid interactionCayenne PowderAspirin, Anticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, taking capsicum with aspirin might reduce the bioavailability of aspirin.
Read the full Cayenne Powder + Acetylsalicylic Acid interactionTheobromine (theobroma Cacao) (seed) ExtractAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, cocoa may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Acetylsalicylic Acid interactionGreen Tea (leaf) ExtractAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, green tea may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs.
Read the full Green Tea (leaf) Extract + Acetylsalicylic Acid interactionCaffeine AnhydrousAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, caffeine may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs.
Read the full Caffeine Anhydrous + Acetylsalicylic Acid interactionColeus Forskohlii ExtractAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, concomitant use of coleus and anticoagulant or antiplatelet drugs might increase the risk of bruising and bleeding.
Read the full Coleus Forskohlii Extract + Acetylsalicylic Acid interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractAnticoagulant/antiplatelet Drugs Minor
Interaction Summary
Theoretically, combining yohimbe bark with antiplatelet or anticoagulant drugs might have additive effects; however, this has not been reported in clinical research.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acetylsalicylic Acid interactionAcitretinSoriatane
How Acitretin interacts with Maxmium Strength Lipo-Drex — through 1 ingredient. Tap an ingredient for the detail:
Yohimbe (pausinystalia Yohimbe) (bark) ExtractCytochrome P450 3a4 (cyp3a4) Inhibitors Moderate
Interaction Summary
Theoretically, CYP3A4 inhibitors might increase the levels and adverse effects of yohimbine, a constituent of yohimbe bark.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acitretin interactionAclidinium BromideTudorza Pressair
How Aclidinium Bromide interacts with Maxmium Strength Lipo-Drex — through 1 ingredient. Tap an ingredient for the detail:
BacopaAnticholinergic Drugs Moderate
Interaction Summary
Theoretically, concurrent use might decrease the effectiveness of both agents.
Read the full Bacopa + Aclidinium Bromide interactionAclidinium Bromide, Formoterol Fumarate DihydrateDuaklir Pressair
How Aclidinium Bromide, Formoterol Fumarate Dihydrate interacts with Maxmium Strength Lipo-Drex — through 1 ingredient. Tap an ingredient for the detail:
BacopaAnticholinergic Drugs Moderate
Interaction Summary
Theoretically, concurrent use might decrease the effectiveness of both agents.
Read the full Bacopa + Aclidinium Bromide, Formoterol Fumarate Dihydrate interactionAcrivastine, PseudoephedrineSemprex D
How Acrivastine, Pseudoephedrine interacts with Maxmium Strength Lipo-Drex — through 4 ingredients. Tap an ingredient for the detail:
Yohimbe (pausinystalia Yohimbe) (bark) ExtractStimulant Drugs Moderate
Interaction Summary
Theoretically, taking yohimbe with stimulant drugs can have additive effects.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Acrivastine, Pseudoephedrine interactionTheobromine (theobroma Cacao) (seed) ExtractStimulant Drugs Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Acrivastine, Pseudoephedrine interactionCaffeine AnhydrousStimulant Drugs Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Caffeine Anhydrous + Acrivastine, Pseudoephedrine interactionGreen Tea (leaf) ExtractStimulant Drugs Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Green Tea (leaf) Extract + Acrivastine, Pseudoephedrine interactionAdagrasibKrazati
How Adagrasib interacts with Maxmium Strength Lipo-Drex — through 7 ingredients. Tap an ingredient for the detail:
Green Tea (leaf) ExtractCytochrome P450 3a4 (cyp3a4) Substrates, Hepatotoxic Drugs Moderate
Interaction Summary
Green tea is unlikely to produce clinically significant changes in the levels and clinical effects of CYP3A4 substrates.
Read the full Green Tea (leaf) Extract + Adagrasib interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractCytochrome P450 2d6 (cyp2d6) Inhibitors, Cytochrome P450 3a4 (cyp3a4) Inhibitors +1 Moderate
Interaction Summary
CYP2D6 inhibitors may increase the levels and adverse effects of yohimbine, a constituent of yohimbe.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Adagrasib interactionBlack Pepper (fruit) ExtractCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, black pepper might increase levels of drugs metabolized by CYP3A4.
Read the full Black Pepper (fruit) Extract + Adagrasib interactionColeus Forskohlii ExtractCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, taking coleus might decrease serum levels of drugs metabolized by CYP3A4.
Read the full Coleus Forskohlii Extract + Adagrasib interactionAronia (aronia Melanocarpa) (fruit) PowderCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, chokeberry might increase levels of drugs metabolized by CYP3A4.
Read the full Aronia (aronia Melanocarpa) (fruit) Powder + Adagrasib interactionBerberine HclCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, berberine might increase serum levels of drugs metabolized by CYP3A4.
Read the full Berberine Hcl + Adagrasib interactionBacopaCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, bacopa might increase the levels and adverse effects of CYP3A4 substrates.
Read the full Bacopa + Adagrasib interactionAdenosineATP Tablets
How Adenosine interacts with Maxmium Strength Lipo-Drex — through 3 ingredients. Tap an ingredient for the detail:
Green Tea (leaf) ExtractAdenosine (adenocard) Moderate
Interaction Summary
Theoretically, green tea might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Read the full Green Tea (leaf) Extract + Adenosine interactionCaffeine AnhydrousAdenosine (adenocard) Moderate
Interaction Summary
Theoretically, caffeine might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Read the full Caffeine Anhydrous + Adenosine interactionTheobromine (theobroma Cacao) (seed) ExtractAdenosine (adenocard) Moderate
Interaction Summary
Theoretically, cocoa might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Adenosine interactionAdenosine (prescription Drug)Adenocard, Adenocor, Adenoscan
How Adenosine (prescription Drug) interacts with Maxmium Strength Lipo-Drex — through 3 ingredients. Tap an ingredient for the detail:
Theobromine (theobroma Cacao) (seed) ExtractAdenosine (adenocard) Moderate
Interaction Summary
Theoretically, cocoa might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Adenosine (prescription Drug) interactionCaffeine AnhydrousAdenosine (adenocard) Moderate
Interaction Summary
Theoretically, caffeine might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Read the full Caffeine Anhydrous + Adenosine (prescription Drug) interactionGreen Tea (leaf) ExtractAdenosine (adenocard) Moderate
Interaction Summary
Theoretically, green tea might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Read the full Green Tea (leaf) Extract + Adenosine (prescription Drug) interactionAdenosine Phosphate (prescription Drug)Adenosine Phosphate
How Adenosine Phosphate (prescription Drug) interacts with Maxmium Strength Lipo-Drex — through 3 ingredients. Tap an ingredient for the detail:
Green Tea (leaf) ExtractAdenosine (adenocard) Moderate
Interaction Summary
Theoretically, green tea might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Read the full Green Tea (leaf) Extract + Adenosine Phosphate (prescription Drug) interactionCaffeine AnhydrousAdenosine (adenocard) Moderate
Interaction Summary
Theoretically, caffeine might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Read the full Caffeine Anhydrous + Adenosine Phosphate (prescription Drug) interactionTheobromine (theobroma Cacao) (seed) ExtractAdenosine (adenocard) Moderate
Interaction Summary
Theoretically, cocoa might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Adenosine Phosphate (prescription Drug) interactionAerosphere Budesonide, Formoterol Fumarate, GlycopyrrolateBreztri
How Aerosphere Budesonide, Formoterol Fumarate, Glycopyrrolate interacts with Maxmium Strength Lipo-Drex — through 5 ingredients. Tap an ingredient for the detail:
BacopaCytochrome P450 2c19 (cyp2c19) Substrates, Cytochrome P450 2c9 (cyp2c9) Substrates +1 Moderate
Interaction Summary
Theoretically, bacopa might increase the levels and adverse effects of CYP2C19 substrates.
Read the full Bacopa + Aerosphere Budesonide, Formoterol Fumarate, Glycopyrrolate interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractCytochrome P450 2d6 (cyp2d6) Substrates Moderate
Interaction Summary
Theoretically, yohimbe might increase the levels and adverse effects of CYP2D6 substrates.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Aerosphere Budesonide, Formoterol Fumarate, Glycopyrrolate interactionBerberine HclCytochrome P450 2d6 (cyp2d6) Substrates, Cytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, berberine might increase serum levels of drugs metabolized by CYP2D6.
Read the full Berberine Hcl + Aerosphere Budesonide, Formoterol Fumarate, Glycopyrrolate interactionColeus Forskohlii ExtractCytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, taking coleus may affect drugs metabolized by CYP2C9 and increase the risk of adverse effects or reduce the effectiveness.
Read the full Coleus Forskohlii Extract + Aerosphere Budesonide, Formoterol Fumarate, Glycopyrrolate interactionBlack Pepper (fruit) ExtractCytochrome P450 2d6 (cyp2d6) Substrates Moderate
Interaction Summary
Theoretically, black pepper might increase levels of drugs metabolized by CYP2D6.
Read the full Black Pepper (fruit) Extract + Aerosphere Budesonide, Formoterol Fumarate, Glycopyrrolate interactionAfatinib DimaleateGilotrif
How Afatinib Dimaleate interacts with Maxmium Strength Lipo-Drex — through 2 ingredients. Tap an ingredient for the detail:
Black Pepper (fruit) ExtractP-glycoprotein Substrates Moderate
Interaction Summary
Theoretically, black pepper might increase levels of P-glycoprotein substrates.
Read the full Black Pepper (fruit) Extract + Afatinib Dimaleate interactionGreen Tea (leaf) ExtractP-glycoprotein Substrates Moderate
Interaction Summary
Green tea might increase the levels and adverse effects of P-glycoprotein (P-gp) substrates.
Read the full Green Tea (leaf) Extract + Afatinib Dimaleate interactionAgomelatineValdoxan
How Agomelatine interacts with Maxmium Strength Lipo-Drex — through 5 ingredients. Tap an ingredient for the detail:
BacopaCytochrome P450 2c9 (cyp2c9) Substrates, Cytochrome P450 1a2 (cyp1a2) Substrates +1 Moderate
Interaction Summary
Theoretically, bacopa might increase the levels and adverse effects of CYP2C9 substrates.
Read the full Bacopa + Agomelatine interactionColeus Forskohlii ExtractCytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, taking coleus may affect drugs metabolized by CYP2C9 and increase the risk of adverse effects or reduce the effectiveness.
Read the full Coleus Forskohlii Extract + Agomelatine interactionBerberine HclCytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, berberine might increase serum levels of drugs metabolized by CYP2C9.
Read the full Berberine Hcl + Agomelatine interactionYohimbe (pausinystalia Yohimbe) (bark) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, yohimbe might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Yohimbe (pausinystalia Yohimbe) (bark) Extract + Agomelatine interactionBlack Pepper (fruit) ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, black pepper might decrease levels and clinical effects of drugs metabolized by CYP1A2.
Read the full Black Pepper (fruit) Extract + Agomelatine interactionAlbiglutideTanzeum
How Albiglutide interacts with Maxmium Strength Lipo-Drex — through 7 ingredients. Tap an ingredient for the detail:
Cayenne PowderAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, taking capsicum with antidiabetes drugs might increase the risk of hypoglycemia.
Read the full Cayenne Powder + Albiglutide interactionPurple Corn (grain) ExtractAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, taking corn silk with antidiabetes drugs might increase the risk of hypoglycemia.
Read the full Purple Corn (grain) Extract + Albiglutide interactionBlack Pepper (fruit) ExtractAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, black pepper might increase the risk of hypoglycemia when taken with antidiabetes drugs.
Read the full Black Pepper (fruit) Extract + Albiglutide interactionBerberine HclAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, berberine may increase the risk of hypoglycemia when taken with antidiabetes drugs.
Read the full Berberine Hcl + Albiglutide interactionAronia (aronia Melanocarpa) (fruit) PowderAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, chokeberry might increase the risk of hypoglycemia when taken with antidiabetes drugs.
Read the full Aronia (aronia Melanocarpa) (fruit) Powder + Albiglutide interactionCaffeine AnhydrousAntidiabetes Drugs Minor
Interaction Summary
Theoretically, taking caffeine with antidiabetes drugs might interfere with blood glucose control.
Read the full Caffeine Anhydrous + Albiglutide interactionGreen Tea (leaf) ExtractAntidiabetes Drugs Minor
Interaction Summary
Theoretically, taking green tea with antidiabetes drugs might interfere with blood glucose control.
Read the full Green Tea (leaf) Extract + Albiglutide interactionAlbuterolProAir HFA, Proventil, Ventolin (U.S.), Volmax
How Albuterol interacts with Maxmium Strength Lipo-Drex — through 3 ingredients. Tap an ingredient for the detail:
Theobromine (theobroma Cacao) (seed) ExtractBeta-adrenergic Agonists Moderate
Interaction Summary
Theoretically, large amounts of cocoa might increase the cardiac inotropic effects of beta-agonists.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Albuterol interactionGreen Tea (leaf) ExtractBeta-adrenergic Agonists Moderate
Interaction Summary
Green tea contains caffeine.
Read the full Green Tea (leaf) Extract + Albuterol interactionCaffeine AnhydrousBeta-adrenergic Agonists Moderate
Interaction Summary
Theoretically, large amounts of caffeine might increase the cardiac inotropic effects of beta-agonists.
Read the full Caffeine Anhydrous + Albuterol interactionAlbuterol SulfateProair Respiclick
How Albuterol Sulfate interacts with Maxmium Strength Lipo-Drex — through 3 ingredients. Tap an ingredient for the detail:
Caffeine AnhydrousBeta-adrenergic Agonists Moderate
Interaction Summary
Theoretically, large amounts of caffeine might increase the cardiac inotropic effects of beta-agonists.
Read the full Caffeine Anhydrous + Albuterol Sulfate interactionGreen Tea (leaf) ExtractBeta-adrenergic Agonists Moderate
Interaction Summary
Green tea contains caffeine.
Read the full Green Tea (leaf) Extract + Albuterol Sulfate interactionTheobromine (theobroma Cacao) (seed) ExtractBeta-adrenergic Agonists Moderate
Interaction Summary
Theoretically, large amounts of cocoa might increase the cardiac inotropic effects of beta-agonists.
Read the full Theobromine (theobroma Cacao) (seed) Extract + Albuterol Sulfate interactionAldesleukinProleukin
How Aldesleukin interacts with Maxmium Strength Lipo-Drex — through 1 ingredient. Tap an ingredient for the detail:
Green Tea (leaf) ExtractHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, concomitant use might have additive adverse hepatotoxic effects.
Read the full Green Tea (leaf) Extract + Aldesleukin interactionAlectinib HydrochlorideAlecensa
How Alectinib Hydrochloride interacts with Maxmium Strength Lipo-Drex — through 1 ingredient. Tap an ingredient for the detail:
Green Tea (leaf) ExtractHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, concomitant use might have additive adverse hepatotoxic effects.
Read the full Green Tea (leaf) Extract + Alectinib Hydrochloride interactionEach ingredient & the kinds of drugs it affects
For each ingredient in Maxmium Strength Lipo-Drex with known interactions, here are the types of medications they can affect. Open any type for the detail — or search your exact drug in the checker above.
Green Tea (leaf) extract
Atorvastatin (Lipitor)
Green tea extract seems to reduce the levels and clinical effects of atorvastatin.
In healthy humans, taking green tea extract 300 mg or 600 mg along with atorvastatin reduces plasma levels of atorvastatin by approximately 24%. The elimination of atorvastatin is not affected. Atorvastatin is a substrate of organic anion-transporting polypeptides (OATPs). Research shows that two of the major catechins found in green tea, epicatechin gallate (ECG) and epigallocatechin gallate (EGCG), inhibit OATPs. Some OATPs are expressed in the small intestine and are responsible for the uptake of drugs and other compounds, which may have resulted in reduced plasma levels of atorvastatin. It is not clear if drinking green tea alters the absorption of atorvastatin.
Ephedrine
Theoretically, concomitant use might increase the risk for stimulant adverse effects.
Green tea contains caffeine. There is evidence that using ephedrine with caffeine might increase the risk of serious life-threatening or debilitating adverse effects such as hypertension, myocardial infarction, stroke, seizures, and death.
Nadolol (Corgard)
Green tea seems to reduce the levels and clinical effects of nadolol.
Preliminary clinical research shows that green tea consumption reduces plasma concentrations of nadolol. Compared to a control group, both peak levels and total drug exposure (AUC) of nadolol were reduced by approximately 85% in subjects who drank green tea daily for two weeks. Drinking green tea with nadolol also significantly reduced nadolol's systolic blood pressure lowering effect. Other clinical research shows that a single dose of green tea can affect plasma nadolol levels for at least one hour. Green tea catechins have been shown to inhibit organic anion transporting polypeptides (OATP), one of which, OATP1A2, is involved in the uptake of nadolol in the intestine The interaction is thought to be due primarily to the epigallocatechin gallate (EGCG) content of green tea.
5-Fluorouracil
Theoretically, high doses of green tea might increase the effects and side effects of 5-fluorouracil.
Animal research shows that taking green tea in amounts equivalent to about 6 cups daily in humans for 4 weeks prior to receiving a single injection of 5-fluorouracil increases the maximum plasma levels of 5-fluorouracil by about 2.5-fold and the area under the curve by 425%.
Adenosine (Adenocard)
Theoretically, green tea might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Green tea contains caffeine. Caffeine is a competitive inhibitor of adenosine at the cellular level. However, caffeine doesn't seem to affect supplemental adenosine because high interstitial levels of adenosine overcome the antagonistic effects of caffeine. It is recommended that methylxanthines and methylxanthine-containing products be stopped 24 hours prior to pharmacological stress tests. However, methylxanthines appear more likely to interfere with dipyridamole (Persantine) than adenosine-induced stress testing.
Anticoagulant/Antiplatelet Drugs
Theoretically, green tea may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs.
Conflicting reports exist regarding the effect of green tea on bleeding risk when used with anticoagulant or antiplatelet drugs; however, most evidence suggests that drinking green tea in moderate amounts is unlikely to cause a significant interaction. Green tea contains small amounts of vitamin K, approximately 7 mcg per cup. Some case reports have associated the antagonism of warfarin with the vitamin K content of green tea. However, these reports are rare, and very large doses of green tea (about 8-16 cups daily) appear to be needed to cause these effects. Furthermore, the catechins and caffeine in green tea are reported to have antiplatelet activity.
Beta-Adrenergic Agonists
Green tea contains caffeine. Theoretically, concomitant use of large amounts of caffeine might increase cardiac inotropic effects of beta-agonists.
Bortezomib (Velcade)
Theoretically, green tea might interfere with the effects of bortezomib.
In vitro research shows that green tea polyphenols, such as epigallocatechin gallate (EGCG), interact with bortezomib and block its proteasome inhibitory action. This prevents the induction of cell death in multiple myeloma or glioblastoma cancer cell lines. Advise patients taking bortezomib, not to take green tea.
Carbamazepine (Tegretol)
Theoretically, green tea might reduce the effects of carbamazepine and increase the risk for convulsions.
Green tea contains caffeine. Animal research suggests that taking caffeine can lower the anticonvulsant effects of carbamazepine and can induce seizures when taken in doses above 400 mg/kg. Human research has shown that taking caffeine 300 mg in three divided doses along with carbamazepine 200 mg reduces the bioavailability of carbamazepine by 32% and prolongs the plasma half-life of carbamazepine 2-fold in healthy individuals.
Celiprolol (Celicard)
Theoretically, green tea might reduce the levels and clinical effects of celiprolol.
In a small human study, taking green tea daily for 4 days appears to decrease blood and urine levels of celiprolol by at least 98%. This interaction is possibly due to the inhibition of organic anion transporting polypeptide (OATP). Green tea catechins have been shown to inhibit organic anion transporting polypeptides (OATP), one of which, OATP1A2, is found in the intestine The interaction is thought to be due primarily to the epigallocatechin gallate (EGCG) content of green tea.
Cimetidine (Tagamet)
Theoretically, concomitant use might increase the effects and adverse effects of caffeine in green tea.
Green tea contains caffeine. Cimetidine can reduce caffeine clearance by 31% to 42%.
Clozapine (Clozaril)
Theoretically, green tea might increase the levels and adverse effects of clozapine and acutely exacerbate psychotic symptoms.
Animal research suggests that, although green tea extract does not affect the elimination of clozapine, it delays the time to reach peak concentration and reduces the peak plasma levels. Also, concomitant administration of green tea and clozapine might theoretically cause acute exacerbation of psychotic symptoms due to the caffeine in green tea. Caffeine can increase the effects and toxicity of clozapine. Caffeine doses of 400-1000 mg daily inhibit clozapine metabolism. Clozapine is metabolized by cytochrome P450 1A2 (CYP1A2). Researchers speculate that caffeine might inhibit CYP1A2. However, there is no reliable evidence that caffeine affects CYP1A2. There is also speculation that genetic factors might make some patients be more sensitive to the interaction between clozapine and caffeine.
Contraceptive Drugs
Theoretically, concomitant use might increase the effects and adverse effects of caffeine found in green tea.
Green tea contains caffeine. Oral contraceptives can decrease caffeine clearance by 40% to 65%.
Cytochrome P450 1A2 (Cyp1A2) Inhibitors
Theoretically, concomitant use might increase the levels and adverse effects of caffeine.
Green tea contains caffeine. Caffeine is metabolized by cytochrome P450 1A2 (CYP1A2),. Theoretically, drugs that inhibit CYP1A2 may decrease the clearance rate of caffeine from green tea and increase caffeine levels.
Dipyridamole (Persantine)
Theoretically, green tea might decrease the vasodilatory effects of dipyridamole and interfere with its use prior to stress testing.
Green tea contains caffeine. Caffeine might inhibit dipyridamole-induced vasodilation. It is recommended that methylxanthines and methylxanthine-containing products be stopped 24 hours prior to pharmacological stress tests. Methylxanthines appear more likely to interfere with dipyridamole (Persantine) than adenosine-induced stress testing.
Disulfiram (Antabuse)
Theoretically, disulfiram might increase the risk of adverse effects from caffeine.
In human research, disulfiram decreases the clearance and increases the half-life of caffeine.
Diuretic Drugs
Theoretically, using green tea with diuretic drugs might increase the risk of hypokalemia.
Green tea contains caffeine. In excessive amounts, caffeine can reduce potassium levels due to stimulation of the sodium-potassium pump. Diuretics can also cause lower potassium levels.
Estrogens
Theoretically, estrogens might increase the levels and adverse effects of caffeine.
Green tea contains caffeine. Estrogen inhibits caffeine metabolism.
Ethosuximide (Zarontin)
Theoretically, green tea might reduce the effects of ethosuximide and increase the risk for convulsions.
Green tea contains caffeine. Animal research suggests that caffeine 92.4 mg/kg can decrease the anticonvulsant activity of ethosuximide. However, this effect has not been reported in humans.
Felbamate (Felbatol)
Theoretically, green tea might reduce the effects of felbamate and increase the risk for convulsions.
Green tea contains caffeine. Animal research suggests that a high dose of caffeine 161.7 mg/kg can decreases the anticonvulsant activity of felbamate. However, this effect has not been reported in humans.
Fexofenadine (Allegra)
Green tea can decrease blood levels of fexofenadine.
Clinical research shows that green tea can significantly decrease blood levels and excretion of fexofenadine. Taking green tea extract with a dose of fexofenadine decreased bioavailability of fexofenadine by about 30%. In vitro, green tea inhibits the cellular accumulation of fexofenadine by inhibiting the organic anion transporting polypeptide (OATP) drug transporter. Research shows that two of the major catechins found in green tea, epicatechin gallate (ECG) and epigallocatechin gallate (EGCG), inhibit OATPs, specifically OATP1A2, OATP1B1, and OATP2B1. In addition, green tea has been shown to reduce the absorption of some drugs that are OATP substrates.
Flutamide (Eulexin)
Theoretically, green tea might increase the levels and adverse effects of flutamide.
Green tea contains caffeine. In vitro evidence suggests that caffeine can inhibit the metabolism of flutamide. Theoretically, concomitant use of caffeine and flutamide might increase serum concentrations of flutamide and increase the risk adverse effects.
Fluvoxamine (Luvox)
Theoretically, fluvoxamine might increase the levels and adverse effects of caffeine.
Green tea contains caffeine. Fluvoxamine reduces caffeine metabolism.
Hepatotoxic Drugs
Theoretically, concomitant use might have additive adverse hepatotoxic effects.
Green tea extract supplements have been linked to several cases of hepatotoxicity and might have additive hepatotoxic effects with other drugs..
Imatinib (Gleevec)
Theoretically, green tea might reduce the levels and clinical effects of imatinib.
In animal research, a single dose of green tea extract reduces the area under the curve (AUC) of imatinib by up to approximately 64% and its main metabolite N-desmethyl imatinib by up to approximately 81%. This interaction has not been shown in humans. The mechanism of action is unclear but may involve multiple pathways.
Berberine HCl
Cyclosporine (Neoral, Sandimmune)
Berberine can increase serum levels of cyclosporine.
Berberine can reduce metabolism and increase serum levels of cyclosporine. Berberine might inhibit cytochrome P450 3A4 (CYP3A4), which metabolizes cyclosporine.
Anticoagulant/Antiplatelet Drugs
Theoretically, berberine might increase the risk of bleeding when used with anticoagulant or antiplatelet drugs.
In vitro and in vivo research suggest that berberine can inhibit platelet aggregation. Theoretically, berberine might have additive effects when used with anticoagulant and antiplatelet drugs and increase the risk of bleeding.
Antidiabetes Drugs
Theoretically, berberine may increase the risk of hypoglycemia when taken with antidiabetes drugs.
Clinical research shows that berberine may lower blood glucose levels. Theoretically, berberine might have additive effects with antidiabetes drugs and increase the risk of hypoglycemia.
Antihypertensive Drugs
Theoretically, berberine might have additive effects with antihypertensive drugs.
Animal research suggests that berberine can have hypotensive effects. Also, a clinical study suggests that taking berberine in combination with amlodipine can lower systolic and diastolic blood pressure when compared with amlodipine alone.
Cns Depressants
Theoretically, berberine might increase the sedative effects of CNS depressants.
Animal research suggests that berberine may have sedative effects. Theoretically, use of berberine along with CNS depressants might produce additive therapeutic and adverse effects.
Cytochrome P450 2C9 (Cyp2C9) Substrates
Theoretically, berberine might increase serum levels of drugs metabolized by CYP2C9.
Preliminary clinical research shows that berberine can inhibit CYP2C9. Theoretically, taking berberine with drugs metabolized by CYP2C9 might increase drug levels and increase the risk of adverse effects.
Cytochrome P450 2D6 (Cyp2D6) Substrates
Theoretically, berberine might increase serum levels of drugs metabolized by CYP2D6.
In vitro research and preliminary clinical evidence show that berberine can inhibit CYP2D6. Theoretically, use of berberine with drugs metabolized by CYP2D6 might increase drug levels and increase the risk of adverse effects.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, berberine might increase serum levels of drugs metabolized by CYP3A4.
In vitro research and preliminary clinical research show that berberine moderately inhibits CYP3A4. Theoretically, use of berberine with drugs metabolized by CYP3A4 might increase drug levels and increase the risk of adverse effects.
Dextromethorphan (Robitussin Dm, Others)
Theoretically, berberine may increase serum levels of dextromethorphan.
Preliminary clinical research shows that berberine can inhibit cytochrome P450 2D6 (CYP2D6) activity and reduce the metabolism of dextromethorphan. This may increase the effects and side effects of dextromethorphan.
Losartan (Cozaar)
Berberine might reduce the therapeutic effects of losartan by decreasing its conversion to its active form.
Preliminary clinical research suggests that berberine can inhibit cytochrome P450 2C9 (CYP2C9) activity and reduce metabolism of losartan.
Metformin (Glucophage)
Theoretically, berberine might increase the therapeutic and adverse effects of metformin.
In vitro and animal studies show that berberine can increase the systemic exposure and half-life of metformin, potentially increasing metformin's effects and side effects. This interaction seems to be most apparent when berberine is administered 2 hours prior to metformin. Taking berberine and metformin at the same time does not appear to increase systemic exposure to metformin.
Midazolam (Versed)
Berberine can reduce metabolism of midazolam, which might increase the risk of severe adverse effects.
Preliminary clinical research shows that berberine can inhibit cytochrome P450 3A4 (CYP3A4) activity and reduce metabolism of midazolam.
Pentobarbital (Nembutal)
Berberine might increase the sedative effect of pentobarbital.
Evidence from animal research shows that berberine can prolong pentobarbital-induced sleeping time. Theoretically, combining berberine and pentobarbital might increase the sedative effects of pentobarbital.
Tacrolimus (Prograf)
Berberine has been associated with increased blood levels of tacrolimus.
In a 16-year-old patient with idiopathic nephrotic syndrome who was being treated with tacrolimus 6.5 mg twice daily, intake of berberine 200 mg three times daily increased the blood concentration of tacrolimus from 8 to 22 ng/mL. Following a reduction of the tacrolimus dose to 3 mg daily, blood levels of tacrolimus decreased to 12 ng/mL.
Acetazolamide
Laboratory studies and initial clinical findings suggest that berberine has the potential to increase acetazolamide concentrations in the body. More research is needed to confirm this interaction.
Yohimbe (Pausinystalia yohimbe) (bark) extract
Monoamine Oxidase Inhibitors (Maois)
Concomitant use of MAOIs with yohimbe can result in additive effects.
Yohimbine, a constituent of yohimbe, has MAO inhibitory effects. At high doses, yohimbine is a non-selective inhibitor of MAO.
Antihypertensive Drugs
Theoretically, yohimbe might reduce the effects of antihypertensive drugs.
Yohimbine, a constituent of yohimbe, is an alpha-2 adrenoceptor antagonist and has been reported to increase blood pressure in clinical research. Theoretically, concomitant use of yohimbe and antihypertensive drugs can interfere with blood pressure control.
Clonidine (Catapres)
Theoretically, yohimbe might precipitate clonidine withdrawal.
Chronic clonidine use can downregulate alpha-2 adrenoreceptors. Animal research and one human case report suggest that concomitant administration of yohimbine, an alpha-2 adrenoceptor antagonist, may precipitate clonidine withdrawal and lead to sympathomimetic toxicity, including hypertensive crisis.
Cytochrome P450 2D6 (Cyp2D6) Inhibitors
CYP2D6 inhibitors may increase the levels and adverse effects of yohimbine, a constituent of yohimbe.
In vitro and clinical research shows that the yohimbe bark constituent, yohimbine, is metabolized by CYP2D6 isoenzymes. Paroxetine, a cytochrome P450 (CYP) 2D6 inhibitor, increases the maximum serum concentration of yohimbine and reduces the clearance of yohimbine compared to yohimbine alone in patients who are extensive CYP2D6 metabolizers..
Cytochrome P450 2D6 (Cyp2D6) Substrates
Theoretically, yohimbe might increase the levels and adverse effects of CYP2D6 substrates.
In vitro research suggests that yohimbine, a constituent of yohimbe bark, inhibits CYP2D6 enzyme activity.
Cytochrome P450 3A4 (Cyp3A4) Inhibitors
Theoretically, CYP3A4 inhibitors might increase the levels and adverse effects of yohimbine, a constituent of yohimbe bark.
In vitro and clinical research shows that the yohimbe bark constituent, yohimbine, is metabolized by CYP3A4 enzymes. Theoretically, drugs that inhibit CYP3A4 might increase the levels and adverse effects of yohimbine.
Paroxetine (Paxil)
Paroxetine decreases the clearance of yohimbine and may increase its effects.
Paroxetine, a cytochrome P450 (CYP) 2D6 inhibitor, increases the maximum serum concentration of yohimbine by about 350% and reduces the clearance of yohimbine by about 80% compared to yohimbine alone in patients who are extensive CYP2D6 metabolizers. No significant changes in pharmacokinetic parameters of yohimbine were observed with coadministration of paroxetine in patients who are poor CYP2D6 metabolizers.
Phenothiazines
Theoretically, using yohimbine with phenothiazines might have additive effects.
Yohimbine, a constituent of yohimbe, has alpha-2 adrenergic antagonist effects. Theoretically, combining it with phenothiazines can cause additive alpha-2 adrenergic antagonism.
Stimulant Drugs
Theoretically, taking yohimbe with stimulant drugs can have additive effects.
Yohimbine, a constituent of yohimbe, has sympathomimetic effects and increases blood pressure in a dose-dependent manner. Theoretically, taking yohimbe with stimulant drugs can have additive stimulant and hypertensive effects.
Tricyclic Antidepressants (Tcas)
Theoretically, taking yohimbe with TCAs can increase adverse effects.
A small clinical study in patients taking TCAs for at least 4 weeks shows that receiving doses of intravenous yohimbine 2.5-20 mg daily for up to 7 days precipitates severe anxiety, agitation, and tremor. The effects of yohimbe bark itself are unclear; oral yohimbe bark contains 0.6% to 1.38% yohimbine, but it is unclear how much is absorbed.
Anticoagulant/Antiplatelet Drugs
Theoretically, combining yohimbe bark with antiplatelet or anticoagulant drugs might have additive effects; however, this has not been reported in clinical research.
Research in healthy adults shows that taking yohimbine, a constituent of yohimbe bark, in doses of 8 mg or more, seems to inhibit platelet aggregation in vitro by binding to the alpha-2 adrenoceptor. The effects of yohimbe bark itself are unclear; yohimbe bark contains 0.6% to 1.38% yohimbine, but it is unclear how much is absorbed.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Theoretically, yohimbe might decrease the levels and clinical effects of CYP1A2 substrates.
In vitro research shows that yohimbe extract induces CYP1A2 enzymes.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, yohimbe might decrease the levels and clinical effects of CYP3A4 substrates.
In vitro research shows that yohimbe extract induces CYP3A4 enzymes.
Black Pepper (fruit) extract
Anticoagulant/Antiplatelet Drugs
Theoretically, black pepper might increase the risk of bleeding when taken with antiplatelet or anticoagulant drugs.
In vitro research shows that piperine, a constituent of black pepper, seems to inhibit platelet aggregation. This has not been reported in humans.
Antidiabetes Drugs
Theoretically, black pepper might increase the risk of hypoglycemia when taken with antidiabetes drugs.
Animal research shows that piperine, a constituent of black pepper, can reduce blood glucose levels. Monitor blood glucose levels closely. Dose adjustments might be necessary.
Atorvastatin (Lipitor)
Theoretically, black pepper might increase blood levels of atorvastatin.
Animal research shows that taking piperine, a constituent of black pepper, 35 mg/kg can increase the maximum serum concentration of atorvastatin three-fold. This has not been reported in humans.
Cyclosporine (Neoral, Sandimmune)
Theoretically, black pepper might increase the effects and side effects of cyclosporine.
In vitro research shows that piperine, a constituent of black pepper, increases the bioavailability of cyclosporine. This has not been reported in humans.
Cytochrome P450 2D6 (Cyp2D6) Substrates
Theoretically, black pepper might increase levels of drugs metabolized by CYP2D6.
In vitro research suggests that some constituents of black pepper inhibit CYP2D6. This has not been reported in humans.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, black pepper might increase levels of drugs metabolized by CYP3A4.
In vitro research and pharmacokinetic simulation data suggest that piperine, a constituent of black pepper, as well as the pepper fruit seem to inhibit CYP3A4. This has not been reported in humans.
Lithium
Theoretically, black pepper might increase blood levels of lithium due to its diuretic effects. The dose of lithium might need to be reduced.
Black pepper is thought to have diuretic properties.
Nevirapine (Viramune)
Black pepper might increase blood levels of nevirapine.
Clinical research shows that piperine, a constituent of black pepper, increases the plasma concentration of nevirapine. However, no adverse effects were observed in this study.
P-Glycoprotein Substrates
Theoretically, black pepper might increase levels of P-glycoprotein substrates.
In vitro research shows that piperine, a constituent of black pepper, seems to inhibit P-glycoprotein.
Pentobarbital (Nembutal)
Theoretically, black pepper might increase the sedative effects of pentobarbital.
Animal research shows that piperine, a constituent of black pepper, increases pentobarbital-induced sleeping time.
Phenytoin (Dilantin)
Black pepper might increase blood levels of phenytoin.
Clinical research shows that piperine, a constituent of black pepper, seems to increase absorption, slow elimination, and increase levels of phenytoin. Taking a single dose of black pepper 1 gram along with phenytoin seems to double the serum concentration of phenytoin. Consuming a soup with black pepper providing piperine 44 mg/200 mL of soup along with phenytoin also seems to increase phenytoin levels when compared with consuming the same soup without black pepper.
Propranolol (Inderal)
Black pepper might increase blood levels of propranolol.
Clinical research shows that piperine, a constituent of black pepper, seems to increase absorption and slow elimination of propranolol.
Rifampin (Rifadin)
Black pepper might increase blood levels of rifampin.
Clinical research shows that piperine, a constituent of black pepper, seems to increase absorption and serum levels of rifampin.
Theophylline
Black pepper might increase blood levels of theophylline.
Clinical research shows that piperine, a constituent of black pepper, seems to increase absorption and slow elimination of theophylline.
Amoxicillin (Amoxil, Trimox)
Theoretically, black pepper might increase the effects and side effects of amoxicillin.
Animal research shows that taking piperine, a constituent of black pepper, with amoxicillin increases plasma levels of amoxicillin. This has not been reported in humans.
Carbamazepine (Tegretol)
Theoretically, black pepper might increase blood levels of carbamazepine, potentially increasing the effects and side effects of carbamazepine.
One clinical study in patients taking carbamazepine 300 mg or 500 mg twice daily shows that taking a single 20 mg dose of purified piperine, a constituent of black pepper, increases carbamazepine levels. Piperine may increase carbamazepine absorption by increasing blood flow to the GI tract, increasing the surface area of the small intestine, or inhibiting cytochrome P450 3A4 (CYP3A4) in the gut wall. Absorption was significantly increased by 7-10 mcg/mL/hour. The time to eliminate carbamazepine was also increased by 4-8 hours. Although carbamazepine levels were increased, this did not appear to increase side effects. In vitro research also shows that piperine can increase carbamazepine levels by 11% in a time-dependent manner.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Theoretically, black pepper might decrease levels and clinical effects of drugs metabolized by CYP1A2.
In vitro research suggests that black pepper induces CYP1A2. This has not been reported in humans.
Bacopa
Anticholinergic Drugs
Theoretically, concurrent use might decrease the effectiveness of both agents.
Bacopa seems to inhibit acetylcholinesterase and might increase acetylcholine levels, which could counteract the effects of anticholinergic drugs. Similarly, anticholinergic drugs might counteract the cholinergic effects of bacopa.
Cevimeline (Evoxac)
Theoretically, bacopa might increase the effects and adverse effects of cevimeline.
In one case, a 58-year-old female taking cevimeline long-term for Sjogren syndrome experienced hyperhidrosis, malaise, nausea, and tachycardia shortly after taking a single dose of bacopa. Symptoms resolved after two days. Cevimeline is metabolized by cytochrome P450 (CYP) 2D6 and CYP3A4, and researchers theorize that bacopa may have inhibited these isoenzymes. However, it is unclear if bacopa causes clinically significant inhibition of either CYP2D6 or CYP3A4.
Cholinergic Drugs
Theoretically, concurrent use of bacopa with other cholinergic drugs might have additive effects.
Bacopa seems to inhibit acetylcholinesterase and might increase acetylcholine levels. Theoretically, this could result in additive cholinergic effects when used with cholinergic drugs.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Theoretically, bacopa might increase the levels and adverse effects of CYP1A2 substrates.
Research on the effects of bacopa extracts on CYP1A2 enzymes is conflicting. Some in vitro evidence shows that bacopa extract can moderately and non-competitively inhibit CYP1A2, while other in vitro evidence suggests that any effect is unlikely to be clinically significant.
Cytochrome P450 2C19 (Cyp2C19) Substrates
Theoretically, bacopa might increase the levels and adverse effects of CYP2C19 substrates.
In vitro evidence suggests that bacopa extract can moderately and non-competitively inhibit CYP2C19 enzymes. It is not known whether this is clinically significant.
Cytochrome P450 2C9 (Cyp2C9) Substrates
Theoretically, bacopa might increase the levels and adverse effects of CYP2C9 substrates.
Research on the effect of bacopa extracts on CYP2C9 enzymes is conflicting. Some in vitro evidence suggests that bacopa extract can moderately and non-competitively inhibit CYP2C9, while other in vitro evidence suggests that any effect is unlikely to be clinically significant.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, bacopa might increase the levels and adverse effects of CYP3A4 substrates.
Research on the effects of bacopa extracts on CYP3A4 enzymes is conflicting. Some in vitro evidence suggests that bacopa extract can moderately and competitively inhibit CYP3A4, while other in vitro evidence suggests that any effect is unlikely to be clinically significant.
Thyroid Hormone
Theoretically, bacopa might have additive effects when used with thyroid hormone.
Animal research suggests that bacopa increases thyroxine (T4) levels in mice by about 40%.
Coleus forskohlii extract
Calcium Channel Blockers
Theoretically, combining coleus with calcium channel blockers might increase the coronary vasodilatory effects.
Forskolin, a constituent of coleus, and calcium channel blockers both cause coronary vasodilatory effects.
Nitrates
Theoretically, combining coleus with nitrates might increase the coronary vasodilatory effects.
Forskolin, a constituent of coleus, and nitrates both cause coronary vasodilatory effects.
Anticoagulant/Antiplatelet Drugs
Theoretically, concomitant use of coleus and anticoagulant or antiplatelet drugs might increase the risk of bruising and bleeding.
In vitro and animal research shows that forskolin, a constituent of coleus, can inhibit platelet aggregation and adhesion.
Antihypertensive Drugs
Theoretically, combining coleus with antihypertensive drugs might cause additive blood pressure lowering effects and increase the risk of hypotension.
Animal research shows that forskolin, a constituent of coleus, may lower blood pressure.
Cytochrome P450 2C9 (Cyp2C9) Substrates
Theoretically, taking coleus may affect drugs metabolized by CYP2C9 and increase the risk of adverse effects or reduce the effectiveness.
Research on the effect of coleus on CYP2C9 is conflicting. Some animal research shows that coleus extract can induce CYP2C9, while in vitro research shows that coleus can inhibit CYP2C9. Until more is known, advise patients that taking coleus might increase or decrease levels of drugs metabolized by CYP2C9.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, taking coleus might decrease serum levels of drugs metabolized by CYP3A4.
In vitro research shows that coleus can activate the nuclear receptor, pregnane X receptor (PXR), which results in increased expression of CYP3A4. Although the clinical significance of this is not known, use caution when considering concomitant use of coleus and other drugs affected by these enzymes.
Warfarin (Coumadin)
Theoretically, taking coleus may affect the metabolism of warfarin and increase the risk of adverse effects or reduce the effectiveness.
Some animal research shows that coleus extract can induce cytochrome P450 2C9 (CYP2C9), an enzyme that metabolizes warfarin. However, other in vitro research shows that coleus can inhibit CYP2C9. Theoretically, taking coleus with drugs metabolized by CYP2C9 might affect drug levels and the risk of adverse effects. Until more is known, advise patients that taking coleus might increase or decrease levels of warfarin.
Aronia (Aronia melanocarpa) (fruit) powder
Anticoagulant/Antiplatelet Drugs
Theoretically, chokeberry might increase the risk of bleeding when taken with anticoagulant or antiplatelet drugs.
Clinical and in vitro research suggests that chokeberry extract can temporarily inhibit platelet aggregation and decrease clot formation.
Antidiabetes Drugs
Theoretically, chokeberry might increase the risk of hypoglycemia when taken with antidiabetes drugs.
Some clinical research shows that chokeberry decreases levels of blood glucose in some patients with diabetes. However, other clinical research suggests that chokeberry has no significant effect on blood glucose levels.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, chokeberry might increase levels of drugs metabolized by CYP3A4.
In vitro research shows that chokeberry inhibits CYP3A4. In humans, there is one case report of a drug interaction with trabectedin, a CYP3A4 substrate, which is hypothesized to have been caused by chokeberry inhibition of CYP3A4.
Trabectedin (Yondelis)
Theoretically, chokeberry might increase the effects and adverse effects of trabectedin.
In one case report, a patient drinking chokeberry juice developed rhabdomyolysis induced by trabectedin, a cytochrome P450 3A4 (CYP3A4) substrate. It is possible that inhibition of CYP3A4 by chokeberry juice might have inhibited the metabolism of trabectedin and increased trabectedin levels in this patient.
Theobromine (Theobroma cacao) (seed) Extract
Ace Inhibitors (Aceis)
Theoretically, taking cocoa with ACEIs might increase the risk of adverse effects.
Human research shows that dark chocolate can inhibit ACE. Additionally, prolonged angioedema in an elderly patient on an ACE inhibitor was precipitated with intake of diabetic chocolate.
Adenosine (Adenocard)
Theoretically, cocoa might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Cocoa contains caffeine. Caffeine is a competitive inhibitor of adenosine at the cellular level. However, caffeine does not seem to affect supplemental adenosine because high interstitial levels of adenosine overcome the antagonistic effects of caffeine. It is recommended that methylxanthines and methylxanthine-containing products be stopped 24 hours prior to pharmacological stress tests. However, methylxanthines appear more likely to interfere with dipyridamole than adenosine-induced stress testing.
Alcohol (Ethanol)
Theoretically, concomitant use might increase levels and adverse effects of caffeine.
Cocoa contains caffeine. Alcohol reduces caffeine metabolism. Concomitant use of alcohol can increase caffeine serum concentrations and the risk of caffeine adverse effects.
Anticoagulant/Antiplatelet Drugs
Theoretically, cocoa may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs.
Clinical research shows that intake of cocoa can inhibit platelet adhesion, aggregation, and activity and increase aspirin-induced bleeding time. For patients on dual antiplatelet therapy, cocoa may enhance the inhibitory effect of clopidogrel, but not aspirin, on platelet aggregation.
Antihypertensive Drugs
Theoretically, taking cocoa with antihypertensive drugs might increase the risk of hypotension.
Clinical research shows that cocoa can modestly decrease blood pressure in hypertensive and normotensive patients.
Beta-Adrenergic Agonists
Theoretically, large amounts of cocoa might increase the cardiac inotropic effects of beta-agonists.
Cocoa contains caffeine. Theoretically, large amounts of caffeine might increase cardiac inotropic effects of beta-agonists. A case of atrial fibrillation associated with consumption of large quantities of chocolate in a patient with chronic albuterol inhalation abuse has also been reported.
Cytochrome P450 1A2 (Cyp1A2) Inhibitors
Theoretically, concomitant use might increase the levels and adverse effects of caffeine.
Cocoa contains caffeine. Caffeine is metabolized by cytochrome P450 1A2 (CYP1A2),. Theoretically, drugs that inhibit CYP1A2 may decrease the clearance rate of caffeine from cocoa and increase caffeine levels.
Dipyridamole (Persantine)
Theoretically, cocoa might decrease the vasodilatory effects of dipyridamole and interfere with its use prior to stress testing.
Cocoa contains caffeine. Caffeine may inhibit dipyridamole-induced vasodilation. It is recommended that methylxanthines and methylxanthine-containing products be stopped 24 hours prior to pharmacological stress tests. Methylxanthines appear more likely to interfere with dipyridamole than adenosine-induced stress testing.
Disulfiram (Antabuse)
Theoretically, disulfiram might increase the risk of adverse effects from caffeine.
Cocoa contains caffeine. In human research, disulfiram decreases the rate of caffeine clearance.
Diuretic Drugs
Theoretically, using cocoa with diuretic drugs might increase the risk of hypokalemia.
Cocoa contains caffeine. In excessive amounts, caffeine can reduce potassium levels due to stimulation of the sodium-potassium pump. Diuretics can also cause lower potassium levels.
Ephedrine
Theoretically, concomitant use might increase the risk for stimulant adverse effects.
Cocoa contains caffeine. There is evidence that using ephedrine with caffeine might increase the risk of serious life-threatening or debilitating adverse effects such as hypertension, myocardial infarction, stroke, seizures, and death.
Estrogens
Theoretically, estrogens might increase the levels and adverse effects of caffeine.
Cocoa contains caffeine. Estrogen inhibits caffeine metabolism.
Flutamide (Eulexin)
Theoretically, cocoa might increase the levels and adverse effects of flutamide.
Cocoa contains caffeine. In vitro evidence suggests that caffeine can inhibit the metabolism of flutamide.
Fluvoxamine (Luvox)
Theoretically, fluvoxamine might increase the levels and adverse effects of caffeine.
Cocoa contains caffeine. Fluvoxamine reduces caffeine metabolism.
Lithium
Theoretically, abrupt cocoa withdrawal might increase the levels and adverse effects of lithium.
Cocoa contains caffeine. There are two case reports of lithium tremor that worsened upon abrupt coffee withdrawal.
Monoamine Oxidase Inhibitors (Maois)
Theoretically, concomitant use might increase the risk of a hypertensive crisis.
Cocoa contains caffeine. Large amounts of caffeine with MAOIs might precipitate a hypertensive crisis.
Nicotine
Theoretically, concomitant use might increase the risk of hypertension.
Cocoa contains caffeine. Concomitant use of caffeine and nicotine has been shown to have additive cardiovascular effects, including increased heart rate and blood pressure. Blood pressure was increased by 10.8/12.4 mmHg when the agents were used concomitantly.
Pentobarbital (Nembutal)
Theoretically, cocoa might decrease the effects of pentobarbital.
Cocoa contains caffeine. Caffeine might negate the hypnotic effects of pentobarbital.
Phenobarbital (Luminal)
Theoretically, cocoa might reduce the effects of phenobarbital and increase the risk for convulsions.
Cocoa contains caffeine. Animal research suggests that caffeine can decrease the anticonvulsant activity of phenobarbital. The exact mechanism of this interaction is unclear.
Phenylpropanolamine
Theoretically, phenylpropanolamine might increase the risk of hypertension, as well as the levels and adverse effects of caffeine.
Cocoa contains caffeine. Concomitant use of phenylpropanolamine and caffeine might cause an additive increase in blood pressure. Phenylpropanolamine also seems to increase caffeine serum levels.
Phenytoin (Dilantin)
Theoretically, cocoa might reduce the effects of phenytoin and increase the risk for convulsions.
Cocoa contains caffeine. Animal research suggests that caffeine can decrease the anticonvulsant activity of phenytoin. The effect does not seem to be related to the seizure threshold-lowering effects of caffeine. However, the exact mechanism of this interaction is unclear.
Quinolone Antibiotics
Theoretically, quinolone antibiotics might increase the levels and adverse effects of caffeine.
Cocoa contains caffeine. Quinolones (also referred to as fluoroquinolones) decrease caffeine clearance.
Riluzole (Rilutek)
Theoretically, concomitant use might increase the levels and adverse effects of both caffeine and riluzole.
Cocoa contains caffeine. Caffeine and riluzole are both metabolized by cytochrome P450 1A2, and concomitant use might reduce metabolism of one or both agents.
Stimulant Drugs
Theoretically, concomitant use might increase stimulant adverse effects.
Cocoa contains caffeine. Concomitant use might increase the risk of stimulant adverse effects.
Theophylline
Theoretically, cocoa might increase the levels and adverse effects of theophylline.
Cocoa contains caffeine. Large amounts of caffeine might inhibit theophylline metabolism. Caffeine decreases theophylline clearance 23% to 29%.
Caffeine Anhydrous
Ephedrine
Theoretically, concomitant use might increase the risk for stimulant adverse effects.
Use of ephedrine with caffeine can increase the risk of stimulatory adverse effects. There is evidence that using ephedrine with caffeine might increase the risk of serious life-threatening or debilitating adverse effects such as hypertension, myocardial infarction, stroke, seizures, and death.
Adenosine (Adenocard)
Theoretically, caffeine might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Some evidence shows that caffeine is a competitive inhibitor of adenosine and can reduce the vasodilatory effects of adenosine in humans. However, other research shows that caffeine does not seem to affect supplemental adenosine because high interstitial levels of adenosine overcome the antagonistic effects of caffeine. It is recommended that methylxanthines and methylxanthine-containing products be stopped 24 hours prior to pharmacological stress tests. However, methylxanthines appear more likely to interfere with dipyridamole (Persantine) than adenosine-induced stress testing.
Anticoagulant/Antiplatelet Drugs
Theoretically, caffeine may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs.
Caffeine is reported to have antiplatelet activity. Theoretically, it might increase the risk of bleeding when used concomitantly with these agents; however, this interaction has not been reported in humans.
Beta-Adrenergic Agonists
Theoretically, large amounts of caffeine might increase the cardiac inotropic effects of beta-agonists.
Carbamazepine (Tegretol)
Theoretically, caffeine might reduce the effects of carbamazepine and increase the risk for convulsions.
Animal research suggests that taking caffeine can lower the anticonvulsant effects of carbamazepine and can induce seizures when taken in doses above 400 mg/kg. Human research has shown that taking caffeine 300 mg in three divided doses along with carbamazepine 200 mg reduces the bioavailability of carbamazepine by 32% and prolongs the plasma half-life of carbamazepine 2-fold in healthy individuals.
Cimetidine (Tagamet)
Theoretically, cimetidine might increase the levels and adverse effects of caffeine.
Cimetidine decreases the rate of caffeine clearance by 31% to 42%.
Clozapine (Clozaril)
Caffeine might increase the levels and adverse effects of clozapine and acutely exacerbate psychotic symptoms.
Caffeine might increase the effects and toxicity of clozapine. Caffeine doses of 400-1000 mg per day inhibit clozapine metabolism. Clozapine is metabolized by cytochrome P450 1A2 (CYP1A2). Although researchers speculate that caffeine might inhibit CYP1A2, there is no reliable evidence that caffeine affects CYP1A2. There is also speculation that genetic factors might make some patients more sensitive to an interaction between clozapine and caffeine. In one case report, severe, life-threatening clozapine toxicity and multiorgan system failure occurred in a patient with schizophrenia stabilized on clozapine who consumed caffeine 600 mg daily.
Dipyridamole (Persantine)
Theoretically, caffeine might decrease the vasodilatory effects of dipyridamole and interfere with its use prior to stress testing.
Caffeine inhibits dipyridamole-induced vasodilation. It is recommended that methylxanthines and methylxanthine-containing products be stopped 24 hours prior to pharmacological stress tests. Methylxanthines appear more likely to interfere with dipyridamole (Persantine) than adenosine-induced stress testing.
Disulfiram (Antabuse)
Theoretically, disulfiram use might increase the levels and adverse effects of caffeine.
Disulfiram decreases the rate of caffeine clearance.
Diuretic Drugs
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Caffeine, especially in excessive amounts, can reduce potassium levels due to stimulation of the sodium-potassium pump. Diuretics can also cause lower potassium levels.
Estrogens
Theoretically, estrogens might increase the levels and adverse effects of caffeine.
Estrogen inhibits caffeine metabolism.
Ethosuximide (Zarontin)
Theoretically, caffeine might reduce the effects of ethosuximide and increase the risk for convulsions.
Animal research suggests that caffeine 92.4 mg/kg can decrease the anticonvulsant activity of ethosuximide. However, this effect has not been reported in humans.
Felbamate (Felbatol)
Theoretically, caffeine might reduce the effects of felbamate and increase the risk for convulsions.
Animal research suggests that a high dose of caffeine 161.7 mg/kg can decreases the anticonvulsant activity of felbamate. However, this effect has not been reported in humans.
Flutamide (Eulexin)
Theoretically, caffeine might increase the levels and adverse effects of flutamide.
In vitro evidence suggests that caffeine can inhibit the metabolism of flutamide. However, this effect has not been reported in humans.
Fluvoxamine (Luvox)
Theoretically, fluvoxamine might increase the levels and adverse effects of caffeine.
Fluvoxamine reduces caffeine metabolism.
Lithium
Abrupt caffeine withdrawal might increase the levels and adverse effects of lithium.
Caffeine has diuretic activity. When abruptly discontinued, caffeine may alter the clearance of lithium. There are two case reports of lithium tremor that worsened upon abrupt coffee withdrawal and 6 case reports of elevated serum lithium levels after reducing or eliminating caffeine intake. In one case, a male with schizoaffective disorder stabilized on lithium had an elevated lithium level after reducing his caffeine intake by 87%. At a later date, he increased his caffeine intake by 6-fold, resulting in a subtherapeutic lithium level and a recurrence of psychiatric symptoms.
Monoamine Oxidase Inhibitors (Maois)
Theoretically, concomitant use might increase the risk of a hypertensive crisis.
Caffeine has been shown to inhibit monoamine oxidase (MAO) A and B in laboratory studies. Concomitant intake of large amounts of caffeine with MAOIs might precipitate a hypertensive crisis. In a case report, a patient that consumed 10-12 cups of caffeinated coffee and took the MAOI tranylcypromine presented with severe hypertension. Hypertension was resolved after the patient switched to drinking decaffeinated coffee.
Nicotine
Theoretically, concomitant use might increase the risk of hypertension.
Concomitant use of caffeine and nicotine has been shown to have additive cardiovascular effects, including increased heart rate and blood pressure. Blood pressure was increased by 10.8/12.4 mmHg when the agents were used concomitantly.
Pentobarbital (Nembutal)
Theoretically, caffeine might decrease the effects of pentobarbital.
Caffeine might negate the hypnotic effects of pentobarbital.
Phenobarbital (Luminal)
Theoretically, caffeine might reduce the effects of phenobarbital and increase the risk for convulsions.
Animal research suggests that caffeine can decrease the anticonvulsant activity of phenobarbital. However, the exact mechanism of this interaction is unclear.
Phenylpropanolamine
Theoretically, phenylpropanolamine might increase the risk of hypertension, as well as the levels and adverse effects of caffeine.
Concomitant use of phenylpropanolamine and caffeine might cause an additive increase in blood pressure. Phenylpropanolamine also seems to increase caffeine serum levels.
Phenytoin (Dilantin)
Theoretically, caffeine might reduce the effects of phenytoin and increase the risk for convulsions.
Animal research suggests that caffeine can decrease the anticonvulsant activity of phenytoin. The effect does not seem to be related to the seizure threshold-lowering effects of caffeine. However, the exact mechanism of this interaction is unclear.
Pioglitazone (Actos)
Theoretically, caffeine might increase the levels and clinical effects of pioglitazone.
Animal research suggests that caffeine can modestly increase the maximum concentration, area under the curve, and half-life of pioglitazone, and also reduce its clearance. This increased the antidiabetic effects of pioglitazone. However, the exact mechanism of this interaction is unclear.
Quinolone Antibiotics
Theoretically, quinolone antibiotics might increase the levels and adverse effects of caffeine.
Quinolones (also called fluoroquinolones) can decrease caffeine clearance by inhibiting cytochrome P450 1A2 (CYP1A2) enzyme.
Riluzole (Rilutek)
Theoretically, concomitant use might increase the levels and adverse effects of both caffeine and riluzole.
Caffeine and riluzole are both metabolized by cytochrome P450 1A2 (CYP1A2), and concomitant use might reduce the metabolism of one or both agents.
Purple Corn (grain) extract
Antidiabetes Drugs
Theoretically, taking corn silk with antidiabetes drugs might increase the risk of hypoglycemia.
Animal research in diabetic mice shows that taking corn silk extract lowers fasting blood glucose levels.
Antihypertensive Drugs
Taking corn silk extract with antihypertensive drugs might increase the risk of hypotension.
Clinical research in both hypertensive and normotensive adults shows that taking corn silk extract lowers systolic and diastolic blood pressure.
Corticosteroids
Taking corn silk with corticosteroids might increase the risk of hypokalemia.
Clinical research shows that taking corn silk extract increases the urinary excretion of potassium.
Diuretic Drugs
Taking corn silk with diuretic drugs might increase the risk of adverse effects such as hyponatremia and hypokalemia.
Clinical research shows that taking corn silk extract increases urine volume and promotes the urinary excretion of sodium and potassium. Some patients may require electrolyte supplementation.
Warfarin (Coumadin)
Theoretically, suddenly stopping, starting, or changing corn silk treatment may alter the effects of warfarin.
Corn silk contains vitamin K. Individuals taking warfarin should consume a consistent daily amount of corn silk to maintain consistent anticoagulation.
Theacrine
Cns Depressants
Theoretically, theacrine might alter the effects of CNS depressants.
Animal research shows that low doses of theacrine have sedating effects, whereas high doses might have stimulant effects. Depending on the dose of theacrine used, it might increase or decrease the effects of CNS depressants. However, these effects have not yet been reported in humans.
Cayenne powder
Anticoagulant/Antiplatelet Drugs
Theoretically, capsicum may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs.
In vitro research shows that capsicum might increase the effects of antiplatelet drugs. Also, population research shows that capsicum is associated with an increased risk of self-reported bleeding in patients taking warfarin. However, clinical research shows that taking a single dose of capsaicin (Asian Herbex Ltd.), the active ingredient in capsicum, 400-800 mcg orally in combination with aspirin 500 mg does not decrease platelet aggregation when compared with taking aspirin 500 mg alone. Also, there was no notable effect on measures of platelet aggregation with capsaicin. It is unclear whether capsaicin must be used in more than a single dose to affect platelet aggregation.
Antidiabetes Drugs
Theoretically, taking capsicum with antidiabetes drugs might increase the risk of hypoglycemia.
Preliminary clinical research shows that consuming capsicum 5 grams along with a glucose drink attenuates the rise in plasma glucose after 30 minutes by 21%, decreases the 2-hour postprandial area under the curve of plasma glucose by 11%, and increases the 2-hour postprandial area under the curve of plasma insulin by 58% in healthy individuals when compared with placebo. Other clinical research shows that taking capsicum 5 mg daily for 28 days significantly reduces postprandial blood glucose and insulin levels, but not fasting blood glucose and insulin levels, in patients with gestational diabetes.
Aspirin
Theoretically, taking capsicum with aspirin might reduce the bioavailability of aspirin.
Animal research shows that acute or chronic intake of capsicum pepper reduces oral aspirin bioavailability. This has not been shown in humans.
Theophylline
Theoretically, taking capsicum with theophylline might increase the levels and adverse effects of theophylline.
In animal research, oral administration of capsicum reduced excretion of theophylline. However, capsicum does not seem to affect the pharmacokinetics of theophylline when administered intravenously.
Ace Inhibitors (Aceis)
Theoretically, using topical capsaicin may increase the risk of ACE inhibitor-induced cough.
There is one case report of a topically applied capsaicin cream contributing to the cough reflex in a patient using an ACEI. However, it is unclear if this interaction is clinically significant.
Ciprofloxacin (Cipro)
Theoretically, taking capsicum with ciprofloxacin might increase levels and adverse effects of ciprofloxacin.
Animal research shows that concomitant use of capsaicin, the active constituent of capsicum, and ciprofloxacin increases the bioavailability of ciprofloxacin by up to 70%.
N-Acetyl L-Carnitine
Acenocoumarol (Sintrom)
Theoretically, acetyl-L-carnitine might increase the anticoagulant effects of acenocoumarol.
L-carnitine, the parent compound of acetyl-L-carnitine, might enhance the anticoagulant effects of acenocoumarol, an oral anticoagulant that is similar to warfarin, but shorter-acting. There are at least two case reports of INR elevation when L-carnitine was taken with acenocoumarol. In one case, a 33-year-old male with a previously stable INR had an elevated INR of 4.65 after L-carnitine was started and continued for 10 weeks. INR normalized after discontinuation of the L-carnitine-containing product. It is unclear if such an interaction would also occur with acetyl-L-carnitine.
Serotonergic Drugs
Theoretically, acetyl-L-carnitine might increase the risk of serotonergic side effects, including serotonin syndrome and cerebral vasoconstrictive disorders, when taken with serotonergic drugs.
Animal research shows that acetyl-L-carnitine can increase levels of serotonin in the brain.
Thyroid Hormone
Theoretically, acetyl-L-carnitine might decrease the effectiveness of thyroid hormone replacement.
L-carnitine appears to act as a peripheral thyroid hormone antagonist by inhibiting entry of thyroid hormone into the nucleus of cells. Taking L-carnitine also seems to diminish some of the symptoms of hyperthyroidism. It is unclear if such an interaction would occur with acetyl-L-carnitine.
Warfarin (Coumadin)
Theoretically, acetyl-L-carnitine might increase the anticoagulant effects of warfarin.
L-carnitine, the parent compound of acetyl-L-carnitine, might increase the anticoagulant effects of acenocoumarol, a shorter-acting oral anticoagulant similar to warfarin. There is not enough information to know whether this interaction occurs with acetyl-L-carnitine and warfarin.
Brand information
Manufacturer and brand details for Maxmium Strength Lipo-Drex, from the product label.
iSatori
See all iSatori products- Name
- iSatori a division of FitLife Brands
- Street Address
- 5214 South 136th St.
- City
- Omaha
- State
- NE
- ZipCode
- 68137
- Phone Number
- 1-866-688-7679
- Web Address
- iSatori.com
Maxmium Strength Lipo-Drex by iSatori: Common Questions
Does Maxmium Strength Lipo-Drex by iSatori interact with any medications?
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Written and reviewed by the HelloPharmacist editorial staff. Our editorial policy
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Label information is sourced from the NIH Dietary Supplement Label Database and reflects the product version on file; always read your actual product label. This page is for education only and is not a substitute for professional medical advice. Confirm with your pharmacist or doctor before combining supplements and medications.
The Full Monographs Behind Maxmium Strength Lipo-Drex’s Ingredients
Every ingredient we hold a full HelloPharmacist monograph for — uses, evidence, safety, and the complete interaction list.
Theacrine
Interacts with 248 drugsTheacrine is a caffeine-like compound found naturally in certain tea plants and is sold in supplements for energy, focus, and mood. Early human studies suggest it may give a stimulant-like b...
Read the full Theacrine monograph → Herb & supplement monographBacopa
Interacts with 930 drugsBacopa is an Ayurvedic herb most often used for memory and thinking. Some small studies suggest it may modestly help memory when taken regularly for several weeks, but the evidence is limite...
Read the full Bacopa monograph → Herb & supplement monographCocoa
Interacts with 661 drugsCocoa is rich in plant compounds called flavanols that may modestly support blood vessel function and blood pressure, but most chocolate products are high in sugar, fat, and calories, which...
Read the full Cocoa monograph → Herb & supplement monographAcetyl-l-carnitine
Interacts with 203 drugsAcetyl-L-carnitine is a form of the amino acid carnitine that the body uses to help produce energy in cells. It is most studied for nerve pain and memory-related conditions, though the evide...
Read the full Acetyl-l-carnitine monograph → Herb & supplement monographBerberine
Interacts with 1,160 drugsBerberine is a yellow plant compound that has shown promise for lowering blood sugar and cholesterol in some studies, but the quality of research varies and it is not a replacement for presc...
Read the full Berberine monograph → Herb & supplement monographBlackberry
Blackberry is a common edible berry that is safe and nutritious as a food, rich in vitamin C, fiber, and antioxidant plant compounds. The leaves and root have a long history of traditional u...
Read the full Blackberry monograph → Herb & supplement monographChokeberry
Interacts with 811 drugsChokeberry (aronia) is a dark berry rich in antioxidants called polyphenols, and it's widely eaten as juice, jam, and supplements. Early research hints it may support heart health, blood pre...
Read the full Chokeberry monograph → Herb & supplement monographCorn Silk
Interacts with 290 drugsCorn silk is a traditional herbal remedy taken as a tea or extract, mostly for urinary and mild fluid-related complaints. High-quality human evidence for these uses is limited, so it should...
Read the full Corn Silk monograph → Herb & supplement monographGreen Tea
Interacts with 1,293 drugsGreen tea is a popular beverage rich in antioxidants called catechins, and drinking it in normal amounts is considered safe for most people. Concentrated green tea extracts are a different s...
Read the full Green Tea monograph → Herb & supplement monographColeus
Interacts with 915 drugsColeus is a plant from the mint family whose root contains a compound called forskolin, often marketed for weight loss, asthma, and heart health. While early lab and small human studies are...
Read the full Coleus monograph → Herb & supplement monographCaffeine
Interacts with 655 drugsCaffeine is a natural stimulant found in coffee, tea, and many other plants and products. In moderate amounts it can boost alertness and reduce tiredness for most healthy adults, but too muc...
Read the full Caffeine monograph → Herb & supplement monographOrnithine
Ornithine is a non-essential amino acid your body makes naturally as part of the urea cycle, which helps remove ammonia. It is sold as a supplement for fatigue, exercise recovery, and sleep,...
Read the full Ornithine monograph → Herb & supplement monographYohimbe
Interacts with 1,125 drugsYohimbe is a West African tree bark that contains yohimbine, a compound mainly promoted for erectile dysfunction and as an aphrodisiac. A prescription form of yohimbine has some evidence for...
Read the full Yohimbe monograph → Herb & supplement monographBlack Pepper
Interacts with 1,019 drugsBlack pepper is a common kitchen spice that is generally safe in the amounts used in food. Its extract, piperine, is mostly added to supplements to help the body absorb other ingredients (li...
Read the full Black Pepper monograph → Herb & supplement monographCapsicum
Interacts with 239 drugsCapsicum (chili pepper) contains capsaicin, which is best known and best studied as a topical treatment for certain types of pain. Topical capsaicin products are supported by reasonable evid...
Read the full Capsicum monograph →Sources & How We Checked
Maxmium Strength Lipo-Drex's label data comes from the NIH Dietary Supplement Label Database; the ingredient interaction data is from the Natural Medicines database, reviewed by our pharmacists.
- NIH Dietary Supplement Label Database (DSLD) — The official product label on file for this supplement.
- Natural Medicines (Therapeutic Research Center) — Evidence-graded clinical reference behind the ingredient interaction data.
Content is written and reviewed by licensed HelloPharmacist pharmacists. See our data sources and editorial standards for how this information is built and checked.
The 864 references behind this product’s interaction data
Every citation that drives the interaction findings for this product’s ingredients, from the evidence-graded Natural Medicines (TRC Healthcare) database. Open an ingredient to browse its citations — links open the study on PubMed or the publisher’s site.
Caffeine 236 references
- McEvoy GK, ed. AHFS Drug Information. Bethesda, MD: American Society of Health-System Pharmacists, 1998.
- Harder S, Fuhr U, Staib AH, Wolff T. Ciprofloxacin-caffeine: a drug interaction established using in vivo and in vitro investigations. Am J Med 1989;87:89S-91S. PubMed
- Carbo M, Segura J, De la Torre R, et al. Effect of quinolones on caffeine disposition. Clin Pharmacol Ther 1989;45:234-40. PubMed
- Healy DP, Polk RE, Kanawati L, et al. Interaction between oral ciprofloxacin and caffeine in normal volunteers. Antimicrob Agents Chemother 1989;33:474-8. PubMed
- Mester R, Toren P, Mizrachi I, et al. Caffeine withdrawal increases lithium blood levels. Biol Psychiatry 1995;37:348-50. PubMed
- Jefferson JW. Lithium tremor and caffeine intake: two cases of drinking less and shaking more. J Clin Psychiatry 1988;49:72-3.
- Joeres R, Klinker H, Heusler H, et al. Influence of mexiletine on caffeine elimination. Pharmacol Ther 1987;33:163-9. PubMed
- Vahedi K, Domingo V, Amarenco P, Bousser MG. Ischemic stroke in a sportsman who consumed MaHuang extract and creatine monohydrate for bodybuilding. J Neurol Neurosurg Psychiatr 2000;68:112-3.
- Wakabayashi K, Kono S, Shinchi K, et al. Habitual coffee consumption and blood pressure: A study of self-defense officials in Japan. Eur J Epidemiol 1998;14:669-73. PubMed
- Hodgson JM, Puddey IB, Burke V, et al. Effects on blood pressure of drinking green and black tea. J Hypertens 1999;17:457-63. PubMed
- Rapuri PB, Gallagher JC, Kinyamu HK, Ryschon KL. Caffeine intake increases the rate of bone loss in elderly women and interacts with vitamin D receptor genotypes. Am J Clin Nutr 2001;74:694-700. PubMed
- The National Toxicology Program (NTP). Caffeine. Center for the Evaluation of Risks to Human Reproduction (CERHR). Available at: http://cerhr.niehs.nih.gov/common/caffeine.html.
- Klebanoff MA, Levine RJ, DerSimonian R, et al. Maternal serum paraxanthine, a caffeine metabolite, and the risk of spontaneous abortion. N Engl J Med 1999;341:1639-44. PubMed
- Eskenazi B. Caffeine—filtering the facts. N Engl J Med 1999;341:1688-9. PubMed
- Fernandes O, Sabharwal M, Smiley T, et al. Moderate to heavy caffeine consumption during pregnancy and relationship to spontaneous abortion and abnormal fetal growth: a meta-analysis. Reprod Toxicol 1998;12:435-44. PubMed
- Pollock BG, Wylie M, Stack JA, et al. Inhibition of caffeine metabolism by estrogen replacement therapy in postmenopausal women. J Clin Pharmacol 1999;39:936-40. PubMed
- Nurminen ML, Niittynen L, Korpela R, Vapaatalo H. Coffee, caffeine and blood pressure: a critical review. Eur J Clin Nutr 1999;53:831-9. PubMed
- Dews PB, Curtis GL, Hanford KJ, O'Brien CP. The frequency of caffeine withdrawal in a population-based survey and in a controlled, blinded pilot experiment. J Clin Pharmacol 1999;39:1221-32. PubMed
- FDA. Proposed rule: dietary supplements containing ephedrine alkaloids. Available at: www.verity.fda.gov (Accessed 25 January 2000).
- Briggs GB, Freeman RK, Yaffe SJ. Drugs in Pregnancy and Lactation. 5th ed. Philadelphia, PA: Lippincott Williams & Wilkins; 1998.
- Hagg S, Spigset O, Mjorndal T, Dahlqvist R. Effect of caffeine on clozapine pharmacokinetics in healthy volunteers. Br J Clin Pharmacol 2000;49:59-63. PubMed
- Tobias JD. Caffeine in the treatment of apnea associated with respiratory syncytial virus infection in neonates and infants. South Med J 2000;93:297-304. DOI
- Watson JM, Jenkins EJ, Hamilton P, et al. Influence of caffeine on the frequency and perception of hypoglycemia in free-living patients with type 1 diabetes. Diabetes Care 2000;23:455-9. PubMed
- Lloyd T, Johnson-Rollings N, Eggli DF, et al. Bone status among postmenopausal women with different habitual caffeine intakes: a longitudinal investigation. J Am Coll Nutr 2000;19:256-61. PubMed
- American Academy of Pediatrics. The transfer of drugs and other chemicals into human milk. Pediatrics 2001;108:776-89. PubMed
- Sinclair CJ, Geiger JD. Caffeine use in sports. A pharmacological review. J Sports Med Phys Fitness 2000;40:71-9.
- Haller CA, Benowitz NL. Adverse cardiovascular and central nervous system events associated with dietary supplements containing ephedra alkaloids. N Engl J Med 2000;343:1833-8. PubMed
- Ali M, Afzal M. A potent inhibitor of thrombin stimulated platelet thromboxane formation from unprocessed tea. Prostaglandins Leukot Med 1987;27:9-13. PubMed
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