DTX-A Ingredients & Drug Interactions
by Nutri-West
What is this page for?
First and foremost: checking DTX-A 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
DTX-A is a dietary supplement by Nutri-West with 17 active ingredients. Its ingredients are commonly taken for liver health and protection, hepatitis, cirrhosis.Based on those ingredients, 1,501 medications have a known interaction with it, the most serious rated major. The ingredients most likely to interact are Garlic extract, Milk Thistle extract, Red Clover extract. Use the checker below to test your specific medication, or read the full HelloPharmacist Interaction Report.
Check Your Meds Against DTX-A by Nutri-West
Ask about any prescription or over-the-counter medication and we check it for interactions with DTX-A by Nutri-West — 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 DTX-A by Nutri-West
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
DTX-A contains 17 active herbal extracts in a liquid form, delivered in alcohol and water. The blend includes milk thistle, gotu kola, cascara sagrada, dandelion root (appearing twice), garlic, cayenne, burdock, red clover, cleavers, wild indigo, yellow dock, butternut, echinacea purpurea, red beet, uva ursi, and blessed thistle.
Each ingredient is included as a concentrated extract to support the formula's intended uses. The inactive ingredients are alcohol and water, which serve as the carrier and preservative for the liquid delivery.
Does it work?
Strong evidence
Most of the herbs in this blend lack strong evidence for their claimed benefits. Milk thistle is possibly effective for type 2 diabetes.
Gotu kola is possibly effective for venous insufficiency and burns, but possibly ineffective for cognitive function. Garlic is possibly effective for periodontitis, nonalcoholic fatty liver disease, diabetes, hypertension, and atherosclerosis.
Cayenne is likely effective for postherpetic neuralgia and diabetic neuropathy, and possibly effective for cluster headache and back pain. Echinacea, red beet, and most other ingredients in this formula do not have sufficient reliable evidence in our data to rate their effectiveness for any condition.
Because this is a combination product, we cannot assess how these herbs work together or what the overall formula is intended to treat.
How safe is it?
Well-documented data
Milk thistle is generally well tolerated but should involve a doctor for liver conditions, is best avoided during pregnancy, and requires caution while breastfeeding. Gotu kola is generally well tolerated short-term but has raised liver concerns; avoid in pregnancy and breastfeeding.
Cascara sagrada carries real risks especially with long-term use and should be avoided in pregnancy and breastfeeding. Dandelion is generally well tolerated as food but supplement doses are less studied; limited safety data exist for pregnancy, and caution is advised while breastfeeding.
Garlic is generally safe as food but supplements may cause stomach upset and increase bleeding risk; food amounts are likely fine in pregnancy, but supplement doses are not well studied, and food amounts are likely fine while breastfeeding. Cayenne is generally considered safe as food and in approved topical products but commonly causes burning and irritation; food amounts are likely fine in pregnancy and breastfeeding, but concentrated supplements are not well studied.
Burdock is likely safe as a food and short-term in healthy adults but lacks human safety data; avoid medicinal amounts in pregnancy, and avoid medicinal use while breastfeeding. Red clover is generally well tolerated short-term in healthy adults but has estrogen-like activity calling for caution; avoid in pregnancy and breastfeeding.
Wild indigo may be safe in small amounts short-term but larger doses are toxic; avoid in pregnancy and breastfeeding. Yellow dock may act as a laxative and contains oxalates; use short-term and with care, avoid in pregnancy and breastfeeding.
Butternut has limited safety data and acts as a laxative; avoid in pregnancy and breastfeeding. Echinacea is generally well tolerated short-term but may cause allergic reactions in people sensitive to ragweed; evidence is limited for pregnancy, and there is not enough safety information for breastfeeding.
Red beet is widely eaten as food and generally well tolerated; concentrated supplements lack safety data. Uva ursi is generally well tolerated in low doses short-term but can be toxic in high doses or with prolonged use; avoid in pregnancy and breastfeeding.
Blessed thistle is often well tolerated in small amounts but human safety data are limited and large doses can cause nausea or vomiting; avoid in pregnancy, and traditionally used to support milk supply but safety has not been well studied. The most common adverse effects across ingredients are gastrointestinal (nausea, diarrhea, stomach upset) and allergic reactions in sensitive individuals.
Meds to double-check
Major interaction found
Before taking DTX-A, double-check these medication types with your doctor or pharmacist, starting with the most serious: diuretics and heart medications like digoxin (this combination risks dangerous potassium loss and heart toxicity); blood thinners like warfarin and antiplatelet drugs (increased bleeding risk); antidiabetes drugs (risk of low blood sugar); antihypertensive drugs; immunosuppressants; and drugs metabolized by your liver's CYP enzymes, including protease inhibitors, tacrolimus, and many others. Cascara sagrada and yellow dock are particularly risky long-term with diuretics.
If you take lithium, fluoroquinolone antibiotics, H2-blockers, antacids, or PPIs, these also warrant review.
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 complex herbal formula with multiple ingredients that interact with common medications — particularly heart drugs, blood thinners, diabetes medications, and diuretics. If you take any prescription medications or have liver, heart, or kidney conditions, check your exact drugs against the interaction list on this page or with your own pharmacist before starting.
The blend's effectiveness for any condition is not well established in our data. Talk with your doctor or pharmacist about whether this product is right for you and how it fits with your current health plan.
Educational only — not medical advice; always confirm with your pharmacist. Our editorial policy · How we use AI
Assessment coverage: 16 of 17 active ingredients matched to our full ingredient reviews (monographs). Based on the product label dated Sep 24, 2021.
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 DTX-A, straight from the product label.
| Brand | Nutri-West |
|---|---|
| Net contents | 1 Ounce(s); 30 mL |
| Market status | On market |
| Date entered into DSLD | Sep 24, 2021 |
| DSLD ID | 252263 |
| Product type | Botanical |
| Supplement form | Liquid |
| Dietary claims / uses | All Other |
| Intended target group(s) | Adult (18 - 50 Years) |
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 DTX-A by Nutri-West, sourced from the NIH Dietary Supplement Label Database.
Supplement Facts
| Ingredient | Amount | % DV |
|---|---|---|
| Pure Tincture extract of | 0 NP | -- |
| Milk Thistle extract | 0 NP | -- |
| Gotu Kola extract | 0 NP | -- |
| Cascara Sagrada extract | 0 NP | -- |
| Dandelion extract | 0 NP | -- |
| Garlic extract | 0 NP | -- |
| Cayenne extract | 0 NP | -- |
| Burdock extract | 0 NP | -- |
| Red Clover extract | 0 NP | -- |
| Cleavers extract | 0 NP | -- |
| Wild Indigo extract | 0 NP | -- |
| Yellow Dock extract | 0 NP | -- |
| Butternut extract | 0 NP | -- |
| Dandelion extract | 0 NP | -- |
| Echinacea purpurea extract | 0 NP | -- |
| Red Beet extract | 0 NP | -- |
| Uva Ursi extract | 0 NP | -- |
| Blessed Thistle extract | 0 NP | -- |
Other ingredients: Alcohol, Water
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.
General Statements
For distribution by health care professionals only.
“When you want the best”
Storage
Store in cool, dry place.
Precautions
Keep out of reach of children.
Tamper resistant outer seal – do not use if broken.
FDA Statement of Identity
Dietary Supplement
Formulation
Herbal Tincture
Formula
Contains: 63% alcohol
Is this label outdated? Report a formula or label change and our pharmacy team will review it.
DTX-A by Nutri-West 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 DTX-A by Nutri-West
These are the 17 active ingredients this product is made of. Select any to open its full monograph.
Serving size5 Drop(s) Dosage formLiquid 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.
Pure Tincture extract of
- › Milk Thistle extract
- › Gotu Kola extract
- › Cascara Sagrada extract
- › Dandelion extract
- › Garlic extract
- › Cayenne extract
- › Burdock extract
- › Red Clover extract
- › Cleavers extract
- › Wild Indigo extract
- › Yellow Dock extract
- › Butternut extract
- › Dandelion extract
- › Echinacea purpurea extract
- › Red Beet extract
- › Uva Ursi extract
- › Blessed Thistle extract
Other (inactive) ingredients: Alcohol, Water. These complete the product’s ingredient list but are not active constituents.
DTX-A by Nutri-West Drug Interactions
HelloPharmacist Interaction Report
DTX-A by Nutri-West is a 17-ingredient liquid blend that interacts with medications through its milk thistle, gotu kola, cascara sagrada, dandelion, garlic, cayenne, burdock, red clover, wild indigo, yellow dock, butternut, echinacea, red beet, uva ursi, and blessed thistle content.
The most serious interaction is a Major-severity risk: yellow dock may increase digoxin toxicity and raise the risk of dangerous potassium loss (hypokalemia) when taken with diuretics, particularly concerning with heart medications.
Read the full breakdown — every affected drug type, severity by severity
Several Moderate-severity interactions span multiple drug categories. Milk thistle may affect blood sugar control with antidiabetes drugs, increase warfarin effects, and alter how your body clears certain medications through liver enzymes.
Gotu kola can increase sedation with CNS depressants and raise hepatotoxicity risk. Cascara sagrada and butternut (both stimulant laxatives) may dangerously lower potassium levels with diuretics or corticosteroids, raise bleeding risk with warfarin, and increase digoxin toxicity.
Dandelion appears twice in this formula and may raise potassium to unsafe levels with potassium-sparing diuretics, increase bleeding risk with blood thinners, lower blood sugar with antidiabetes drugs, and affect fluoroquinolone antibiotics. Garlic may lower blood pressure with antihypertensive drugs, increase bleeding with anticoagulants and warfarin, and alter levels of protease inhibitors and other enzyme-metabolized drugs.
Cayenne may increase bleeding risk and lower blood sugar. Red clover may interfere with estrogen therapy and tamoxifen, and increase methotrexate toxicity.
Echinacea may increase caffeine levels and affect immunosuppressants. Red beet may affect CYP3A4 substrate levels.
Uva ursi may increase lithium levels and affect multiple enzyme-metabolized drugs. Blessed thistle may reduce acid-suppressing medication effectiveness.
We could not check cleavers extract — no data are on file for it. Altogether, these interactions span 1,502 individual medications.
Use the search tool on this page to check your exact medications before starting.
Check your own medications below · Editorial policy · How we use AI
Want to check YOUR meds against DTX-A?
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 DTX-A interact with 1,501 drugs. Click any drug to see the details.
14 of the 17 ingredients in DTX-A interact with drugs. Each result below shows which ingredient is responsible. Garlic extract Milk Thistle extract Red Clover extract Red Beet extract Echinacea purpurea extract Uva Ursi extract Cascara Sagrada extract Gotu Kola extract Dandelion extract Cayenne extract Burdock extract Butternut extract Yellow Dock extract Blessed Thistle extract
Acetaminophen, Caffeine, PyrilamineMidol Max Strength Menstrual
How Acetaminophen, Caffeine, Pyrilamine interacts with DTX-A — through 11 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Acetaminophen, Caffeine, Pyrilamine interactionEchinacea Purpurea ExtractCytochrome P450 1a2 (cyp1a2) Substrates, Cytochrome P450 3a4 (cyp3a4) Substrates +1 Moderate
Interaction Summary
Echinacea might inhibit the metabolism of CYP1A2 and increase plasma levels of some drugs.
Read the full Echinacea Purpurea Extract + Acetaminophen, Caffeine, Pyrilamine interactionMilk Thistle ExtractCytochrome P450 3a4 (cyp3a4) Substrates, Glucuronidated Drugs Moderate
Interaction Summary
It is unclear if milk thistle inhibits CYP3A4; research is conflicting.
Read the full Milk Thistle Extract + Acetaminophen, Caffeine, Pyrilamine interactionUva Ursi ExtractCytochrome P450 3a4 (cyp3a4) Substrates, Glucuronidated Drugs Moderate
Interaction Summary
Theoretically, uva ursi may decrease the metabolism of CYP3A4 substrates.
Read the full Uva Ursi Extract + Acetaminophen, Caffeine, Pyrilamine interactionDandelion ExtractCytochrome P450 1a2 (cyp1a2) Substrates, Glucuronidated Drugs Moderate
Interaction Summary
Theoretically, dandelion might increase levels of drugs metabolized by CYP1A2.
Read the full Dandelion Extract + Acetaminophen, Caffeine, Pyrilamine interactionGarlic ExtractCytochrome P450 3a4 (cyp3a4) Substrates, Cytochrome P450 2e1 (cyp2e1) Substrates Moderate
Interaction Summary
Theoretically, garlic products containing allicin might induce intestinal CYP3A4 and inhibit hepatic CYP3A4.
Read the full Garlic Extract + Acetaminophen, Caffeine, Pyrilamine interactionRed Beet ExtractCytochrome P450 3a4 (cyp3a4) Substrates, Cytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, beet might increase the levels of CYP3A4 substrates.
Read the full Red Beet Extract + Acetaminophen, Caffeine, Pyrilamine interactionCascara Sagrada ExtractDiuretic Drugs, Cytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Acetaminophen, Caffeine, Pyrilamine interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Acetaminophen, Caffeine, Pyrilamine interactionGotu Kola ExtractHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, taking gotu kola with hepatotoxic drugs might have additive adverse effects.
Read the full Gotu Kola Extract + Acetaminophen, Caffeine, Pyrilamine interactionRed Clover ExtractCaffeine, Cytochrome P450 3a4 (cyp3a4) Substrates +1 Minor
Interaction Summary
Theoretically, soy might reduce the clearance of caffeine; however, a small clinical study found no effect.
Read the full Red Clover Extract + Acetaminophen, Caffeine, Pyrilamine interactionAcetaminophen, Pamabrom, PyrilamineMidol Max Strength PMS, Pamprin, Pamprin ES
How Acetaminophen, Pamabrom, Pyrilamine interacts with DTX-A — through 11 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Acetaminophen, Pamabrom, Pyrilamine interactionUva Ursi ExtractGlucuronidated Drugs Moderate
Interaction Summary
Theoretically, uva ursi may increase levels of drugs metabolized by glucuronidation.
Read the full Uva Ursi Extract + Acetaminophen, Pamabrom, Pyrilamine interactionDandelion ExtractCytochrome P450 1a2 (cyp1a2) Substrates, Glucuronidated Drugs Moderate
Interaction Summary
Theoretically, dandelion might increase levels of drugs metabolized by CYP1A2.
Read the full Dandelion Extract + Acetaminophen, Pamabrom, Pyrilamine interactionMilk Thistle ExtractGlucuronidated Drugs Moderate
Interaction Summary
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Read the full Milk Thistle Extract + Acetaminophen, Pamabrom, Pyrilamine interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Acetaminophen, Pamabrom, Pyrilamine interactionGotu Kola ExtractHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, taking gotu kola with hepatotoxic drugs might have additive adverse effects.
Read the full Gotu Kola Extract + Acetaminophen, Pamabrom, Pyrilamine interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Acetaminophen, Pamabrom, Pyrilamine interactionGarlic ExtractCytochrome P450 2e1 (cyp2e1) Substrates Moderate
Interaction Summary
Garlic might increase levels of drugs metabolized by CYP2E1.
Read the full Garlic Extract + Acetaminophen, Pamabrom, Pyrilamine interactionEchinacea Purpurea ExtractCytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Echinacea might inhibit the metabolism of CYP1A2 and increase plasma levels of some drugs.
Read the full Echinacea Purpurea Extract + Acetaminophen, Pamabrom, Pyrilamine interactionRed Clover ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, red clover might increase levels of drugs metabolized by CYP1A2; however, a small clinical study found no effect.
Read the full Red Clover Extract + Acetaminophen, Pamabrom, Pyrilamine interactionRed Beet ExtractCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Red Beet Extract + Acetaminophen, Pamabrom, Pyrilamine interactionAcetazolamideAk-Zol, Diamox
How Acetazolamide interacts with DTX-A — through 6 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Acetazolamide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Acetazolamide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Acetazolamide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Acetazolamide interactionGotu Kola ExtractCns Depressants Moderate
Interaction Summary
Theoretically, taking gotu kola might increase the sedative effects of CNS depressants.
Read the full Gotu Kola Extract + Acetazolamide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Acetazolamide interactionAmiloride, HydrochlorothiazideAmil-Co, Amilzide, Moduret 25, Moduretic
How Amiloride, Hydrochlorothiazide interacts with DTX-A — through 6 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Amiloride, Hydrochlorothiazide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Amiloride, Hydrochlorothiazide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Amiloride, Hydrochlorothiazide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Amiloride, Hydrochlorothiazide interactionDandelion ExtractPotassium-sparing Diuretics Moderate
Interaction Summary
Theoretically, dandelion might increase the risk of hyperkalemia when taken with potassium-sparing diuretics.
Read the full Dandelion Extract + Amiloride, Hydrochlorothiazide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Amiloride, Hydrochlorothiazide interactionAmmonium ChlorideAmmonium Chloride
How Ammonium Chloride interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Ammonium Chloride interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Ammonium Chloride interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Ammonium Chloride interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Ammonium Chloride interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Ammonium Chloride interactionAtenolol, ChlortalidoneAtenixCo, Tenoret 50, Totaretic
How Atenolol, Chlortalidone interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Atenolol, Chlortalidone interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Atenolol, Chlortalidone interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Atenolol, Chlortalidone interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Atenolol, Chlortalidone interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Atenolol, Chlortalidone interactionAtenolol, ChlorthalidoneTenoretic
How Atenolol, Chlorthalidone interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Atenolol, Chlorthalidone interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Atenolol, Chlorthalidone interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Atenolol, Chlorthalidone interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Atenolol, Chlorthalidone interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Atenolol, Chlorthalidone interactionAzilsartan, ChlorthalidoneEdarbyclor
How Azilsartan, Chlorthalidone interacts with DTX-A — through 7 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Azilsartan, Chlorthalidone interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Azilsartan, Chlorthalidone interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Azilsartan, Chlorthalidone interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Azilsartan, Chlorthalidone interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Azilsartan, Chlorthalidone interactionMilk Thistle ExtractCytochrome P450 2c9 (cyp2c9) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
Read the full Milk Thistle Extract + Azilsartan, Chlorthalidone interactionRed Clover ExtractCytochrome P450 2c9 (cyp2c9) Substrates Minor
Interaction Summary
Theoretically, red clover might increase levels of drugs metabolized by CYP2C9; however, a small clinical study found no effect.
Read the full Red Clover Extract + Azilsartan, Chlorthalidone interactionBenazepril, HydrochlorothiazideLotensin HCT
How Benazepril, Hydrochlorothiazide interacts with DTX-A — through 6 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Benazepril, Hydrochlorothiazide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Benazepril, Hydrochlorothiazide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Benazepril, Hydrochlorothiazide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Benazepril, Hydrochlorothiazide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Benazepril, Hydrochlorothiazide interactionCayenne ExtractAce Inhibitors (aceis) Minor
Interaction Summary
Theoretically, using topical capsaicin may increase the risk of ACE inhibitor-induced cough.
Read the full Cayenne Extract + Benazepril, Hydrochlorothiazide interactionBendroflumethiazideAprinox, Naturetin, Neo-NaClex
How Bendroflumethiazide interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Bendroflumethiazide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Bendroflumethiazide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Bendroflumethiazide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Bendroflumethiazide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Bendroflumethiazide interactionBendroflumethiazide, NadololCorzide
How Bendroflumethiazide, Nadolol interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Bendroflumethiazide, Nadolol interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Bendroflumethiazide, Nadolol interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Bendroflumethiazide, Nadolol interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Bendroflumethiazide, Nadolol interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Bendroflumethiazide, Nadolol interactionBendroflumethiazide, PotassiumCentyl K, Neo-NaClex-K
How Bendroflumethiazide, Potassium interacts with DTX-A — through 4 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Bendroflumethiazide, Potassium interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Bendroflumethiazide, Potassium interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Bendroflumethiazide, Potassium interactionDandelion ExtractPotassium-sparing Diuretics Moderate
Interaction Summary
Theoretically, dandelion might increase the risk of hyperkalemia when taken with potassium-sparing diuretics.
Read the full Dandelion Extract + Bendroflumethiazide, Potassium interactionBendroflumethiazide, Rauwolfia SerpentinaRauzide
How Bendroflumethiazide, Rauwolfia Serpentina interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Bendroflumethiazide, Rauwolfia Serpentina interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Bendroflumethiazide, Rauwolfia Serpentina interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Bendroflumethiazide, Rauwolfia Serpentina interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Bendroflumethiazide, Rauwolfia Serpentina interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Bendroflumethiazide, Rauwolfia Serpentina interactionBenzthiazideExna
How Benzthiazide interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Benzthiazide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Benzthiazide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Benzthiazide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Benzthiazide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Benzthiazide interactionBisoprolol, HydrochlorothiazideZiac
How Bisoprolol, Hydrochlorothiazide interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Bisoprolol, Hydrochlorothiazide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Bisoprolol, Hydrochlorothiazide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Bisoprolol, Hydrochlorothiazide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Bisoprolol, Hydrochlorothiazide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Bisoprolol, Hydrochlorothiazide interactionBumetanideBurinex
How Bumetanide interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Bumetanide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Bumetanide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Bumetanide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Bumetanide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Bumetanide interactionBumetanide, PotassiumBurinex K
How Bumetanide, Potassium interacts with DTX-A — through 4 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Bumetanide, Potassium interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Bumetanide, Potassium interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Bumetanide, Potassium interactionDandelion ExtractPotassium-sparing Diuretics Moderate
Interaction Summary
Theoretically, dandelion might increase the risk of hyperkalemia when taken with potassium-sparing diuretics.
Read the full Dandelion Extract + Bumetanide, Potassium interactionCaffeine, Potassium Salicylate, SalicylamideTrim-Elim
How Caffeine, Potassium Salicylate, Salicylamide interacts with DTX-A — through 10 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Caffeine, Potassium Salicylate, Salicylamide interactionCascara Sagrada ExtractCytochrome P450 3a4 (cyp3a4) Substrates, Diuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might decrease the effects of CYP3A4 substrates.
Read the full Cascara Sagrada Extract + Caffeine, Potassium Salicylate, Salicylamide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Caffeine, Potassium Salicylate, Salicylamide interactionGarlic ExtractCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, garlic products containing allicin might induce intestinal CYP3A4 and inhibit hepatic CYP3A4.
Read the full Garlic Extract + Caffeine, Potassium Salicylate, Salicylamide interactionRed Beet ExtractCytochrome P450 1a2 (cyp1a2) Substrates, Cytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Red Beet Extract + Caffeine, Potassium Salicylate, Salicylamide interactionUva Ursi ExtractCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, uva ursi may decrease the metabolism of CYP3A4 substrates.
Read the full Uva Ursi Extract + Caffeine, Potassium Salicylate, Salicylamide interactionDandelion ExtractCytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, dandelion might increase levels of drugs metabolized by CYP1A2.
Read the full Dandelion Extract + Caffeine, Potassium Salicylate, Salicylamide interactionEchinacea Purpurea ExtractCytochrome P450 3a4 (cyp3a4) Substrates, Caffeine +1 Moderate
Interaction Summary
Echinacea may induce hepatic CYP3A4 and inhibit intestinal CYP3A4.
Read the full Echinacea Purpurea Extract + Caffeine, Potassium Salicylate, Salicylamide interactionRed Clover ExtractCytochrome P450 3a4 (cyp3a4) Substrates, Cytochrome P450 1a2 (cyp1a2) Substrates +1 Minor
Interaction Summary
Theoretically, red clover might increase levels of drugs metabolized by CYP3A4; however, a small clinical study found no effect.
Read the full Red Clover Extract + Caffeine, Potassium Salicylate, Salicylamide interactionMilk Thistle ExtractCytochrome P450 3a4 (cyp3a4) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP3A4; research is conflicting.
Read the full Milk Thistle Extract + Caffeine, Potassium Salicylate, Salicylamide interactionCandesartan Cilexetil, HydrochlorothiazideAtacand HCT
How Candesartan Cilexetil, Hydrochlorothiazide interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Candesartan Cilexetil, Hydrochlorothiazide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Candesartan Cilexetil, Hydrochlorothiazide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Candesartan Cilexetil, Hydrochlorothiazide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Candesartan Cilexetil, Hydrochlorothiazide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Candesartan Cilexetil, Hydrochlorothiazide interactionCaptopril, HydrochlorothiazideAcezide, Capozide
How Captopril, Hydrochlorothiazide interacts with DTX-A — through 6 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Captopril, Hydrochlorothiazide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Captopril, Hydrochlorothiazide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Captopril, Hydrochlorothiazide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Captopril, Hydrochlorothiazide interactionCayenne ExtractAce Inhibitors (aceis) Minor
Interaction Summary
Theoretically, using topical capsaicin may increase the risk of ACE inhibitor-induced cough.
Read the full Cayenne Extract + Captopril, Hydrochlorothiazide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Captopril, Hydrochlorothiazide interactionChlorothiazideDiuril
How Chlorothiazide interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Chlorothiazide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Chlorothiazide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Chlorothiazide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Chlorothiazide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Chlorothiazide interactionChlorothiazide, MethyldopaAldochlor, Aldoclor 150, Aldoclor 250
How Chlorothiazide, Methyldopa interacts with DTX-A — through 6 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Chlorothiazide, Methyldopa interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Chlorothiazide, Methyldopa interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Chlorothiazide, Methyldopa interactionGotu Kola ExtractHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, taking gotu kola with hepatotoxic drugs might have additive adverse effects.
Read the full Gotu Kola Extract + Chlorothiazide, Methyldopa interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Chlorothiazide, Methyldopa interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Chlorothiazide, Methyldopa interactionChlorothiazide, ReserpineDiupres
How Chlorothiazide, Reserpine interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Chlorothiazide, Reserpine interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Chlorothiazide, Reserpine interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Chlorothiazide, Reserpine interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Chlorothiazide, Reserpine interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Chlorothiazide, Reserpine interactionChlorthalidoneHygroton, Thalitone
How Chlorthalidone interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Chlorthalidone interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Chlorthalidone interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Chlorthalidone interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Chlorthalidone interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Chlorthalidone interactionChlorthalidone, ClonidineClorpres, Combipres
How Chlorthalidone, Clonidine interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Chlorthalidone, Clonidine interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Chlorthalidone, Clonidine interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Chlorthalidone, Clonidine interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Chlorthalidone, Clonidine interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Chlorthalidone, Clonidine interactionCryptenamine, MethyclothiazideDiutensen
How Cryptenamine, Methyclothiazide interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Cryptenamine, Methyclothiazide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Cryptenamine, Methyclothiazide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Cryptenamine, Methyclothiazide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Cryptenamine, Methyclothiazide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Cryptenamine, Methyclothiazide interactionCyclothiazideAnhydron, Fluidil
How Cyclothiazide interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Cyclothiazide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Cyclothiazide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Cyclothiazide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Cyclothiazide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Cyclothiazide interactionDeserpidine, HydrochlorothiazideOreticyl, Oreticyl Forte
How Deserpidine, Hydrochlorothiazide interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Deserpidine, Hydrochlorothiazide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Deserpidine, Hydrochlorothiazide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Deserpidine, Hydrochlorothiazide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Deserpidine, Hydrochlorothiazide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Deserpidine, Hydrochlorothiazide interactionDeserpidine, MethyclothiazideEnduronyl, Enduronyl Forte
How Deserpidine, Methyclothiazide interacts with DTX-A — through 5 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDiuretic Drugs Major
Interaction Summary
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
Read the full Yellow Dock Extract + Deserpidine, Methyclothiazide interactionCascara Sagrada ExtractDiuretic Drugs Moderate
Interaction Summary
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Read the full Cascara Sagrada Extract + Deserpidine, Methyclothiazide interactionButternut ExtractDiuretic Drugs Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Deserpidine, Methyclothiazide interactionGarlic ExtractAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
Read the full Garlic Extract + Deserpidine, Methyclothiazide interactionRed Beet ExtractAntihypertensive Drugs Minor
Interaction Summary
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure.
Read the full Red Beet Extract + Deserpidine, Methyclothiazide interactionDigoxinDigitek, Lanoxicaps, Lanoxin
How Digoxin interacts with DTX-A — through 6 ingredients. Tap an ingredient for the detail:
Yellow Dock ExtractDigoxin (lanoxin) Major
Interaction Summary
Theoretically, yellow dock might increase the risk of digoxin toxicity when used long-term or in large amount.
Read the full Yellow Dock Extract + Digoxin interactionCascara Sagrada ExtractDigoxin (lanoxin) Moderate
Interaction Summary
Theoretically, cascara sagrada might cause hypokalemia, potentially increasing the risk of digoxin toxicity.
Read the full Cascara Sagrada Extract + Digoxin interactionButternut ExtractDigoxin (lanoxin) Moderate
Interaction Summary
Butternut has stimulant laxative effects.
Read the full Butternut Extract + Digoxin interactionDandelion ExtractGlucuronidated Drugs Moderate
Interaction Summary
Theoretically, dandelion might increase the clearance of drugs that are UDP-glucuronosyltransferase substrates.
Read the full Dandelion Extract + Digoxin interactionUva Ursi ExtractP-glycoprotein Substrates, Glucuronidated Drugs Moderate
Interaction Summary
Theoretically, uva ursi may alter the levels of drugs transported by P-glycoprotein.
Read the full Uva Ursi Extract + Digoxin interactionMilk Thistle ExtractGlucuronidated Drugs, P-glycoprotein Substrates Moderate
Interaction Summary
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Read the full Milk Thistle Extract + Digoxin interactionEach ingredient & the kinds of drugs it affects
For each ingredient in DTX-A 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.
Garlic extract
Anticoagulant/Antiplatelet Drugs
Garlic may have antiplatelet effects and may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs.
Raw garlic and a variety of garlic extracts have antiplatelet activity and can increase prothrombin time.
Antidiabetes Drugs
Theoretically, taking garlic with antidiabetes drugs might increase the risk of hypoglycemia.
Clinical research suggests that garlic and garlic extract lower blood glucose levels in healthy and diabetic individuals.
Antihypertensive Drugs
Theoretically, taking garlic with antihypertensive drugs might increase the risk of hypotension.
In human research, both garlic and garlic extracts have blood pressure-lowering effects.
Atazanavir (Reyataz)
Theoretically, garlic might decrease levels and effects of atazanavir.
In a case report, a patient consuming six stir-fried garlic cloves three times weekly developed suboptimal atazanavir levels and increases in HIV viral load. While the exact cause of this interaction is unclear, there is speculation that garlic might decrease the intestinal absorption of atazanavir or increase its metabolism by inducing cytochrome P450 3A4 (CYP3A4). Until more is known, advise patients not to consume large amounts of garlic while taking atazanavir.
Cytochrome P450 2E1 (Cyp2E1) Substrates
Garlic might increase levels of drugs metabolized by CYP2E1.
Clinical research suggests garlic oil can inhibit the activity of CYP2E1 by 39%. Use garlic oil cautiously in patients taking drugs metabolized by these enzymes.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, garlic products containing allicin might induce intestinal CYP3A4 and inhibit hepatic CYP3A4. This may increase or decrease levels of drugs metabolized by CYP3A4.
Some human research suggests that garlic may induce INTESTINAL CYP3A4, reducing levels of drugs metabolized by this enzyme. This is primarily based on a study showing that taking a specific allicin-containing garlic product (GarliPure Maximum Allicin Formula, Natrol Inc.) twice daily for 3 days reduces saquinavir levels by approximately 50%. It is speculated that the allicin constituent induced CYP3A4 in the gut mucosa. Another study shows that giving docetaxel intravenously, bypassing the CYP3A4 enzymes in the gut mucosa, along with the same specific garlic product for 12 consecutive days, does not affect docetaxel levels. Conversely, there is concern that garlic may inhibit HEPATIC CYP3A4. In a single case report, increased tacrolimus levels and liver injury occurred in a liver transplant patient after taking a specific garlic supplement (Garlicin Cardio, Nature's Way) at up to three times the manufacturer recommended dose for 7 days. Several other studies have evaluated the impact of other garlic formulations on CYP3A4 substrates and have found no effect. Most of the products in these studies provided little or no allicin.
Isoniazid
Theoretically, garlic might decrease levels of isoniazid.
Animal research suggests that an aqueous extract of garlic reduces isoniazid levels by about 65%. Garlic reduced the maximum concentration (Cmax) and area under the curve (AUC), but not the half-life, of isoniazid. This suggests that garlic extract might inhibit isoniazid absorption across the intestinal mucosa; however, the exact mechanism of this potential interaction is not known.
Protease Inhibitors (Pis)
Theoretically, garlic products containing allicin might decrease levels of PIs.
Protease inhibitors are metabolized by cytochrome P450 3A4 (CYP3A4) isoenzymes. There is concern that garlic products containing allicin might induce intestinal CYP3A4, reducing plasma levels of protease inhibitors. This is primarily based on a study showing that taking a specific garlic product (GarliPure Maximum Allicin Formula, Natrol Inc.) twice daily for 3 days reduces levels of saquinavir, a PI, by approximately 50%. It is speculated that the allicin constituent induce CYP3A4 in the gut mucosa. Several studies have evaluated the impact of other garlic formulations on CYP3A4 substrates and have found no effect. Most of the products in these studies provided little or no allicin.
Saquinavir (Fortovase, Invirase)
Theoretically, garlic containing allicin might decrease levels of saquinavir.
Saquinavir is a substrate of cytochrome P450 3A4 (CYP3A4) isoenzymes. There is concern that garlic products containing allicin might induce intestinal CYP3A4 and cause subtherapeutic levels of saquinavir. This is primarily based on a pharmacokinetic study showing that taking a specific garlic product (GarliPure Maximum Allicin Formula, Natrol Inc.) twice daily for 3 days reduces saquinavir levels by approximately 50%. It is speculated that the allicin constituent induces CYP3A4 in the gut mucosa. Several pharmacokinetic studies have evaluated the impact of other garlic formulations on CYP3A4 substrates and have found no effect. Most of the products in these studies provided little or no allicin. Until more is known about this potential interaction, use garlic containing allicin cautiously in patients taking saquinavir.
Sofosbuvir (Sovaldi)
Theoretically, taking garlic with sofosbuvir might decrease its effectiveness.
Animal research in rats shows that giving aged garlic extract 120 mg/kg orally daily for 14 days decreases the area under the concentration time curve (AUC) after a single sofosbuvir dose of 40 mg/kg by 36%, increases the clearance by 63%, and decreases the plasma concentrations at 1 and 8 hours by 35% and 58%, respectively. This interaction is hypothesized to be due to induction of intestinal P-glycoprotein expression by garlic.
Tacrolimus (Prograf)
Theoretically, garlic might increase levels of tacrolimus.
In one case report, a liver transplant patient taking tacrolimus experienced increased tacrolimus levels and liver injury after taking a specific garlic supplement (Garlicin Cardio, Nature's Way) at up to three times the manufacturer recommended dose for 7 days. It is speculated that garlic inhibited hepatic cytochrome P450 3A4 (CYP3A4), which increased plasma levels of tacrolimus.
Warfarin (Coumadin)
Theoretically, garlic might increase the risk of bleeding with warfarin.
Raw garlic and a variety of garlic extracts have antiplatelet activity and can increase prothrombin time. In addition, there is a report of two patients who experienced an increase in a previously stabilized international normalized ratio (INR) with concomitant garlic and warfarin use. However, this report has been subsequently debated due to limited clinical information. Other clinical studies have not identified an effect of garlic on INR, warfarin pharmacokinetics, or bleeding risk. More evidence is needed to determine the safety of using garlic with warfarin.
Milk Thistle extract
Antidiabetes Drugs
Taking milk thistle with antidiabetes drugs may increase the risk of hypoglycemia.
Clinical research shows that milk thistle extract, alone or along with tree turmeric extract, can lower blood glucose levels and glycated hemoglobin (HbA1c) in patients with type 2 diabetes, including those already taking antidiabetes drugs. Additionally, animal research shows that milk thistle extract increases the metformin maximum plasma concentration and area under the curve and decreases the renal clearance of metformin, due to inhibition of the multi-drug and toxin extrusion protein 1 (MATE1) renal tubular transport protein.
Cytochrome P450 2B6 (Cyp2B6) Substrates
Theoretically, milk thistle might inhibit CYP2B6.
An in vitro study shows that silybin, a constituent of milk thistle, binds to and noncompetitively inhibits CYP2B6. Additionally, silybin might downregulate the expression of CYP2B6 by decreasing mRNA and protein levels.
Glucuronidated Drugs
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Laboratory research shows that milk thistle constituents inhibit uridine diphosphoglucuronosyl transferase (UGT), the major phase 2 enzyme that is responsible for glucuronidation. Theoretically, this could decrease the clearance and increase levels of glucuronidated drugs. Other laboratory research suggests that a milk thistle extract of silymarin might inhibit beta-glucuronidase, although the significance of this effect is unclear.
Ledipasvir
Theoretically, milk thistle might increase the levels and clinical effects of ledipasvir.
Animal research in rats shows that milk thistle increases the area under the curve (AUC) for ledipasvir and slows its elimination.
Morphine
Theoretically, concomitant use of milk thistle with morphine might affect serum levels of morphine and either increase or decrease its effects.
Animal research shows that milk thistle reduces serum levels of morphine by up to 66%. In contrast, laboratory research shows that milk thistle constituents inhibit uridine diphosphoglucuronosyl transferase (UGT), the major phase 2 enzyme that is responsible for glucuronidation. Theoretically, this could decrease the clearance and increase morphine levels. The effect of taking milk thistle on morphine metabolism in humans is not known.
Raloxifene (Evista)
Theoretically, milk thistle might decrease the clearance and increase levels of raloxifene.
Laboratory research suggests that the milk thistle constituents silibinin and silymarin inhibit the glucuronidation of raloxifene in the intestines.
Sirolimus (Rapamune)
Milk thistle might decrease the clearance of sirolimus.
Pharmacokinetic research shows that a milk thistle extract of silymarin decreases the apparent clearance of sirolimus in hepatically impaired renal transplant patients. It is unclear if this interaction occurs in patients without hepatic impairment.
Sofosbuvir (Solvaldi)
Theoretically, milk thistle might decrease the levels and clinical effects of sofosbuvir.
Animal research in rats shows that milk thistle reduces the metabolism of sofosbuvir, as well as the hepatic uptake of its active metabolite.
Tamoxifen (Nolvadex)
Theoretically, the milk thistle constituent silibinin might increase tamoxifen levels and interfere with its conversion to an active metabolite.
Animal research suggests that the milk thistle constituent silibinin might increase plasma levels of tamoxifen and alter its conversion to an active metabolite. The mechanism appears to involve inhibition of pre-systemic metabolism of tamoxifen by cytochrome P450 (CYP) 2C9 and CYP3A4, and inhibition of P-glycoprotein-mediated efflux of tamoxifen into the intestine for excretion. Whether this interaction occurs in humans is not known.
Warfarin (Coumadin)
Theoretically, milk thistle might increase the effects of warfarin.
In one case report, a man stabilized on warfarin experienced an increase in INR from 2.64 to 4.12 after taking a combination product containing milk thistle 200 mg daily, as well as dandelion, wild yam, niacinamide, and vitamin B12. Levels returned to normal after stopping the supplement. Although a direct correlation between milk thistle and the change in INR cannot be confirmed, some in vitro research suggests that milk thistle might inhibit cytochrome P450 2C9 (CYP2C9), an enzyme involved in the metabolism of various drugs, including warfarin.
Cytochrome P450 2C9 (Cyp2C9) Substrates
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
In vitro research suggests that milk thistle might inhibit CYP2C9. Additionally, 3 case reports from the World Health Organization (WHO) adverse drug reaction database describe increased toxicity in patients taking milk thistle and cancer medications that are CYP2C9 substrates, including imatinib and capecitabine. However, contradictory clinical research shows that milk thistle extract does not inhibit CYP2C9 or significantly affect levels of the CYP2C9 substrate tolbutamide. Differences in results could be due to differences in dosages or formulations utilized.
Cytochrome P450 3A4 (Cyp3A4) Substrates
It is unclear if milk thistle inhibits CYP3A4; research is conflicting.
While laboratory research shows conflicting results, pharmacokinetic research shows that taking milk thistle extract 420-1350 mg daily does not significantly affect the metabolism of the CYP3A4 substrates irinotecan, midazolam, or indinavir. However, 8 case reports from the World Health Organization (WHO) adverse drug reaction database describe increased toxicity in patients taking milk thistle and cancer medications that are CYP3A4 substrates, including gefitinib, sorafenib, doxorubicin, and vincristine.
Estrogens
Theoretically, milk thistle might interfere with estrogen therapy through competition for estrogen receptors.
Animal research suggests that a milk thistle extract of silymarin binds to estrogen receptor beta.
Hmg-Coa Reductase Inhibitors ("Statins")
Theoretically, milk thistle might interfere with statin therapy by decreasing the activity of organic anion transporting polypeptide 1B1 (OATB1B1) and inhibiting breast cancer resistance protein (BCRP).
Preliminary evidence suggests that a milk thistle extract of silymarin can decrease the activity of the OATP1B1, which transports HMG-CoA reductase inhibitors into the liver to their site of action, and animal research shows this increases the maximum plasma concentration of pitavastatin and pravastatin. The silibinin component also inhibits BCRP, which transports statins from the liver into the bile for excretion. However, in a preliminary study in healthy males, silymarin 140 mg three times daily had no effect on the pharmacokinetics of a single 10 mg dose of rosuvastatin.
Indinavir (Crixivan)
Theoretically, milk thistle may induce cytochrome P450 3A4 (CYP3A4) enzymes and increase the metabolism of indinavir; however, results are conflicting.
One pharmacokinetic study shows that taking milk thistle (Standardized Milk Thistle, General Nutrition Corp.) 175 mg three times daily in combination with multiple doses of indinavir 800 mg every 8 hours decreases the mean trough levels of indinavir by 25%. However, results from the same pharmacokinetic study show that milk thistle does not affect the overall exposure to indinavir. Furthermore, two other pharmacokinetic studies show that taking specific milk thistle extract (Legalon, Rottapharm Madaus; Thisilyn, Nature's Way) 160-450 mg every 8 hours in combination with multiple doses of indinavir 800 mg every 8 hours does not reduce levels of indinavir.
Organic Anion-Transporting Polypeptide Substrates (Oatp)
Milk thistle may inhibit one form of OATP, OATP-B1, which could reduce the bioavailability and clinical effects of OATP-B1 substrates.
In vitro research shows that milk thistle inhibits OATP-B1. Two case reports from the World Health Organization (WHO) adverse drug reaction database describe increased toxicity in patients taking milk thistle and cancer medications that are OATP substrates, including sorafenib and methotrexate. OATPs are expressed in the small intestine and liver and are responsible for the uptake of drugs and other compounds into the body. Inhibition of OATP may reduce the bioavailability of oral drugs that are substrates of OATP.
P-Glycoprotein Substrates
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates. However, this effect does not seem to be clinically significant.
In vitro research shows that milk thistle can inhibit P-glycoprotein activity and 1 case report from the World Health Organization (WHO) adverse drug reaction database describes increased abdominal pain in a patient taking milk thistle and the cancer medication vincristine, a P-glycoprotein substrate, though this patient was also taking methotrexate. However, a small pharmacokinetic study in healthy volunteers shows that taking milk thistle (Enzymatic Therapy Inc.) 900 mg, standardized to 80% silymarin, in 3 divided doses daily for 14 days does not affect absorption of digoxin, a P-glycoprotein substrate.
Red Clover extract
Estrogens
Theoretically, concomitant use of large amounts of red clover might interfere with estrogen therapy.
Red clover contains phytoestrogens which might have estrogenic activity in some people. Theoretically, red clover might compete for estrogen receptors and interfere with estrogen-containing drug therapy.
Methotrexate (Trexall, Others)
Theoretically, red clover might increase the risk of methotrexate toxicity.
In a case report, a 52-year-old female receiving weekly methotrexate injections for psoriasis developed symptoms of methotrexate toxicity, including severe vomiting and epigastric pain, after three days of taking red clover 430 mg daily. Toxicity resolved after red clover was discontinued. However, no liver function tests or methotrexate levels were reported.
Tamoxifen (Nolvadex)
Theoretically, the phytoestrogens in red clover might interfere with tamoxifen.
In vitro and animal research suggests that genistein, a constituent of red clover, might antagonize the antitumor effects of tamoxifen. However, there is some evidence from an animal study that red clover does not reduce the efficacy of tamoxifen. Until more is known, tell patients taking tamoxifen to avoid red clover.
Anticoagulant/Antiplatelet Drugs
Although some laboratory research suggests that red clover may have anticoagulant and antiplatelet activity, clinical research has not shown this effect.
In vitro research suggests that genistein in red clover has antiplatelet effects, and historically, red clover was thought to have anticoagulant effects due to its coumarin content. However, some experts state that this is unlikely as most natural coumarins have not been shown to have anticoagulant effects, and their content in red clover is low. Additionally, some clinical research in postmenopausal patients found no effect on coagulation or prothrombin time with the use of red clover flowering tops 378 mg daily for 12 months or red clover isoflavone (Rimostil) 50 mg daily for 2 years.
Caffeine
Theoretically, soy might reduce the clearance of caffeine; however, a small clinical study found no effect.
Red clover contains genistein. Taking genistein 1 gram daily for 14 days seems to inhibit caffeine clearance and metabolism in healthy females. However, this effect does not seem to occur with the lower amounts of genistein found in red clover. A clinical study in healthy postmenopausal individuals shows that taking red clover capsules standardized to contain 60 mg isoflavones twice daily for 14 days does not affect the pharmacokinetics of caffeine.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Theoretically, red clover might increase levels of drugs metabolized by CYP1A2; however, a small clinical study found no effect.
In vitro evidence shows that red clover inhibits CYP1A2. However, a clinical study in healthy postmenopausal individuals shows that taking red clover capsules standardized to contain 60 mg isoflavones twice daily for 14 days does not affect the pharmacokinetics of caffeine, a CYP1A2 probe substrate.
Cytochrome P450 2C19 (Cyp2C19) Substrates
Theoretically, red clover might increase the levels and clinical effects of drugs metabolized by CYP2C19.
In vitro evidence suggests that red clover weakly inhibits CYP2C19. This interaction has not been reported in humans.
Cytochrome P450 2C9 (Cyp2C9) Substrates
Theoretically, red clover might increase levels of drugs metabolized by CYP2C9; however, a small clinical study found no effect.
In vitro evidence suggests that red clover might inhibit CYP2C9. However, a clinical study in healthy postmenopausal individuals shows that taking red clover capsules standardized to contain 60 mg isoflavones twice daily for 14 days does not affect the pharmacokinetics of tolbutamide, a CYP2C9 probe substrate.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, red clover might increase levels of drugs metabolized by CYP3A4; however, a small clinical study found no effect.
In vitro evidence shows that red clover might inhibit CYP3A4 isoenzymes. However, a clinical study in healthy postmenopausal individuals shows that taking red clover capsules standardized to contain 60 mg isoflavones twice daily for 14 days does not affect the pharmacokinetics of alprazolam, a CYP3A4 probe substrate.
Red Beet extract
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, beet might increase the levels of CYP3A4 substrates.
In vitro research suggests that betanin, the major pigment in beet, competitively inhibits CYP3A4 in a dose-dependent manner similarly to strong CYP3A4 inhibitor ketoconazole.
Antihypertensive Drugs
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure. However, a study published in the European Journal of Clinical Nutrition using concentrated beetroot juice found no significant impact on blood pressure or heart rate in different age groups. Other small clinical studies suggest that while beet consumption might transiently lower blood pressure due to vessel dilation, there's no consistent evidence of a lasting effect. Overall, the theoretical risk of reduced blood pressure due to beet's nitrate content exists, but studies generally indicate a low and temporary impact rather than a sustained decrease.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
In vitro research suggests that beet induces CYP1A2 enzymes.
Echinacea purpurea extract
Caffeine
Echinacea can increase plasma levels of caffeine by inhibiting its metabolism.
Echinacea seems to increase plasma concentrations of caffeine by around 30%. This is likely due to inhibition of cytochrome P450 1A2 (CYP1A2) by echinacea.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Echinacea might inhibit the metabolism of CYP1A2 and increase plasma levels of some drugs.
Echinacea appears to inhibit CYP1A2 enzymes in humans. Additionally, echinacea seems to increase plasma concentrations of caffeine, a CYP1A2 substrate, by around 30%. Theoretically, echinacea might increase levels of other drugs metabolized by CYP1A2.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Echinacea may induce hepatic CYP3A4 and inhibit intestinal CYP3A4. This may increase or decrease levels of drugs metabolized by CYP3A4.
Several clinical trials have shown that taking echinacea for up to one month does not significantly affect the metabolism of various CYP3A4 substrates, including midazolam, docetaxel, etravirine, lopinavir-ritonavir, and darunavir-ritonavir. However, other clinical research shows that echinacea may increase the clearance of midazolam, suggesting that echinacea might induce CYP3A4. The discrepancy is thought to be due to differing effects of echinacea on intestinal versus hepatic CYP3A4 enzymes. Echinacea appears to induce hepatic CYP3A4 but inhibit intestinal CYP3A4. In some cases, these effects might cancel each other out, but in others, drug levels may be increased or decreased depending on the level of effect at hepatic and intestinal sites. The effect of echinacea on CYP3A4 activity may differ depending on the CYP3A4 substrate.
Etoposide (Vepesid)
Echinacea may increase levels of etoposide.
In one report, concomitant use of etoposide and echinacea was associated with more severe thrombocytopenia than the use of etoposide alone, suggesting inhibition of etoposide metabolism. Etoposide is a cytochrome P450 3A4 (CYP3A4) substrate. Echinacea has variable effects on CYP3A4, but some studies have reported inhibition of the enzyme.
Immunosuppressants
Echinacea has immunostimulant activity which may interfere with immunosuppressant therapy.
Theoretically, echinacea may interfere with immunosuppressant therapy because of its immunostimulant activity.
Darunavir (Prezista)
Theoretically, echinacea may interfere with the metabolism of darunavir; however, a small clinical study found no effect.
Darunavir is metabolized by cytochrome P450 3A4 (CYP3A4) and is administered with the CYP3A4 inhibitor ritonavir to increase its plasma concentrations. Echinacea has variable effects on CYP3A4, but administration of an E. purpurea root extract (Arkocapsulas Echinacea, Arkopharma) 500 mg four times daily for 14 days did not affect darunavir/ritonavir pharmacokinetics in 15 HIV-infected patients.
Dayquil Severe
Echinacea is reported to have varying effects on a number of Cytochrome P450 metabolizing enzymes in the liver, including CYP1A2 and CYP3A4, which play a role in acetaminophen and dextromethorphan metabolism (both contained in DayQuil Severe), respectively. Studies have reported both enzyme inhibition and induction, making it difficult to predict clinically significant drug interactions with reliability. Specific drug interaction studies reporting definitive results are rare, and potential drug interactions involving echinacea should likely be taken on a case-by-case basis. Based on what we know about how acetaminophen and dextromethorphan are metabolized, the risk of a clinically significant interaction between echinacea and DayQuil Severe is low.
Docetaxel (Taxotere)
Theoretically, echinacea may interfere with the metabolism of docetaxel; however, a small clinical study found no effect.
Docetaxel is metabolized by cytochrome P450 3A4 (CYP3A4). Echinacea has variable effects on CYP3A4, but taking E. purpurea whole plant extract (Echinaforce, A. Vogel Biopharma AG) 20 drops three times daily for 2 weeks did not alter the pharmacokinetics of docetaxel in one clinical study.
Etravirine (Intelence)
Theoretically, echinacea may interfere with the metabolism of etravirine; however, a small clinical study found no effect.
Etravirine is metabolized by cytochrome P450 3A4 (CYP3A4). Echinacea has variable effects on CYP3A4, but taking E. purpurea root extract (Arkocapsulas Echinacea, Arkopharma) 500 mg three times daily for 14 days did not alter the pharmacokinetics of etravirine in HIV-infected patients.
Lopinavir/Ritonavir (Kaletra)
Theoretically, echinacea may interfere with the metabolism of lopinavir; however, a small clinical study found no effect.
Lopinavir is metabolized by cytochrome P450 3A4 (CYP3A4) and is administered with the CYP3A4 inhibitor ritonavir to increase its plasma concentrations. Echinacea has variable effects on CYP3A4, but taking E. purpurea (Echinamide, Natural Factors Nutritional Products, Inc.) 500 mg three times daily for 14 days did not alter the pharmacokinetics of lopinavir/ritonavir in healthy volunteers.
Midazolam (Versed)
Theoretically, echinacea may increase the metabolism of intravenous midazolam.
Echinacea induces hepatic CYP3A4 and might decrease plasma levels of midazolam by about 20%, reducing the effectiveness of intravenous midazolam. Echinacea also appears to inhibit intestinal CYP3A4, which could theoretically increase the bioavailability of oral midazolam. This may cancel out the decrease in availability caused by induction of hepatic CYP3A4, such that overall plasma levels after oral administration of midazolam are not affected by echinacea.
Warfarin (Coumadin)
Echinacea seems to increase the clearance of warfarin, although the effect may not be clinically significant.
Preliminary clinical research in healthy male volunteers suggests that taking echinacea increases the clearance of the active S-isomer of warfarin after a single dose of warfarin, but there was not a clinically significant effect on the INR.
Uva Ursi extract
Cytochrome P450 2C19 (Cyp2C19) Substrates
Theoretically, uva ursi may decrease the metabolism of CYP2C19 substrates.
In vitro, uva ursi appears to inhibit cytochrome CYP2C19. This effect has not been reported in humans.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, uva ursi may decrease the metabolism of CYP3A4 substrates.
In vitro, uva ursi appears to inhibit CYP3A4. This effect has not been reported in humans.
Glucuronidated Drugs
Theoretically, uva ursi may increase levels of drugs metabolized by glucuronidation.
In vitro, uva ursi extract appears to strongly inhibit UDP-glucuronosyltransferase (UGT) 1A1 (UGT1A1). However, uva ursi extract does not appear to inhibit UGT1A1 in animal models. This effect has not been reported in humans.
Lithium
Theoretically, uva ursi may increase lithium levels, necessitating a decrease in dose.
Uva ursi may have diuretic properties. Diuretics may increase lithium reabsorption with sodium in the proximal tubule of the kidney. Theoretically, uva ursi might reduce excretion and increase levels of lithium.
Urinary Acidifying Agents
Effects of uva ursi in the urinary tract may be reduced by urinary acidifying agents.
Uva ursi seems to work best in alkaline urine. Theoretically, taking uva ursi with medications known to acidify the urine may decrease any effects of uva ursi on the urinary tract.
P-Glycoprotein Substrates
Theoretically, uva ursi may alter the levels of drugs transported by P-glycoprotein.
In vitro, uva ursi appears to inhibit the multi-drug transporter protein, P-glycoprotein. This effect has not been reported in humans.
Cascara Sagrada extract
Corticosteroids
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with corticosteroids.
Cascara sagrada has stimulant laxative effects, and long-term use has been associated with hypokalemia.
Digoxin (Lanoxin)
Theoretically, cascara sagrada might cause hypokalemia, potentially increasing the risk of digoxin toxicity.
Cascara sagrada has stimulant laxative effects, and long-term use has been associated with hypokalemia.
Diuretic Drugs
Theoretically, cascara sagrada might increase the risk of hypokalemia when taken with diuretic drugs.
Cascara sagrada has stimulant laxative effects, and long-term use has been associated with hypokalemia.
Stimulant Laxatives
Theoretically, cascara sagrada might have additive adverse effects when taken with stimulant laxatives.
Cascara sagrada has stimulant laxative effects and might compound fluid and electrolyte losses when taken with stimulant laxatives.
Warfarin (Coumadin)
Theoretically, cascara sagrada might increase the risk of bleeding when taken with warfarin.
Cascara sagrada has stimulant laxative effects. In some people, cascara sagrada can cause diarrhea. Diarrhea can increase the effects of warfarin, increase international normalized ratio (INR), and increase the risk of bleeding.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, cascara sagrada might decrease the effects of CYP3A4 substrates.
In vitro research suggests that cascara sagrada can induce CYP3A4 enzymes, albeit to a much lower degree than rifampin, a known CYP3A4 inducer.
Gotu Kola extract
Cns Depressants
Theoretically, taking gotu kola might increase the sedative effects of CNS depressants.
In vitro research suggests that gotu kola may have sedative effects via binding of GABA receptors.
Hepatotoxic Drugs
Theoretically, taking gotu kola with hepatotoxic drugs might have additive adverse effects.
There are at least four case reports of hepatotoxicity associated with the use of gotu kola. However, more information is needed to determine if gotu kola was the causative factor in these cases.
Dandelion extract
Anticoagulant/Antiplatelet Drugs
Theoretically, taking dandelion root along with anticoagulant or antiplatelet drugs might increase the risk of bruising and bleeding.
In vitro research suggests that dandelion root inhibits platelet aggregation.
Antidiabetes Drugs
Theoretically, dandelion might increase the risk for hypoglycemia when used with antidiabetes drugs.
Laboratory research suggests that dandelion extract may have moderate alpha-glucosidase inhibitor activity and might also increase insulin secretion. Also, in a case report, a 58-year-old woman with type 2 diabetes who was being treated with insulin developed hypoglycemia 2 weeks after beginning to eat salads containing dandelion.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Theoretically, dandelion might increase levels of drugs metabolized by CYP1A2.
Laboratory research suggests that dandelion might inhibit CYP1A2. So far, this interaction has not been reported in humans. However, until more is known, watch for an increase in the levels of drugs metabolized by CYP1A2 in patients taking dandelion.
Glucuronidated Drugs
Theoretically, dandelion might increase the clearance of drugs that are UDP-glucuronosyltransferase substrates.
There is some preliminary evidence that dandelion might induce UDP-glucuronosyltransferase, a phase II enzyme.
Lithium
Theoretically, through diuretic effects, dandelion might reduce excretion and increase levels of lithium.
Animal research suggests that dandelion has diuretic properties. As diuretics can increase serum lithium levels, the dose of lithium might need to be decreased when taken with dandelion.
Potassium-Sparing Diuretics
Theoretically, dandelion might increase the risk of hyperkalemia when taken with potassium-sparing diuretics.
Dandelion contains significant amounts of potassium.
Quinolone Antibiotics
Theoretically, dandelion might lower fluoroquinolone levels.
Animal research shows that dandelion reduces absorption of ciprofloxacin and can lower levels by 73%. However, this effect has not been reported in humans.
Cayenne extract
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%.
Burdock extract
Anticoagulant/Antiplatelet Drugs
Theoretically, taking burdock with anticoagulant or antiplatelet drugs might increase the risk of bleeding.
In vitro research shows that lignans from burdock reduce rabbit platelet aggregation by inhibiting platelet activating factor. This interaction has not been reported in humans.
Butternut extract
Corticosteroids
Butternut has stimulant laxative effects. Theoretically, concomitant use of corticosteroids with butternut can increase the risk of potassium depletion.
Digoxin (Lanoxin)
Butternut has stimulant laxative effects. Theoretically, potassium depletion associated with butternut might increase the risk of digoxin toxicity.
Diuretic Drugs
Butternut has stimulant laxative effects. Theoretically, overuse of butternut might compound diuretic-induced potassium loss. There is some concern that people receiving butternut along with potassium-depleting diuretics might be at an increased risk for hypokalemia.
Some diuretics that can deplete potassium include chlorothiazide (Diuril), chlorthalidone (Thalitone), furosemide (Lasix), hydrochlorothiazide (HCTZ, Hydrodiuril, Microzide), and others.
Stimulant Laxatives
Butternut has stimulant laxative effects. Concomitant use with stimulant laxative medications might compound fluid and electrolyte loss.
Warfarin (Coumadin)
Butternut has stimulant laxative effects. In some people butternut can cause diarrhea. Diarrhea can increase the effects of warfarin, increase international normalized ratio (INR), and increase the risk of bleeding. Advise patients who take warfarin not to take excessive amounts of butternut.
Yellow Dock extract
Digoxin (Lanoxin)
Theoretically, yellow dock might increase the risk of digoxin toxicity when used long-term or in large amount.
When yellow dock is used chronically or in large amounts, hypokalemia may occur. This might increase the toxic effects of digoxin.
Diuretic Drugs
Theoretically, yellow dock might increase the risk of hypokalemia when taken with diuretics.
When yellow dock is used chronically or in large amounts, hypokalemia may occur, and overuse of yellow dock might compound diuretic-induced potassium loss.
Warfarin (Coumadin)
Theoretically, the laxative effects of yellow dock might increase the effects of warfarin, including the risk of bleeding.
The anthraquinones in yellow dock have a mild stimulant laxative effect. Consuming excessive amounts can cause diarrhea. Diarrhea can increase the effects of warfarin, increase international normalized ratio (INR), and increase the risk of bleeding.
Blessed Thistle extract
Antacids
Theoretically, blessed thistle might decrease the effectiveness of antacids.
There are reports that blessed thistle increases stomach acid.
H2-Blockers
Theoretically, blessed thistle might decrease the effectiveness of H2-blockers.
There are reports that blessed thistle increases stomach acid.
Proton Pump Inhibitors (Ppis)
Theoretically, blessed thistle might decrease the effectiveness of PPIs.
There are reports that blessed thistle increases stomach acid.
Brand information
Manufacturer and brand details for DTX-A, from the product label.
Nutri-West
See all Nutri-West products- Name
- Nutri-West
- Street Address
- P.O. Box 950
- City
- Douglas
- State
- WY
- ZipCode
- 82633
DTX-A by Nutri-West: Common Questions
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Written and reviewed by the HelloPharmacist editorial staff. Our editorial policy
Not sure if DTX-A is safe with your meds?
Our pharmacists answer your medication & supplement questions — free.
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 DTX-A’s Ingredients
Every ingredient we hold a full HelloPharmacist monograph for — uses, evidence, safety, and the complete interaction list.
Milk Thistle
Interacts with 954 drugsMilk thistle is a popular herbal supplement most often used for liver health, and its main active component is a group of compounds called silymarin. While it is generally well tolerated, th...
Read the full Milk Thistle monograph → Herb & supplement monographGotu Kola
Interacts with 579 drugsGotu kola is a traditional Ayurvedic and Asian herb that people use for wound healing, circulation, skin problems, and as a calming or memory-supporting herb. Some early studies suggest poss...
Read the full Gotu Kola monograph → Herb & supplement monographCascara Sagrada
Interacts with 745 drugsCascara sagrada is a stimulant laxative made from the aged bark of a Pacific Northwest tree, used mainly for short-term relief of constipation. Because it can cause cramping, dehydration, an...
Read the full Cascara Sagrada monograph → Herb & supplement monographDandelion
Interacts with 457 drugsDandelion is a common plant used in food and traditional medicine, often promoted as a natural 'water pill' and digestive aid. Human evidence for these uses is very limited, so its benefits...
Read the full Dandelion monograph → Herb & supplement monographGarlic
Interacts with 989 drugsGarlic is a common food and supplement that may modestly help with blood pressure and cholesterol, though the evidence is mixed and effects are usually small. It is generally safe in food am...
Read the full Garlic 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 → Herb & supplement monographBurdock
Interacts with 122 drugsBurdock is a traditional herb most often used for skin problems and as a so-called 'blood purifier,' but high-quality human studies are lacking and most claims are not well proven. It is wid...
Read the full Burdock monograph → Herb & supplement monographRed Clover
Interacts with 867 drugsRed clover is a plant rich in isoflavones (plant compounds with weak estrogen-like activity) that is most often used for menopause symptoms like hot flashes. The evidence is mixed and genera...
Read the full Red Clover monograph → Herb & supplement monographWild Indigo
Wild Indigo (Baptisia tinctoria) is a traditional herb most often used in combination products for colds and immune support, but high-quality human evidence is very limited. It can be toxic...
Read the full Wild Indigo monograph → Herb & supplement monographYellow Dock
Interacts with 78 drugsYellow dock is a traditional herb used mostly as a mild laxative and a digestive and skin tonic. Good-quality human studies are lacking, so its benefits are largely unproven, and its natural...
Read the full Yellow Dock monograph → Herb & supplement monographButternut
Interacts with 122 drugsButternut (Juglans cinerea) is a North American tree whose inner bark was traditionally used as a mild laxative and folk remedy. Modern scientific evidence supporting any of its uses is very...
Read the full Butternut monograph → Herb & supplement monographEchinacea
Interacts with 816 drugsEchinacea is a popular herb taken to help prevent or shorten the common cold, but study results are mixed and the overall benefit appears small at best. It is generally well tolerated for sh...
Read the full Echinacea monograph → Herb & supplement monographBeet
Interacts with 861 drugsBeet, especially beetroot juice, is a nitrate-rich food that may modestly lower blood pressure and slightly improve exercise performance in some people. It is generally safe as a food, but s...
Read the full Beet monograph → Herb & supplement monographUva Ursi
Interacts with 803 drugsUva ursi is a traditional herb used mainly for urinary tract infections, and its leaves contain a compound called arbutin that may have antimicrobial effects in the urine. Evidence in people...
Read the full Uva Ursi monograph → Herb & supplement monographBlessed Thistle
Interacts with 36 drugsBlessed thistle is a bitter herb traditionally used to stimulate appetite and ease mild digestive complaints. High-quality human studies are lacking, so its benefits are not well proven. It...
Read the full Blessed Thistle monograph →Sources & How We Checked
DTX-A'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 490 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.
Milk Thistle 69 references
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- Anon. Milk thistle: Effects on liver disease and cirrhosis and clinical adverse effects. Summary, Evidence Report/Technology Assessment: Number 21, September 2000. Agency for Healthcare Research and Quality, Rockville, MD. Available at: http://www.ahrq.g
- Beckmann-Knopp S, Rietbrock S, Weyhenmeyer R, et al. Inhibitory effects of silibinin on cytochrome P-450 enzymes in human liver microsomes. Pharmacol Toxicol 2000;86:250-6. PubMed
- Venkataramanan R, Ramachandran V, Komoroski BJ, et al. Milk thistle, a herbal supplement, decreases the activity of CYP3A4 and uridine diphosphoglucuronosyl transferase in human hepatocyte cultures. Drug Metab Dispos 2000;28:1270-3. DOI
- Kim DH, Jin YH, Park JB, Kobashi K. Silymarin and its components are inhibitors of beta-glucuronidase. Biol Pharm Bull 1994;17:443-5. PubMed
- Pares A, Planas R, Torres M, et al. Effects of silymarin in alcoholic patients with cirrhosis of the liver: results of a controlled, double-blind, randomized and multicenter trial. J Hepatol 1998;28:615-21. PubMed
- Piscitelli SC, Formentini E, Burstein AH, et al. Effect of milk thistle on the pharmacokinetics of indinavir in healthy volunteers. Pharmacotherapy 2002;22:551-6. PubMed
- Boerth J, Strong KM. The clinical utility of milk thistle (Silybum marianum) in cirrhosis of the liver. J Herb Pharmacother 2002;2:11-7.
- Tanamly MD, Tadros F, Labeeb S, et al. Randomised double-blinded trial evaluating silymarin for chronic hepatitis C in an Egyptian village: study description and 12-month results. Dig Liver Dis 2004;36:752-9. PubMed
- Gurley BJ, Gardner SF, Hubbard MA, et al. In vivo assessment of botanical supplementation on human cytochrome P450 phenotypes: Citrus aurantium, Echinacea purpurea, milk thistle, and saw palmetto. Clin Pharmacol Ther 2004;76:428-40. .
- Huseini HF, Larijani B, Heshmat R, et al. The efficacy of Silybum marianum (L.) Gaertn. (silymarin) in the treatment of type II diabetes: a randomized, double-blind, placebo-controlled, clinical trial. Phytother Res 2006;20;1036-9.
- Deng JW, Shon JH, Shin HJ, et al. Effect of silymarin supplement on the pharmacokinetics of rosuvastatin. Pharm Res 2008;25:1807-14. PubMed
- Kim CS, Choi SJ, Park CY, et al. Effects of silybinin on the pharmacokinetics of tamoxifen and its active metabolite, 4-hydroxytamoxifen in rats. Anticancer Res 2010;30:79-85.
- Sridar C, Goosen TC, Kent UM, et al. Silybin inactivates cytochromes P450 3A4 and 2C9 and inhibits major hepatic glucuronosyltransferases. Drug Metab Dispos 2004;32:587-94. PubMed
- van Erp NP, Baker SD, Zhao M, et al. Effect of milk thistle (Silybum marianum) on the pharmacokinetics of irinotecan. Clin Cancer Res 2005;11:7800-6.
- Budzinski JW, Trudeau VL, Drouin CE, et al. Modulation of human cytochrome P450 3A4 (CYP3A4) and P-glycoprotein (P-gp) in Caco-2 cell monolayers by selected commercial-source milk thistle and goldenseal products. Can J Physiol Pharmacol 2007;85:966-78.
- Doehmer J, Weiss G, McGregor GP, Appel K. Assessment of a dry extract from milk thistle (Silybum marianum) for interference with human liver cytochrome-P450 activities. Toxicol In Vitro 2011;25:21-7. PubMed
- Jiao Z, Shi XJ, Li ZD, et al. Population pharmacokinetics of sirolimus in de novo Chinese adult renal transplant patients. Br.J.Clin.Pharmacol. 2009;68(1):47-60.
- Gurley, B. J., Barone, G. W., Williams, D. K., Carrier, J., Breen, P., Yates, C. R., Song, P. F., Hubbard, M. A., Tong, Y., and Cheboyina, S. Effect of milk thistle (Silybum marianum) and black cohosh (Cimicifuga racemosa) supplementation on digoxin phar
- Allain, H., Schuck, S., Lebreton, S., Strenge-Hesse, A., Braun, W., Gandon, J. M., and Brissot, P. Aminotransferase levels and silymarin in de novo tacrine-treated patients with Alzheimer's disease. Dement.Geriatr.Cogn Disord. 1999;10(3):181-185. PubMed
- Angulo, P., Patel, T., Jorgensen, R. A., Therneau, T. M., and Lindor, K. D. Silymarin in the treatment of patients with primary biliary cirrhosis with a suboptimal response to ursodeoxycholic acid. Hepatology 2000;32(5):897-900. PubMed
- Bean, P. The use of alternative medicine in the treatment of hepatitis C. Am.Clin.Lab 2002;21(4):19-21.
- Hussain, S. A. Silymarin as an adjunct to glibenclamide therapy improves long-term and postprandial glycemic control and body mass index in type 2 diabetes. J.Med.Food 2007;10(3):543-547. PubMed
- El-Kamary, S. S., Shardell, M. D., Abdel-Hamid, M., Ismail, S., El-Ateek, M., Metwally, M., Mikhail, N., Hashem, M., Mousa, A., Aboul-Fotouh, A., El-Kassas, M., Esmat, G., and Strickland, G. T. A randomized controlled trial to assess the safety and effic
- Gharagozloo, M., Moayedi, B., Zakerinia, M., Hamidi, M., Karimi, M., Maracy, M., and Amirghofran, Z. Combined therapy of silymarin and desferrioxamine in patients with beta-thalassemia major: a randomized double-blind clinical trial. Fundam.Clin.Pharmaco
- Ladas, E. J., Kroll, D. J., Oberlies, N. H., Cheng, B., Ndao, D. H., Rheingold, S. R., and Kelly, K. M. A randomized, controlled, double-blind, pilot study of milk thistle for the treatment of hepatotoxicity in childhood acute lymphoblastic leukemia (ALL PubMed
- Sayyah, M., Boostani, H., Pakseresht, S., and Malayeri, A. Comparison of Silybum marianum (L.) Gaertn. with fluoxetine in the treatment of Obsessive-Compulsive Disorder. Prog.Neuropsychopharmacol.Biol.Psychiatry 3-17-2010;34(2):362-365. PubMed
- Flaig, T. W., Glode, M., Gustafson, D., van, Bokhoven A., Tao, Y., Wilson, S., Su, L. J., Li, Y., Harrison, G., Agarwal, R., Crawford, E. D., Lucia, M. S., and Pollak, M. A study of high-dose oral silybin-phytosome followed by prostatectomy in patients w
- Ramirez-Santos, A., Perez-Bustillo, A., Gonzalez-Sixto, B., Suarez-Amor, O., and Rodriguez-Prieto, M. A. [Acute generalized exanthematous pustulosis due to milk thistle (Silybum marianum) tea]. Actas Dermosifiliogr. 2011;102(9):744-745. DOI
- Loguercio C, Andreone P, Brisc C, et al. Silybin combined with phosphatidylcholine and vitamin E in patients with nonalcoholic fatty liver disease: a randomized controlled trial. Free Radic Biol Med 2012;52(9):1658-65. PubMed
- Yakoot, M. and Salem, A. Spirulina platensis versus silymarin in the treatment of chronic hepatitis C virus infection. A pilot randomized, comparative clinical trial. BMC.Gastroenterol. 2012;12:32. PubMed
- Fallahzadeh, M. K., Dormanesh, B., Sagheb, M. M., Roozbeh, J., Vessal, G., Pakfetrat, M., Daneshbod, Y., Kamali-Sarvestani, E., and Lankarani, K. B. Effect of addition of silymarin to renin-angiotensin system inhibitors on proteinuria in type 2 diabetic
- Fried, M. W., Navarro, V. J., Afdhal, N., Belle, S. H., Wahed, A. S., Hawke, R. L., Doo, E., Meyers, C. M., and Reddy, K. R. Effect of silymarin (milk thistle) on liver disease in patients with chronic hepatitis C unsuccessfully treated with interferon t
- Fallah Huseini, H., Larijani, B., Fakhrzadeh, H., Rajabi Pour, B., Akhondzadeh, S., Toliat, T., and Heshmat, R. The clinical trial of Silybum Marianum seed extract (Silymarin) on type II diabetic patients with hyperlipidemia. Iran J.Diabetes Lipid Disord
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- Velussi M, Cernigoi AM, Viezzoli L, and et al. Silymarin reduces hyperinsulinemia, malondialdehyde levels, and daily insulin need in cirrhotic diabetic patients. Curr Ther Res 1993;53(5):533-545. DOI
- Marcelli R, Bizzoni P, Conte D, and et al. Randomized controlled study of the efficacy and tolerability of a short course of IdB 1016 in the treatment of chronic persistent hepatitis. Eur Bull Drug Res 1992;1(3):131-135.
- Vailati A, Aristia L, Sozze E, and et al. Randomized open study of the dose-effect relationship of a short course of IdB 1016 in patients with viral or alcoholic hepatitis. Fitoterapia 1993;64(3):219-228.
- Marena C and Lampertico M. Preliminary clinical development of silipide: a new complex of silybin in toxic liver disorders. Planta Med 1991;57(2):A124-A125. DOI
- Grungreiff K, Albrecht M, and Strenge-Hesse A. Benefit of medicinal liver therapy in general practice. Med Welt 1995;46:222-227.
- Frerick F, Kuhn U, and Strenge-Hesse A. Silymarin--ein Phytopharmakon zur Behandlung toxischen Leberschaden: Anwendungsbeobachtung bei 2169 Patienten. Kassenarzt 1990;33:36-41.
- Schuppan D, Strosser W, Burkard G, and et al. Influence of Legalon(TM) 140 on the metabolism of collagen in patients with chronic liver disease--Review by measurement of PIIINP-values. Zeitschrift fur Allgemeinmedizin 1998;74:577-584.
- Studlar M. Die Behandlung chronischer Leberkrankungen mit Silymarin und B-Vitaminen. Therapiewoche 1985;35:3375-3378.
- Anon. Adverse reaction: milk thistle-associated toxicity. Nurse Drug Alert 1999;23(7):51.
- Gufford BT, Chen G, Vergara AG, et al. Milk Thistle Constituents Inhibit Raloxifene Intestinal Glucuronidation: A Potential Clinically Relevant Natural Product-Drug Interaction. Drug Metab Dispos. 2015;43(9):1353-9. PubMed
- El-Shitany NA, Hegazy S, El-Desoky K. Evidences for antiosteoporotic and selective estrogen receptor modulator activity of silymarin compared with ethinylestradiol in ovariectomized rats. Phytomedicine. 2010;17(2):116-25. PubMed
- Seidlová-Wuttke D, Becker T, Christoffel V, Jarry H, Wuttke W. Silymarin is a selective estrogen receptor beta (ERbeta) agonist and has estrogenic effects in the metaphysis of the femur but no or antiestrogenic effects in the uterus of ovariectomized (ovx
- Jalloh MA, Gregory PJ, Hein D, et al. Dietary supplement interactions with antiretrovirals: a systematic review. Int J STD AIDS. 2017 Jan;28(1):4-15. PubMed
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- Luangchosiri C, Thakkinstian A, Chitphuk S, Stitchantrakul W, Petraksa S, Sobhonslidsuk A. A double-blinded randomized controlled trial of silymarin for the prevention of antituberculosis drug-induced liver injury. BMC Complement Altern Med. 2015;15:334. PubMed
- Kawaguchi-Suzuki M, Frye RF, Zhu HJ, et al. The effects of milk thistle (Silybum marianum) on human cytochrome P450 activity. Drug Metab Dispos. 2014;42(10):1611-6. PubMed
- Rastegarpanah M, Malekzadeh R, Vahedi H, et al. A randomized, double blinded, placebo-controlled clinical trial of silymarin in ulcerative colitis. Chin J Integr Med. 2015;21(12):902-6. PubMed
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- Ebrahimpour-Koujan S, Gargari BP, Mobasseri M, Valizadeh H, Asghari-Jafarabadi M. Lower glycemic indices and lipid profile among type 2 diabetes mellitus patients who received novel dose of Silybum marianum (L.) Gaertn. (silymarin) extract supplement: A T
- Lash DB, Ward S. CYP2C9-mediated warfarin and milk thistle interaction. J Clin Pharm Ther. 2019. PubMed
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- Soleymani S, Ayati MH, Mansourzadeh MJ, Namazi N, Zargaran A. The effects of Silymarin on the features of cardiometabolic syndrome in adults: A systematic review and meta-analysis. Phytother Res. 2022 Jan 11. doi: 10.1002/ptr.7364. PubMed
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- Aboras SI, Korany MA, El-Yazbi AF, Ragab MAA, Abdine HH. In-depth investigation of the Silymarin effect on the pharmacokinetic parameters of sofosbuvir, GS-331007 and ledipasvir in rat plasma using LC-MS. Biomed Chromatogr 2022;36(9):e5427. PubMed
- Wattanakrai P, Nimmannitya K. A Randomized, Double-Blind, Split-Face Study of Topical Silymarin vs 2% Hydroquinone Cream in Melasmas. J Drugs Dermatol 2022;21(12):1304-1310. PubMed
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- Bechtold BJ, Lynch KD, Oyanna VO, et al. Rifampin- and Silymarin-Mediated Pharmacokinetic Interactions of Exogenous and Endogenous Substrates in a Transgenic OATP1B Mouse Model. Mol Pharm 2024;21(5):2284-2297. PubMed
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- Rustamzadeh A, Sadigh N, Vahabi Z, et al. Effects silymarin and rosuvastatin on amyloid-carriers level in dyslipidemic Alzheimer's patients: A double-blind placebo-controlled randomized clinical trial. IBRO Neurosci Rep 2024;17:108-121. PubMed
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Gotu Kola 18 references
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Cascara Sagrada 9 references
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- Nakasone ES, Tokeshi J. A serendipitous find: a case of cholangiocarcinoma identified incidentally after acute liver injury due to cascara sagrada ingestion. Hawaii J Med Public Health 2015;74(6):200-2.
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- Mazzari ALDA, Lacerda MG, Milton FA, et al. In vitro effects of European and Latin-American medicinal plants in CYP3A4 gene expression, glutathione levels, and P-glycoprotein activity. Front Pharmacol 2022;13:826395. PubMed
Dandelion 27 references
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DISCLAIMER: Currently this does not check for drug-drug interactions. This is not an all-inclusive comprehensive list of potential interactions and is for informational purposes only. Not all interactions are known or well-reported in the scientific literature, and new interactions are continually being reported. Input is needed from a qualified healthcare provider including a pharmacist before starting any therapy. Application of clinical judgment is necessary.
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