D-Stunner Grape Ingredients & Drug Interactions
What is this page for?
First and foremost: checking D-Stunner Grape 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
D-Stunner Grape is a dietary supplement by Betancourt Nutrition with 15 active ingredients. Its ingredients are commonly taken for treating or preventing b12 deficiency, pernicious anemia, low energy and fatigue.Based on those ingredients, 1,392 medications have a known interaction with it, the most serious rated major. The ingredients most likely to interact are Quercetin, Caffeine, Tyramine. Use the checker below to test your specific medication, or read the full HelloPharmacist Interaction Report.
Check Your Meds Against D-Stunner Grape by Betancourt Nutrition
Ask about any prescription or over-the-counter medication and we check it for interactions with D-Stunner Grape by Betancourt Nutrition — 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 D-Stunner Grape by Betancourt Nutrition
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
D-Stunner Grape contains 16 ingredients. The active components include citric acid and malic acid (acids that affect mouth dryness and other functions), vitamin B12 (essential for energy and nerve function), creatine monohydrate (supports muscle strength and athletic performance), caffeine and hordenine HCl (stimulants), tyramine (a naturally occurring compound with stimulant effects), quercetin (a plant compound), and beta-phenylethylamine and related compounds (phenethylamines that may affect mood and energy).
The product also contains several inactive ingredients such as maltodextrin, natural and artificial flavoring, sucralose, and colorants.
Does it work?
Strong evidence
Evidence for effectiveness is mixed and often limited. Vitamin B12 is effective for B12 deficiency and Imerslund-Grasbeck disease, and likely effective for cyanide poisoning.
Creatine monohydrate is possibly effective for muscle strength and athletic performance, though possibly ineffective for Huntington disease. Caffeine is effective for neonatal apnea and postoperative headache, and likely effective for mental alertness and athletic performance.
The data we hold shows insufficient evidence to rate citric acid, malic acid, hordenine HCl, tyramine, beta-phenylethylamine variants, and quercetin for athletic performance or the other conditions listed. The remaining ingredients either have no effectiveness data on file or are blends containing component ingredients already listed.
How safe is it?
Well-documented data
Most ingredients in this product are generally well tolerated at typical doses. Vitamin B12 is safe at recommended amounts during pregnancy and breastfeeding.
Citric acid is generally recognized as safe in small food amounts, though you should check with your doctor before using concentrated citrate supplements. Creatine monohydrate is well tolerated in healthy adults but should be avoided during pregnancy and breastfeeding because safety has not been established.
Beta-alanine (CarnoSyn) commonly causes harmless tingling and skin flushing and should be avoided in pregnancy and breastfeeding. Caffeine in moderate amounts is generally safe but high doses can cause serious side effects; high amounts in pregnancy may carry risks, so ask your doctor about safe limits.
Hordenine, tyramine, and B-methyl-phenylethylamine have very limited human safety data and should be avoided during pregnancy and breastfeeding. Quercetin is generally well tolerated at typical amounts, but avoid supplemental doses during pregnancy and breastfeeding due to insufficient safety data.
Malic acid appears well tolerated in food amounts, though supplement safety is not well studied.
Meds to double-check
Major interaction found
Before taking D-Stunner Grape, check with your doctor or pharmacist if you take ephedrine or other stimulant drugs, monoamine oxidase inhibitors (MAOIs), antihypertensive (blood pressure) drugs, blood thinners like warfarin, seizure medications (phenobarbital or carbamazepine), serotonergic antidepressants, clozapine, metformin, or any of the other drug types listed in the interaction details below. Caffeine, hordenine, tyramine, and phenethylamines all carry documented interactions with multiple medication classes.
The bottom line
Scorecard at a glanceFormula with limited ingredient disclosure with clinical evidence supporting its stated purpose. Major medication interactions have been identified, and safety information is well characterized.
D-Stunner Grape is a pre-workout supplement that combines stimulants, acids, and performance-supporting compounds. The biggest concern is its caffeine and hordenine content alongside tyramine — if you take any blood pressure medication, an MAOI, or any stimulant drug, you need to check with your own doctor or pharmacist before using this product.
Avoid during pregnancy and breastfeeding, as several ingredients lack safety data or are advised against in these periods. Use the medication checker on this page to confirm your exact medications before you start.
Educational only — not medical advice; always confirm with your pharmacist. Our editorial policy · How we use AI
Assessment coverage: 10 of 16 active ingredients matched to our full ingredient reviews (monographs). Based on the product label dated Feb 26, 2014.
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 D-Stunner Grape, straight from the product label.
| Brand | Betancourt Nutrition |
|---|---|
| Barcode (UPC) | 857487003761 |
| Net contents | 9.2 oz.; 260.4 Gram(s) |
| Market status | On market |
| Date entered into DSLD | Feb 26, 2014 |
| DSLD ID | 30872 |
| Product type | Other Combinations |
| Supplement form | Powder |
| Dietary claims / uses | All Other, Structure/Function |
| 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 D-Stunner Grape by Betancourt Nutrition, sourced from the NIH Dietary Supplement Label Database.
Supplement Facts
| Ingredient | Amount | % DV |
|---|---|---|
| Calories | 10 {Calories} | 1% |
| Sugar | 0 Gram(s) | -- |
| Calories from Fat | 0 {Calories} | -- |
| Citric Acid | 0 NP | -- |
| Vitamin B12 | 150 mg | 2500% |
| Creatine Monohydrate | 0 NP | -- |
| Carbohydrates | 1 Gram(s) | 1% |
| Malic Acid | 0 NP | -- |
| CarnoSyn | 0 NP | -- |
| Caffeine | 0 NP | -- |
| Hordenine HCl | 0 NP | -- |
| Tyramine | 0 NP | -- |
| Beta-Phenylethylamine HCl | 0 NP | -- |
| D-Stunner Performance Blend | 7353 mg | -- |
| Performance | 0 NP | -- |
| GlycoCarn | 0 NP | -- |
| Quercetin | 0 NP | -- |
| CNS | 0 NP | -- |
| REV-PEA(TM) | 0 NP | -- |
| B-Methyl-Phenylethylamine | 0 NP | -- |
| R-Beta-Phenylethylamine HCl | 0 NP | -- |
| 3,7-dimethylpurine-2,6-dione | 0 NP | -- |
| N-Methyl-Beta-Phenylethylamine HCl | 0 NP | -- |
Other ingredients: Maltodextrin, Natural and Artificial flavor, Sucralose, may contain red #40, FD&C blue #1 lake aluminum, Blue #2, Caramel color
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
POWDER
The combination of 3,7-dimethylpurine-2,6-dione and Hordenine HCL presents a new age advancement in the pre-workout category as it aids in bronchostimulation.
PRE-WORKOUT CONCENTRATE & BRONCHOSTIMULATOR
SUSTAINED EFFECT CNS STIMULATOR NO CRASH, JITTERS, OR TOLERANCE BUILD UP. MAXIMIZE ENDURANCE AND GROWTH.
In the era of concentrated pre-workouts, the race is on to create even stronger products with no emphasis on long term increases in: performance, muscle growth or preventing devastating crashes' that can ruin your workouts.
Phone: 305-593-9296 Fax: 202-449-8275
SUSTAINED EFFECT CNS STIMULATOR
FDA Statement of Identity
DIETARY SUPPLEMENT
Precautions
WARNING: Not intended for use by persons under the age of 18.
Do not use if you are pregnant or nursing. Consult a physician before using this product if you are unaware of your health status or have a history of high blood presssure, heart disease or if you are using a monoamine oxidase inhibitor (MAOI) or any other dietary supplement. Do not use if your currently using a prescription drug, or over-the-counter drug containing but not limited to ibuprofen, ephedrine, pseudoephedrine, or phenylpropanolamine (ingredients found in certain allergy, asthma, cough or cold, and weight control products).
KEEP OUT OF REACH OF CHILDREN.
Discontinue use if adverse reactions occur and consult a physician. Individuals who are sensitive to the effects of caffeine or have a medical condition should consult a licensed health care professional before consuming this product. If adverse reactions occur, then consult a physician.
Formula
The stimulant blend also features N-Methyltyramine which aids in preventing the breakdown of supplemented PEA.
GLYCOCARN(R) FOR INTENSE PUMPS, STRENGTH AND ENDURANCE
3,7-DIMETHYLPURINE-2,6-DIONE FOR BRONCHOSTIMULATION
REV-PEA(TM) FOR SUSTAINED EFFECT CNS STIMULATION
QUERCETIN FOR PROMOTING MUSCLE MITOCHONDRIA
Brand IP Statement(s)
To promote boosts in performance and nitric oxide levels, D Stunner(TM) utilizes GlycoCarn(R) which is supported by research to promote the production of nitric oxide for the muscular 'pump' during exercise.
Licensed under one or more of U.S. Pat. Nos. 5,965,596, 6,426,361, 7,504,376 and 8,067,381, each of which is owned by Natural Alternatives International,Inc. (NAI). NAI is also the owner of the registered trademark CarnoSyn(R)
REV-PEA(TM) is a registered trademark of Anderson Global, LLC.
D Stunner(TM) features an advanced stimulytic blend of REV-PEA(TM) which results in a no crash, sustained energy experience. REV-PEA(TM) is an advanced blend of energy and focus enhancing phenylethylamines that are more potent and stable then phenylethylamines alone.
Seals/Symbols
CarnoSyn(R) Carnosine Synthesizer
GlycoCarn(R)USP
LABORATORY TESTED BY nfn
WHATEVER IT TAKES!(R)
REV-PEA(TM) RX METABOLISM BOOSTER
Storage
STORE IN A COOL DRY PLACE.
FDA Disclaimer Statement
These statements have not been evaluated by the FDA. This product is not intended to diagnose, treat, cure or prevent any disease.
Suggested/Recommended/Usage/Directions
DIETARY SUPPLEMENT
Is this label outdated? Report a formula or label change and our pharmacy team will review it.
D-Stunner Grape by Betancourt Nutrition 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 D-Stunner Grape by Betancourt Nutrition
These are the 15 active ingredients this product is made of. Select any to open its full monograph.
Serving size9.3 Gram(s) Dosage formPowder Servings per container28 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.
Vitamin B12
Interacts with20 drugs
Vitamin B12 (cobalamin) is an essential nutrient your body needs to make red blood cells, keep nerves healthy, and support DNA. Supplements are very h...
Vitamin B12 monograph & interactionsCarbohydrates
- › Sugar
D-Stunner Performance Blend
Performance
- › Citric Acid
- › Creatine Monohydrate
- › Malic Acid
- › CarnoSyn
- › GlycoCarn
- › Quercetin
CNS
- › Caffeine
- › Hordenine HCl
- › Tyramine
- › Beta-Phenylethylamine HCl
- › REV-PEA(TM)
- › 3,7-dimethylpurine-2,6-dione
Other (inactive) ingredients: Maltodextrin, Natural and Artificial flavor, Sucralose, May contain red #40, FD&C blue #1 lake aluminum, Blue #2, Caramel color. These complete the product’s ingredient list but are not active constituents.
D-Stunner Grape by Betancourt Nutrition Drug Interactions
HelloPharmacist Interaction Report
D-Stunner Grape by Betancourt Nutrition interacts with medications through its caffeine, hordenine HCl, tyramine, quercetin, and B-methyl-phenylethylamine content.
The most serious interaction is Major: caffeine with ephedrine can increase the risk of life-threatening stimulant effects including hypertension and heart attack.
Read the full breakdown — every affected drug type, severity by severity
Caffeine carries Major interactions with ephedrine and Moderate interactions with pentobarbital, dipyridamole, clozapine, cimetidine, quinolone antibiotics, phenobarbital, and carbamazepine. Tyramine and hordenine both carry Major or Moderate interactions with monoamine oxidase inhibitors (MAOIs), and tyramine carries a Major interaction with antihypertensive drugs.
Quercetin has Moderate interactions with losartan, OATP substrates (including pravastatin), warfarin, quinolone antibiotics, cyclosporine, sulfasalazine, and mitoxantrone. B-methyl-phenylethylamine carries Moderate interactions with serotonergic drugs and MAOIs.
Hordenine also interacts with stimulant drugs (Moderate), and tyramine with alcohol and stimulant drugs (Moderate and Minor). Vitamin B12 has a Minor interaction with metformin.
Malic acid carries a Moderate interaction with antihypertensive drugs.
We could not check beta-phenylethylamine HCl, GlycoCarn, the D-Stunner Performance Blend, or the three other phenylethylamine variants for interactions. Use the medication checker below to see how your exact drugs interact with this product.
Altogether, these interactions span 1,393 individual medications.
Check your own medications below · Editorial policy · How we use AI
Want to check YOUR meds against D-Stunner Grape?
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 D-Stunner Grape interact with 1,392 drugs. Click any drug to see the details.
7 of the 15 ingredients in D-Stunner Grape interact with drugs. Each result below shows which ingredient is responsible. Quercetin Caffeine Tyramine Hordenine HCl REV-PEA(TM) Malic Acid Vitamin B12
AcebutololRhotral, Sectral
How Acebutolol interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Acebutolol interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Acebutolol interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Acebutolol interactionAcetazolamideAk-Zol, Diamox
How Acetazolamide interacts with D-Stunner Grape — through 4 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Acetazolamide interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Acetazolamide interactionCaffeineDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine + Acetazolamide interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Acetazolamide interactionAliskirenTekturna
How Aliskiren interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Aliskiren interactionQuercetinCytochrome P450 3a4 (cyp3a4) Substrates, Antihypertensive Drugs Moderate
Interaction Summary
Theoretically, concomitant use might alter the effects and adverse effects of CYP3A4 substrates.
Read the full Quercetin + Aliskiren interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Aliskiren interactionAmbrisentanLetairis, Volibris
How Ambrisentan interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Ambrisentan interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Ambrisentan interactionQuercetinP-glycoprotein Substrates, Antihypertensive Drugs +1 Moderate
Interaction Summary
Theoretically, concomitant use might alter the effects and adverse effects of P-glycoprotein substrates.
Read the full Quercetin + Ambrisentan interactionAmilorideAmilamont, Midamor
How Amiloride interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Amiloride interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Amiloride interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Amiloride interactionAmiloride, HydrochlorothiazideAmil-Co, Amilzide, Moduret 25, Moduretic
How Amiloride, Hydrochlorothiazide interacts with D-Stunner Grape — through 4 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Amiloride, Hydrochlorothiazide interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Amiloride, Hydrochlorothiazide interactionCaffeineDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine + Amiloride, Hydrochlorothiazide interactionQuercetinAntihypertensive Drugs, Organic Anion Transporter 3 (oat3) Substrates +1 Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Amiloride, Hydrochlorothiazide interactionAminophylline, Amobarbital, EphedrineAmesec
How Aminophylline, Amobarbital, Ephedrine interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
CaffeineStimulant Drugs, Ephedrine Major
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Caffeine + Aminophylline, Amobarbital, Ephedrine interactionHordenine HclStimulant Drugs Moderate
Interaction Summary
Hordenine is structurally similar to N-methyltyramine and synephrine, constituents in bitter orange known to have stimulant properties.
Read the full Hordenine Hcl + Aminophylline, Amobarbital, Ephedrine interactionTyramineStimulant Drugs Minor
Interaction Summary
Theoretically, taking tyramine with stimulant drugs might increase the risk of adverse cardiovascular effects.
Read the full Tyramine + Aminophylline, Amobarbital, Ephedrine interactionAmlodipineNorliqva
How Amlodipine interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Amlodipine interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Amlodipine interactionQuercetinCytochrome P450 3a4 (cyp3a4) Substrates, Antihypertensive Drugs Moderate
Interaction Summary
Theoretically, concomitant use might alter the effects and adverse effects of CYP3A4 substrates.
Read the full Quercetin + Amlodipine interactionAmlodipine BenzoateKaterzia
How Amlodipine Benzoate interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Amlodipine Benzoate interactionQuercetinAntihypertensive Drugs, Cytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Amlodipine Benzoate interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Amlodipine Benzoate interactionAmlodipine BesilateIstin
How Amlodipine Besilate interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Amlodipine Besilate interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Amlodipine Besilate interactionQuercetinAntihypertensive Drugs, Cytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Amlodipine Besilate interactionAmlodipine BesylateNorvasc
How Amlodipine Besylate interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Amlodipine Besylate interactionQuercetinAntihypertensive Drugs, Cytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Amlodipine Besylate interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Amlodipine Besylate interactionAmlodipine Besylate, BenazeprilLotrel
How Amlodipine Besylate, Benazepril interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Amlodipine Besylate, Benazepril interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Amlodipine Besylate, Benazepril interactionQuercetinCytochrome P450 3a4 (cyp3a4) Substrates, Antihypertensive Drugs Moderate
Interaction Summary
Theoretically, concomitant use might alter the effects and adverse effects of CYP3A4 substrates.
Read the full Quercetin + Amlodipine Besylate, Benazepril interactionAmlodipine, CelecoxibConsensi
How Amlodipine, Celecoxib interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Amlodipine, Celecoxib interactionQuercetinAntihypertensive Drugs, Cytochrome P450 3a4 (cyp3a4) Substrates +3 Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Amlodipine, Celecoxib interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Amlodipine, Celecoxib interactionAmmonium ChlorideAmmonium Chloride
How Ammonium Chloride interacts with D-Stunner Grape — through 4 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Ammonium Chloride interactionCaffeineDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine + Ammonium Chloride interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Ammonium Chloride interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Ammonium Chloride interactionAmphetamineAdensys XR-ODT, Adzenys ER, Dyanavel XR, Mydayis
How Amphetamine interacts with D-Stunner Grape — through 5 ingredients. Tap an ingredient for the detail:
TyramineStimulant Drugs, Monoamine Oxidase Inhibitors (maois) Major
Interaction Summary
Theoretically, taking tyramine with stimulant drugs might increase the risk of adverse cardiovascular effects.
Read the full Tyramine + Amphetamine interactionQuercetinCytochrome P450 2d6 (cyp2d6) Substrates Moderate
Interaction Summary
Theoretically, concomitant use might increase the levels and adverse effects of CYP2D6 substrates.
Read the full Quercetin + Amphetamine interactionB-methyl-phenylethylamineMonoamine Oxidase Inhibitors (maois) Moderate
Interaction Summary
Theoretically, taking phenethylamine concomitantly with MAOIs may increase adverse effects.
Read the full B-methyl-phenylethylamine + Amphetamine interactionHordenine HclStimulant Drugs, Monoamine Oxidase Inhibitors (maois) +1 Moderate
Interaction Summary
Hordenine is structurally similar to N-methyltyramine and synephrine, constituents in bitter orange known to have stimulant properties.
Read the full Hordenine Hcl + Amphetamine interactionCaffeineStimulant Drugs, Monoamine Oxidase Inhibitors (maois) Moderate
Interaction Summary
Theoretically, concomitant use might increase stimulant adverse effects.
Read the full Caffeine + Amphetamine interactionAprocitentanTryvio
How Aprocitentan interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Aprocitentan interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Aprocitentan interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Aprocitentan interactionAtenololAtenix, Tenormin
How Atenolol interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Atenolol interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Atenolol interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Atenolol interactionAtenolol, ChlortalidoneAtenixCo, Tenoret 50, Totaretic
How Atenolol, Chlortalidone interacts with D-Stunner Grape — through 4 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Atenolol, Chlortalidone interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Atenolol, Chlortalidone interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Atenolol, Chlortalidone interactionCaffeineDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine + Atenolol, Chlortalidone interactionAtenolol, ChlorthalidoneTenoretic
How Atenolol, Chlorthalidone interacts with D-Stunner Grape — through 4 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Atenolol, Chlorthalidone interactionCaffeineDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine + Atenolol, Chlorthalidone interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Atenolol, Chlorthalidone interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Atenolol, Chlorthalidone interactionAzilsartanEdarbi
How Azilsartan interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Azilsartan interactionQuercetinAntihypertensive Drugs, Cytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Azilsartan interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Azilsartan interactionAzilsartan, ChlorthalidoneEdarbyclor
How Azilsartan, Chlorthalidone interacts with D-Stunner Grape — through 4 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Azilsartan, Chlorthalidone interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Azilsartan, Chlorthalidone interactionCaffeineDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine + Azilsartan, Chlorthalidone interactionQuercetinCytochrome P450 2c9 (cyp2c9) Substrates, Antihypertensive Drugs Moderate
Interaction Summary
Theoretically, concomitant use might increase the levels and adverse effects of CYP2C9 substrates.
Read the full Quercetin + Azilsartan, Chlorthalidone interactionBenazeprilLotensin
How Benazepril interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Benazepril interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Benazepril interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Benazepril interactionBenazepril, HydrochlorothiazideLotensin HCT
How Benazepril, Hydrochlorothiazide interacts with D-Stunner Grape — through 4 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Benazepril, Hydrochlorothiazide interactionCaffeineDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine + Benazepril, Hydrochlorothiazide interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Benazepril, Hydrochlorothiazide interactionQuercetinAntihypertensive Drugs, Organic Anion Transporter 3 (oat3) Substrates +1 Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Benazepril, Hydrochlorothiazide interactionBendroflumethiazideAprinox, Naturetin, Neo-NaClex
How Bendroflumethiazide interacts with D-Stunner Grape — through 4 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Bendroflumethiazide interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Bendroflumethiazide interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Bendroflumethiazide interactionCaffeineDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine + Bendroflumethiazide interactionBendroflumethiazide, NadololCorzide
How Bendroflumethiazide, Nadolol interacts with D-Stunner Grape — through 4 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Bendroflumethiazide, Nadolol interactionCaffeineDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine + Bendroflumethiazide, Nadolol interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Bendroflumethiazide, Nadolol interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Bendroflumethiazide, Nadolol interactionBendroflumethiazide, Rauwolfia SerpentinaRauzide
How Bendroflumethiazide, Rauwolfia Serpentina interacts with D-Stunner Grape — through 4 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Bendroflumethiazide, Rauwolfia Serpentina interactionCaffeineDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine + Bendroflumethiazide, Rauwolfia Serpentina interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Bendroflumethiazide, Rauwolfia Serpentina interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Bendroflumethiazide, Rauwolfia Serpentina interactionBenzthiazideExna
How Benzthiazide interacts with D-Stunner Grape — through 4 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Benzthiazide interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Benzthiazide interactionCaffeineDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine + Benzthiazide interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Benzthiazide interactionBetaxololBetoptic, Kerlone
How Betaxolol interacts with D-Stunner Grape — through 3 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Betaxolol interactionQuercetinAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Betaxolol interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Betaxolol interactionBisoprololZebeta
How Bisoprolol interacts with D-Stunner Grape — through 4 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Bisoprolol interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Bisoprolol interactionQuercetinAntihypertensive Drugs, Cytochrome P450 2d6 (cyp2d6) Substrates Moderate
Interaction Summary
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Read the full Quercetin + Bisoprolol interactionHordenine HclCytochrome P450 2d6 (cyp2d6) Substrates Minor
Interaction Summary
Hordenine weakly inhibits cytochrome P450 2D6 (CYP2D6) enzymes in vitro.
Read the full Hordenine Hcl + Bisoprolol interactionBisoprolol, HydrochlorothiazideZiac
How Bisoprolol, Hydrochlorothiazide interacts with D-Stunner Grape — through 5 ingredients. Tap an ingredient for the detail:
TyramineAntihypertensive Drugs Major
Interaction Summary
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
Read the full Tyramine + Bisoprolol, Hydrochlorothiazide interactionQuercetinCytochrome P450 2d6 (cyp2d6) Substrates, Antihypertensive Drugs +2 Moderate
Interaction Summary
Theoretically, concomitant use might increase the levels and adverse effects of CYP2D6 substrates.
Read the full Quercetin + Bisoprolol, Hydrochlorothiazide interactionMalic AcidAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Malic Acid + Bisoprolol, Hydrochlorothiazide interactionCaffeineDiuretic Drugs Moderate
Interaction Summary
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Read the full Caffeine + Bisoprolol, Hydrochlorothiazide interactionHordenine HclCytochrome P450 2d6 (cyp2d6) Substrates Minor
Interaction Summary
Hordenine weakly inhibits cytochrome P450 2D6 (CYP2D6) enzymes in vitro.
Read the full Hordenine Hcl + Bisoprolol, Hydrochlorothiazide interactionEach ingredient & the kinds of drugs it affects
For each ingredient in D-Stunner Grape 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.
Quercetin
Antidiabetes Drugs
Theoretically, concomitant use of quercetin and antidiabetes drugs might increase the risk of hypoglycemia.
Clinical research suggests that a combination of quercetin, myricetin, and chlorogenic acid reduce levels of fasting glucose in patients with type 2 diabetes, including those already taking antidiabetes agents. The effect of quercetin alone is unknown.
Antihypertensive Drugs
Theoretically, taking quercetin with antihypertensive drugs might increase the risk of hypotension.
Quercetin can modestly decrease blood pressure in people with mild hypertension. Theoretically, it might have additive blood pressure lowering effects when used with antihypertensive drugs.
Cyclosporine (Neoral, Sandimmune)
Theoretically, concomitant use might increase the levels and adverse effects of cyclosporine.
A small study in healthy volunteers shows that pretreatment with quercetin increases plasma levels and prolongs the half-life of a single dose of cyclosporine, possibly due to inhibition of p-glycoprotein or cytochrome P450 3A4 (CYP3A4), which metabolizes cyclosporin.
Cytochrome P450 2C8 (Cyp2C8) Substrates
Theoretically, concomitant use might increase the levels and adverse effects of CYP2C8 substrates.
In vitro research shows that quercetin inhibits CYP2C8. Inhibition of paclitaxel (Taxol) metabolism via CYP2C8 has been reported in vitro. However, a small study in humans found no effect of quercetin on rosiglitazone (Avandia), which is also a CYP2C8 substrate.
Cytochrome P450 2C9 (Cyp2C9) Substrates
Theoretically, concomitant use might increase the levels and adverse effects of CYP2C9 substrates.
A small clinical study in healthy volunteers shows that taking quercetin 500 mg twice daily for 10 days prior to taking diclofenac, a CYP2C9 substrate, increases diclofenac plasma levels by 75% and prolongs the half-life by 32.5%. Animal research also shows that pretreatment with quercetin increases plasma levels and prolongs the half-life of losartan (Cozaar), a substrate of CYP2C9. Furthermore, laboratory research shows that quercetin inhibits CYP2C9.
Cytochrome P450 2D6 (Cyp2D6) Substrates
Theoretically, concomitant use might increase the levels and adverse effects of CYP2D6 substrates.
In vitro research show that quercetin inhibits CYP2D6. This effect has not been reported in humans.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, concomitant use might alter the effects and adverse effects of CYP3A4 substrates.
A small clinical study in healthy volunteers shows that pretreatment with quercetin increases plasma levels and prolongs the half-life of a single dose of cyclosporine (Neoral, Sandimmune), a substrate of CYP3A4. Animal research also shows that pretreatment with quercetin increases plasma levels and prolongs the half-life of losartan (Cozaar) and quetiapine (Seroquel), substrates of CYP3A4. Other laboratory research also shows that quercetin inhibits CYP3A4. However, one clinical study shows that quercetin can increase the metabolism of midazolam, a substrate of CYP3A4, and decrease serum concentrations of midazolam by about 24% in some healthy individuals, suggesting possible induction of CYP3A4.
Diclofenac (Voltaren, Others)
Theoretically, concomitant use might increase the levels and adverse effects of diclofenac.
A small clinical study in healthy volunteers shows that taking quercetin 500 mg twice daily for 10 days prior to taking diclofenac increases diclofenac plasma levels by 75% and prolongs the half-life by 32.5%. This is thought to be due to inhibition of CYP2C9 by quercetin.
Losartan (Cozaar)
Theoretically, concomitant use might increase the effects and adverse effects of losartan and decrease the effects of its active metabolite.
Animal research shows that pretreatment with quercetin increases plasma levels and prolongs the half-life of losartan (Cozaar) while decreasing plasma levels of losartan's active metabolite. This metabolite, which is around 10-fold more potent than losartan, is the result of cytochrome P450 (CYP) 2C9- and CYP3A4-mediated transformation of losartan. Additionally, in vitro research shows that quercetin may inhibit P-glycoprotein-mediated efflux of losartan from the intestines, resulting in increased absorption of losartan. These results suggest that concomitant use of quercetin and losartan might increase systemic exposure to losartan while also decreasing plasma concentrations of losartan's active and more potent metabolite.
Midazolam (Versed)
Theoretically, concomitant use might decrease the levels and effects of midazolam.
A small clinical study in healthy volunteers shows that quercetin can increase the metabolism of midazolam, with a decrease in AUC of about 24%.
Mitoxantrone
Theoretically, quercetin might increase the effects and adverse effects of mitoxantrone.
In vitro research shows that quercetin increases the intracellular accumulation and cytotoxicity of mitoxantrone, possibly through inhibition of breast cancer resistance protein (BCRP), of which mitoxantrone is a substrate. So far, this interaction has not been reported in humans.
Organic Anion Transporter 1 (Oat1) Substrates
Theoretically, concomitant use might increase the effects and adverse effects of OAT1 substrates.
In vitro research shows that quercetin is a strong non-competitive inhibitor of OAT1, with half-maximal inhibitory concentration (IC50) values less than 10 mcM. So far, this interaction has not been reported in humans.
Organic Anion Transporter 3 (Oat3) Substrates
Theoretically, concomitant use might increase the effects and adverse effects of OAT3 substrates.
In vitro research shows that quercetin is a strong non-competitive inhibitor of OAT3, with half-maximal inhibitory concentration (IC50) values as low as 0.75 mcM. So far, this interaction has not been reported in humans.
Organic Anion-Transporting Polypeptide Substrates (Oatp)
Theoretically, concomitant use might increase the effects and adverse effects of OATP substrates.
In vitro evidence shows that quercetin can inhibit organic anion-transporting peptide (OATP) 1B1-mediated uptake of estrone-3-sulfate and pravastatin. Furthermore, clinical research in healthy males shows that intake of quercetin along with pravastatin increases the AUC of pravastatin by 24%, prolongs its half-life by 14%, and decreases its apparent clearance by 18%, suggesting that quercetin modestly inhibits the uptake of pravastatin in hepatic cells.
P-Glycoprotein Substrates
Theoretically, concomitant use might alter the effects and adverse effects of P-glycoprotein substrates.
There is preliminary evidence that quercetin inhibits the gastrointestinal P-glycoprotein efflux pump, which might increase the bioavailability and serum levels of drugs transported by the pump. A small study in healthy volunteers reported that pretreatment with quercetin increased bioavailability and plasma levels after a single dose of cyclosporine (Neoral, Sandimmune). Also, two small studies have shown that quercetin might decrease the absorption of talinolol, a substrate transported by the gastrointestinal P-glycoprotein efflux pump. However, in another small study, several days of quercetin treatment did not significantly affect the pharmacokinetics of saquinavir (Invirase). The reason for these discrepancies is not entirely clear. Until more is known, use quercetin cautiously in combination with P-glycoprotein substrates.
Pravastatin (Pravachol)
Theoretically, concomitant use might increase the effects and adverse effects of pravastatin.
In vitro evidence shows that quercetin can inhibit OATP 1B1-mediated uptake of pravastatin. Also, preliminary clinical research in healthy males shows that intake of quercetin along with pravastatin increases the maximum concentration of pravastatin by 24%, prolongs its half-life by 14%, and decreases its apparent clearance by 18%, suggesting that quercetin modestly inhibits the uptake of pravastatin in hepatic cells.
Prazosin (Minipress)
Theoretically, quercetin might increase the effects and adverse effects of prazosin.
In vitro research shows that quercetin inhibits the transcellular efflux of prazosin, possibly through inhibition of breast cancer resistance protein (BCRP), of which prazosin is a substrate. BCRP is an ATP-binding cassette efflux transporter in the intestines, kidneys, and liver. So far, this interaction has not been reported in humans.
Quetiapine (Seroquel)
Theoretically, concomitant use might increase the effects and adverse effects of quetiapine.
Animal research shows that pretreatment with quercetin can increase plasma levels of quetiapine and prolong its clearance, possibly due to inhibition of cytochrome P450 3A4 (CYP3A4) by quercetin. Additionally, the brain-to-plasma ratio of quetiapine concentrations increased, possibly due to inhibition of P-glycoprotein at the blood-brain barrier. This interaction has not been reported in humans.
Quinolone Antibiotics
Theoretically, concomitant use might inhibit the effects of quinolone antibiotics.
In vitro, quercetin binds to the DNA gyrase site on bacteria, which may interfere with the activity of quinolone antibiotics.
Sulfasalazine (Azulfidine)
Theoretically, quercetin might increase the effects and adverse effects of sulfasalazine.
Animal research shows that quercetin increases the maximum serum concentration (Cmax) and area under the curve (AUC) of sulfasalazine, possibly through inhibition of breast cancer resistance protein (BCRP), of which sulfasalazine is a substrate. So far, this interaction has not been reported in humans.
Warfarin (Coumadin)
Theoretically, quercetin may increase the risk of bleeding if used with warfarin.
Animal and in vitro studies show that quercetin might increase serum levels of warfarin. Quercetin and warfarin have the same human serum albumin (HSA) binding site, and in vitro research shows that quercetin has stronger affinity for the HSA binding site and can theoretically displace warfarin, causing higher serum levels of warfarin. Animal research shows that taking quercetin for 2 weeks before initiating warfarin increases the maximum serum level of warfarin by 30%, the half-life by 10%, and the overall exposure by 63% when compared with control. Concomitant administration of quercetin and warfarin, without quercetin pre-treatment, also increased these measures, but to a lesser degree. Researchers theorize that inhibition of CYP3A4 by quercetin may explain these effects. So far, this interaction has not been reported in humans.
Caffeine
Ephedrine
Theoretically, concomitant use might increase the risk for stimulant adverse effects.
Use of ephedrine with caffeine can increase the risk of stimulatory adverse effects. There is evidence that using ephedrine with caffeine might increase the risk of serious life-threatening or debilitating adverse effects such as hypertension, myocardial infarction, stroke, seizures, and death.
Adenosine (Adenocard)
Theoretically, caffeine might decrease the vasodilatory effects of adenosine and interfere with its use prior to stress testing.
Some evidence shows that caffeine is a competitive inhibitor of adenosine and can reduce the vasodilatory effects of adenosine in humans. However, other research shows that caffeine does not seem to affect supplemental adenosine because high interstitial levels of adenosine overcome the antagonistic effects of caffeine. It is recommended that methylxanthines and methylxanthine-containing products be stopped 24 hours prior to pharmacological stress tests. However, methylxanthines appear more likely to interfere with dipyridamole (Persantine) than adenosine-induced stress testing.
Anticoagulant/Antiplatelet Drugs
Theoretically, caffeine may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs.
Caffeine is reported to have antiplatelet activity. Theoretically, it might increase the risk of bleeding when used concomitantly with these agents; however, this interaction has not been reported in humans.
Beta-Adrenergic Agonists
Theoretically, large amounts of caffeine might increase the cardiac inotropic effects of beta-agonists.
Carbamazepine (Tegretol)
Theoretically, caffeine might reduce the effects of carbamazepine and increase the risk for convulsions.
Animal research suggests that taking caffeine can lower the anticonvulsant effects of carbamazepine and can induce seizures when taken in doses above 400 mg/kg. Human research has shown that taking caffeine 300 mg in three divided doses along with carbamazepine 200 mg reduces the bioavailability of carbamazepine by 32% and prolongs the plasma half-life of carbamazepine 2-fold in healthy individuals.
Cimetidine (Tagamet)
Theoretically, cimetidine might increase the levels and adverse effects of caffeine.
Cimetidine decreases the rate of caffeine clearance by 31% to 42%.
Clozapine (Clozaril)
Caffeine might increase the levels and adverse effects of clozapine and acutely exacerbate psychotic symptoms.
Caffeine might increase the effects and toxicity of clozapine. Caffeine doses of 400-1000 mg per day inhibit clozapine metabolism. Clozapine is metabolized by cytochrome P450 1A2 (CYP1A2). Although researchers speculate that caffeine might inhibit CYP1A2, there is no reliable evidence that caffeine affects CYP1A2. There is also speculation that genetic factors might make some patients more sensitive to an interaction between clozapine and caffeine. In one case report, severe, life-threatening clozapine toxicity and multiorgan system failure occurred in a patient with schizophrenia stabilized on clozapine who consumed caffeine 600 mg daily.
Dipyridamole (Persantine)
Theoretically, caffeine might decrease the vasodilatory effects of dipyridamole and interfere with its use prior to stress testing.
Caffeine inhibits dipyridamole-induced vasodilation. It is recommended that methylxanthines and methylxanthine-containing products be stopped 24 hours prior to pharmacological stress tests. Methylxanthines appear more likely to interfere with dipyridamole (Persantine) than adenosine-induced stress testing.
Disulfiram (Antabuse)
Theoretically, disulfiram use might increase the levels and adverse effects of caffeine.
Disulfiram decreases the rate of caffeine clearance.
Diuretic Drugs
Theoretically, using caffeine with diuretic drugs might increase the risk of hypokalemia.
Caffeine, especially in excessive amounts, can reduce potassium levels due to stimulation of the sodium-potassium pump. Diuretics can also cause lower potassium levels.
Estrogens
Theoretically, estrogens might increase the levels and adverse effects of caffeine.
Estrogen inhibits caffeine metabolism.
Ethosuximide (Zarontin)
Theoretically, caffeine might reduce the effects of ethosuximide and increase the risk for convulsions.
Animal research suggests that caffeine 92.4 mg/kg can decrease the anticonvulsant activity of ethosuximide. However, this effect has not been reported in humans.
Felbamate (Felbatol)
Theoretically, caffeine might reduce the effects of felbamate and increase the risk for convulsions.
Animal research suggests that a high dose of caffeine 161.7 mg/kg can decreases the anticonvulsant activity of felbamate. However, this effect has not been reported in humans.
Flutamide (Eulexin)
Theoretically, caffeine might increase the levels and adverse effects of flutamide.
In vitro evidence suggests that caffeine can inhibit the metabolism of flutamide. However, this effect has not been reported in humans.
Fluvoxamine (Luvox)
Theoretically, fluvoxamine might increase the levels and adverse effects of caffeine.
Fluvoxamine reduces caffeine metabolism.
Lithium
Abrupt caffeine withdrawal might increase the levels and adverse effects of lithium.
Caffeine has diuretic activity. When abruptly discontinued, caffeine may alter the clearance of lithium. There are two case reports of lithium tremor that worsened upon abrupt coffee withdrawal and 6 case reports of elevated serum lithium levels after reducing or eliminating caffeine intake. In one case, a male with schizoaffective disorder stabilized on lithium had an elevated lithium level after reducing his caffeine intake by 87%. At a later date, he increased his caffeine intake by 6-fold, resulting in a subtherapeutic lithium level and a recurrence of psychiatric symptoms.
Monoamine Oxidase Inhibitors (Maois)
Theoretically, concomitant use might increase the risk of a hypertensive crisis.
Caffeine has been shown to inhibit monoamine oxidase (MAO) A and B in laboratory studies. Concomitant intake of large amounts of caffeine with MAOIs might precipitate a hypertensive crisis. In a case report, a patient that consumed 10-12 cups of caffeinated coffee and took the MAOI tranylcypromine presented with severe hypertension. Hypertension was resolved after the patient switched to drinking decaffeinated coffee.
Nicotine
Theoretically, concomitant use might increase the risk of hypertension.
Concomitant use of caffeine and nicotine has been shown to have additive cardiovascular effects, including increased heart rate and blood pressure. Blood pressure was increased by 10.8/12.4 mmHg when the agents were used concomitantly.
Pentobarbital (Nembutal)
Theoretically, caffeine might decrease the effects of pentobarbital.
Caffeine might negate the hypnotic effects of pentobarbital.
Phenobarbital (Luminal)
Theoretically, caffeine might reduce the effects of phenobarbital and increase the risk for convulsions.
Animal research suggests that caffeine can decrease the anticonvulsant activity of phenobarbital. However, the exact mechanism of this interaction is unclear.
Phenylpropanolamine
Theoretically, phenylpropanolamine might increase the risk of hypertension, as well as the levels and adverse effects of caffeine.
Concomitant use of phenylpropanolamine and caffeine might cause an additive increase in blood pressure. Phenylpropanolamine also seems to increase caffeine serum levels.
Phenytoin (Dilantin)
Theoretically, caffeine might reduce the effects of phenytoin and increase the risk for convulsions.
Animal research suggests that caffeine can decrease the anticonvulsant activity of phenytoin. The effect does not seem to be related to the seizure threshold-lowering effects of caffeine. However, the exact mechanism of this interaction is unclear.
Pioglitazone (Actos)
Theoretically, caffeine might increase the levels and clinical effects of pioglitazone.
Animal research suggests that caffeine can modestly increase the maximum concentration, area under the curve, and half-life of pioglitazone, and also reduce its clearance. This increased the antidiabetic effects of pioglitazone. However, the exact mechanism of this interaction is unclear.
Quinolone Antibiotics
Theoretically, quinolone antibiotics might increase the levels and adverse effects of caffeine.
Quinolones (also called fluoroquinolones) can decrease caffeine clearance by inhibiting cytochrome P450 1A2 (CYP1A2) enzyme.
Riluzole (Rilutek)
Theoretically, concomitant use might increase the levels and adverse effects of both caffeine and riluzole.
Caffeine and riluzole are both metabolized by cytochrome P450 1A2 (CYP1A2), and concomitant use might reduce the metabolism of one or both agents.
Tyramine
Antihypertensive Drugs
Tyramine may increase the risk of hypertension and reduce the effects of antihypertensive drugs.
In humans, oral and intravenous tyramine increases systolic blood pressure.
Monoamine Oxidase Inhibitors (Maois)
Concomitant use of tyramine with MAOIs may increase the risk of serious adverse effects from tyramine.
Tyramine is metabolized by monoamine oxidase. Concurrent use of MAOIs with tyramine can lead to elevated levels of tyramine in the body. This can increase the effects of tyramine, which has been reported to cause hypertension, headache, and hypertensive crisis in numerous cases. Sensitivity to tyramine can increase up to 10-fold to 100-fold in people using an MAOI. The European Food Safety Authority states that meals containing more than 50 mg of tyramine might present a risk to patients that are using third generation MAOI medications. Meals containing more than 6 mg of tyramine are likely to present a risk to patients who are taking classic MAOI medications.
Alcohol
Theoretically, concomitant use of alcohol and tyramine might increase the risk of adverse effects from tyramine.
In vitro research suggests that alcohol may potentiate the toxic effects of biogenic amines, including tyramine, possibly by decreasing their breakdown.
Stimulant Drugs
Theoretically, taking tyramine with stimulant drugs might increase the risk of adverse cardiovascular effects.
Tyramine is thought to have stimulant effects.
Hordenine HCl
Monoamine Oxidase Inhibitors (Maois)
Hordenine is structurally similar to tyramine In vitro research shows that hordenine is a selective substrate for monoamine oxidase-B in the liver. Theoretically, concomitant use of hordenine with MAOIs might increase blood pressure, potentially leading to a hypertensive crisis.
Some MAOIs include isocarboxazid (Marplan), phenelzine (Nardil), selegiline (Eldepryl, Emsam, Zelapar), and tranylcypromine (Parnate).
Stimulant Drugs
Hordenine is structurally similar to N-methyltyramine and synephrine, constituents in bitter orange known to have stimulant properties. Theoretically, taking hordenine with drugs with stimulant properties might increase the risk of hypertension and other adverse cardiovascular effects.
Some of these drugs include amphetamine, caffeine, methylphenidate, pseudoephedrine, and many others.
Cytochrome P450 2D6 (Cyp2D6) Substrates
Hordenine weakly inhibits cytochrome P450 2D6 (CYP2D6) enzymes in vitro. Theoretically, hordenine might increase the levels of CYP2D6 substrates.
Some of drugs that are CYP2D6 substrates include amitriptyline (Elavil), clozapine (Clozaril), codeine, desipramine (Norpramin), donepezil (Aricept), fentanyl (Duragesic), flecainide (Tambocor), fluoxetine (Prozac), meperidine (Demerol), methadone (Dolophine), metoprolol (Lopressor, Toprol XL), olanzapine (Zyprexa), ondansetron (Zofran), tramadol (Ultram), trazodone (Desyrel), and others.
REV-PEA(TM)
Monoamine Oxidase Inhibitors (Maois)
Theoretically, taking phenethylamine concomitantly with MAOIs may increase adverse effects.
In humans, phenethylamine is oxidized by MAO-B to form the inactive metabolite phenylacetic acid. Animal research shows that administering an MAOI prior to phenethylamine increases the amphetamine-like effects of phenethylamine. However, low-quality clinical research has used phenethylamine with selegiline, an MAOI, with apparent safety.
Serotonergic Drugs
Theoretically, combining serotonergic drugs with phenethylamine might increase the risk of serotonergic adverse effects.
Animal research shows that phenethylamine increases levels of serotonin, norepinephrine, and dopamine. Theoretically, combining serotonergic drugs with phenethylamine might increase the risk of additive serotonergic adverse effects, including serotonin syndrome and cerebral vasoconstrictive disorders. However, low-quality clinical research has used phenethylamine with selegiline, a monoamine oxidase inhibitor (MAOI), with apparent safety.
Malic Acid
Antihypertensive Drugs
Theoretically, malic acid might increase the risk of hypotension when taken with antihypertensive drugs.
Animal research shows that malic acid isolated from tagetes roots can reduce mean arterial blood pressure.
Vitamin B12
Metformin (Glucophage)
Metformin, a common medication used to manage type 2 diabetes, has been associated with lower vitamin B12 levels in some individuals. Prolonged use of metformin can interfere with the absorption of B12 in the digestive system, potentially leading to a deficiency in this essential vitamin.
Brand information
Manufacturer and brand details for D-Stunner Grape, from the product label.
Betancourt Nutrition
See all Betancourt Nutrition products- Name
- Betancourt Nutrition, Inc.
- Street Address
- 14620 NW 60th Ave.
- City
- Miami Lakes
- State
- FL
- ZipCode
- 33014
D-Stunner Grape by Betancourt Nutrition: Common Questions
Does D-Stunner Grape by Betancourt Nutrition interact with any medications?
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Written and reviewed by the HelloPharmacist editorial staff. Our editorial policy
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Label information is sourced from the NIH Dietary Supplement Label Database and reflects the product version on file; always read your actual product label. This page is for education only and is not a substitute for professional medical advice. Confirm with your pharmacist or doctor before combining supplements and medications.
The Full Monographs Behind D-Stunner Grape’s Ingredients
Every ingredient we hold a full HelloPharmacist monograph for — uses, evidence, safety, and the complete interaction list.
Vitamin B12
Interacts with 20 drugsVitamin B12 (cobalamin) is an essential nutrient your body needs to make red blood cells, keep nerves healthy, and support DNA. Supplements are very helpful for people who are deficient — su...
Read the full Vitamin B12 monograph → Herb & supplement monographCitric Acid
Citric acid is a natural acid found in citrus fruits and is widely used as a safe food additive, flavoring, and preservative. In medicine, citrate forms (like potassium or sodium citrate) ar...
Read the full Citric Acid monograph → Herb & supplement monographCreatine
Creatine is one of the most studied sports supplements, with solid evidence that it can boost strength and performance during short, high-intensity activities like weightlifting and sprintin...
Read the full Creatine monograph → Herb & supplement monographMalic Acid
Interacts with 172 drugsMalic acid is a natural acid found in apples and other fruits, often combined with magnesium in supplements marketed for fibromyalgia and muscle pain. The evidence for its health benefits is...
Read the full Malic Acid monograph → Herb & supplement monographBeta-alanine
Beta-alanine is an amino acid taken mostly by athletes to raise muscle carnosine, which may help buffer acid and reduce fatigue during short, high-intensity exercise. The evidence is moderat...
Read the full Beta-alanine monograph → Herb & supplement monographQuercetin
Interacts with 1,169 drugsQuercetin is a plant flavonoid with antioxidant and anti-inflammatory properties found in many common foods and sold as a supplement. While early research is interesting for allergies, blood...
Read the full Quercetin monograph → Herb & supplement monographCaffeine
Interacts with 655 drugsCaffeine is a natural stimulant found in coffee, tea, and many other plants and products. In moderate amounts it can boost alertness and reduce tiredness for most healthy adults, but too muc...
Read the full Caffeine monograph → Herb & supplement monographHordenine
Interacts with 329 drugsHordenine is a natural alkaloid found in barley and some cacti that is marketed as a stimulant for energy, focus, and fat loss, but solid human evidence for these benefits is lacking. Its sa...
Read the full Hordenine monograph → Herb & supplement monographTyramine
Interacts with 353 drugsTyramine is a natural compound formed when certain proteins break down, and it is found in aged cheeses, cured meats, fermented foods, and some other items. It is not a typical health supple...
Read the full Tyramine monograph → Herb & supplement monographPhenethylamine (pea)
Interacts with 187 drugsPhenethylamine (PEA) is a natural compound made in the body and found in foods like chocolate; supplements are marketed for mood, focus, and energy. Reliable human research on the supplement...
Read the full Phenethylamine (pea) monograph →Sources & How We Checked
D-Stunner Grape'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 435 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.
Citric Acid 10 references
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- Erbagci Z, Akcali C. Biweekly serial glycolic acid peels vs. long-term daily use of topical low-strength glycolic acid in the treatment of atrophic acne scars. Int J Dermatol 2000;39:789-94.. PubMed
- Ghadishah D, Gorchynski J. Airway compromise after routine alpha-hydroxy facial peel administration. J Emerg Med 2002;22:353-5.. PubMed
- Baumann LS, Oresajo C, Yatskayer M, Dahl A, Figueras K. Comparison of clindamycin 1% and benzoyl peroxide 5% gel to a novel composition containing salicylic acid, capryloyl salicylic acid, HEPES, glycolic acid, citric acid, and dioic acid in the treatment
- Emtestam L, Svensson Å, Rensfeldt K. Treatment of seborrhoeic dermatitis of the scalp with a topical solution of urea, lactic acid, and propylene glycol (K301): results of two double-blind, randomised, placebo-controlled studies. Mycoses. 2012 Sep;55(5):3 PubMed
- Kaminaka C, Uede M, Matsunaka H, Furukawa F, Yamomoto Y. Clinical evaluation of glycolic acid chemical peeling in patients with acne vulgaris: a randomized, double-blind, placebo-controlled, split-face comparative study. Dermatol Surg. 2014 Mar;40(3):314- PubMed
- Köse O, Özmen I, Arca E. An open, comparative study of 10% potassium hydroxide solution versus salicylic and lactic acid combination in the treatment of molluscum contagiosum in children. J Dermatolog Treat. 2013 Aug;24(4):300-4. PubMed
- Vachiramon V, Sahawatwong S, Sirithanabadeekul P. Treatment of melasma in men with low-fluence Q-switched neodymium-doped yttrium-aluminum-garnet laser versus combined laser and glycolic acid peeling. Dermatol Surg. 2015 Apr;41(4):457-65. PubMed
- US Food and Drug Administration (FDA). Cosmetic Ingredients: Alpha Hydroxy Acids. August 2020. Available at: https://www.fda.gov/cosmetics/cosmetic-ingredients/alpha-hydroxy-acids. Accessed on October 19, 2021.
- Ormerod AD, van Voorst Vader PC, Majewski S, Vanscheidt W, Benjamin N, van der Meijden W. Evaluation of the efficacy, safety, and tolerability of 3 dose regimens of topical sodium nitrite with citric acid in patients with anogenital warts: A randomized cl DOI
Vitamin B12 30 references
- Food and Nutrition Board, Institute of Medicine. Dietary Reference Intakes for Thiamin, Riboflavin, Niacin, Vitamin B6, Folate, Vitamin B12, Pantothenic Acid, Biotin, and Choline (2000). Washington, DC: National Academy Press, 2000. Available at: http://b
- Hartman TJ, Woodson K, Stolzenberg-Solomon R, et al. Association of the B-vitamins pyridoxal 5'-phosphate (B6), B12, and folate with lung cancer risk in older men. Am J Epidemiol 2001;153:688-94.. DOI
- Jansen T, Romiti R, Kreuter A, Altmeyer P. Rosacea fulminans triggered by high-dose vitamins B6 and B12. J Eur Acad Dermatol Venereol 2001;15:484-5..
- Lange H, Suryapranata H, De Luca G, et al. Folate therapy and in-stent restenosis after coronary stenting. N Engl J Med 2004;350:2673-81. PubMed
- Collin, S. M., Metcalfe, C., Refsum, H., Lewis, S. J., Zuccolo, L., Smith, G. D., Chen, L., Harris, R., Davis, M., Marsden, G., Johnston, C., Lane, J. A., Ebbing, M., Bonaa, K. H., Nygard, O., Ueland, P. M., Grau, M. V., Baron, J. A., Donovan, J. L., Nea
- Geissbuhler, P., Mermillod, B., and Rapin, C. H. Elevated serum vitamin B12 levels associated with CRP as a predictive factor of mortality in palliative care cancer patients: a prospective study over five years. J.Pain Symptom.Manage. 2000;20(2):93-103. PubMed
- Salles, N., Herrmann, F., Sakbani, K., Rapin, C. H., and Sieber, C. High vitamin B12 level: a strong predictor of mortality in elderly inpatients. J Am Geriatr.Soc 2005;53(5):917-918.
- Looker, H. C., Fagot-Campagna, A., Gunter, E. W., Pfeiffer, C. M., Sievers, M. L., Bennett, P. H., Nelson, R. G., Hanson, R. L., and Knowler, W. C. Homocysteine and vitamin B(12) concentrations and mortality rates in type 2 diabetes. Diabetes Metab Res R
- Uhl, W., Nolting, A., Golor, G., Rost, K. L., and Kovar, A. Safety of hydroxocobalamin in healthy volunteers in a randomized, placebo-controlled study. Clin Toxicol (Phila) 2006;44 Suppl 1:17-28. PubMed
- Borron, S. W., Baud, F. J., Barriot, P., Imbert, M., and Bismuth, C. Prospective study of hydroxocobalamin for acute cyanide poisoning in smoke inhalation. Ann Emerg.Med 2007;49(6):794-801, 801. PubMed
- Borron, S. W., Baud, F. J., Megarbane, B., and Bismuth, C. Hydroxocobalamin for severe acute cyanide poisoning by ingestion or inhalation. Am J Emerg.Med 2007;25(5):551-558. PubMed
- Lewis, J. G. Gout, Steatorrhoea, and Megaloblastic Anaemia. Ann Rheum.Dis 1962;21(3):284-286. PubMed
- Tal, S., Shavit, Y., Stern, F., and Malnick, S. Association between vitamin B12 levels and mortality in hospitalized older adults. J Am Geriatr.Soc 2010;58(3):523-526. PubMed
- Baztan, J. J., Gavidia, J. J., Gomez-Pavon, J., Esteve, A., and Ruiperez, I. High vitamin B12 levels and in-hospital mortality. J Am Geriatr.Soc 2010;58(11):2237-2238. PubMed
- Omboni, E., Checchini, M., and Longoni, F. [Hypopotassemia and megaloblastic anemia. Presentation of a case]. Minerva Med 8-31-1987;78(16):1255-1257.
- Aalfs As, Scholvinck LH, Horvath B. Acneiform eruption in a 5-year old due to vitamin B12 supplementation. Eur J Dermatol 2013;23(5):726-7. PubMed
- Balta I, Ozuguz P. Vitamin B12-induced acneiform eruption. Cutan Ocul Toxicol 2014;33(2):94-5. PubMed
- Carman KB, Belgemen T, Yis U. Involuntary movements misdiagnosed as seizure during vitamin B12 treatment. Pediatr Emerg Care 2013;29(11):1223-4. PubMed
- Djuric V, Bogic M, Popadic AP, et al. Anaphylactic reaction to hydroxycobalamin with tolerance to cyanocobalamin. Ann Allergy Asthma Immunol 2012;108(3):207-8. PubMed
- Kartel O, Gulec M, Demirel F, et al. Vitamin B12 allergy and successful desensitization with cyanocobalamin: A case report. Allergol Immunopath (Madr) 2012;40(5):324-5.
- Patiroglu T, Unal E, Yildirim S. Infantile tremor syndrome associated with cobalamin therapy: A case report. Clin Neurol Neurosurg 2013;115(9):1903-5. PubMed
- Schulte S, Barkema LW, Kardaun SH. Long-lasting atypical acneiform eruption with prominent comedones induced by hydroxocobalamin (vitamin B12). J Dtsch Dermatol Ges 2014;12(6):502-3.
- Zanus C, Alberini E, Costa P, et al. Involuntary movements after correction of vitamin B12 deficiency: A video-case report. Epileptic Disord 2012;14(2):174-80. PubMed
- Fanidi A, Carreras-Torres R, Larose TL, et al. Is high vitamin B12 status a cause of lung cancer? Int J Cancer. 2019 Sep 15;145(6):1499-1503. PubMed
- Fujita Y, Mizukami T, Maya Y, et al. Vitamin B12 allergy manifesting as lymphomatoid contact dermatitis. Eur J Dermatol. 2020;30(3):304-305. PubMed
- Dépret F, Hoffmann C, Daoud L, et al. Association between hydroxocobalamin administration and acute kidney injury after smoke inhalation: a multicenter retrospective study. Crit Care. 2019;23(1):421. PubMed
- Khairan P, Sobue T, Eshak ES, et al. Association of dietary intakes of vitamin B12, vitamin B6, folate, and methionine with the risk of esophageal cancer: the Japan Public Health Center-based (JPHC) prospective study. BMC Cancer 2021;21(1):982. PubMed
- Evans J, Pandya A, Ding Y, Qunibi WY. Hydroxocobalamin-Induced Oxalate Nephropathy in a Patient With Smoke Inhalation. Kidney Int Rep 2021;6(8):2228-2231. PubMed
- Lacombe V, Chabrun F, Lacout C, et al. Persistent elevation of plasma vitamin B12 is strongly associated with solid cancer. Sci Rep 2021;11(1):13361. PubMed
- Pegalajar-García MD, Cebolla-Verdugo M, Prados-Carmona Á, Llamas-Segura C, Navarro-Triviño FJ. Systemic allergic dermatitis to cobalt present in cyanocobalamin supplementation. Contact Dermatitis 2023;89(3):203-205. PubMed
Creatine 86 references
- Koshy KM, Griswold E, Schneeberger EE. Interstitial nephritis in a patient taking creatine. N Engl J Med 1999;340:814-5. PubMed
- Vahedi K, Domingo V, Amarenco P, Bousser MG. Ischemic stroke in a sportsman who consumed MaHuang extract and creatine monohydrate for bodybuilding. J Neurol Neurosurg Psychiatr 2000;68:112-3.
- Greenhaff P. Renal dysfunction accompanying oral creatine supplements. Lancet 1998;352:233-4. PubMed
- Vandenberghe K, Goris M, Van Hecke P, et al. Long-term creatine intake is beneficial to muscle performance during resistance training (abstract). J Appl Physiol 1997;83:2055-63. PubMed
- Hultman E, Soderlund K, Timmons JA, et al. Muscle creatine loading in men. J Appl Physiol 1996;81:232-7. PubMed
- Pritchard NR, Kalra PA. Renal dysfunction accompanying oral creatine supplements. Lancet 1998;351:1252-3. PubMed
- Poortmans JR, Auquier H, Renaut V, et al. Effect of short-term creatine supplementation on renal responses in men (abstract). Eur J Appl Physiol Occup Physiol 1997;76:566-7. PubMed
- Poortmans JR, Francaux M. Long-term oral creatine supplementation does not impair renal function in healthy athletes. Med Sci Sports Exerc 1999;31:1108-10. PubMed
- Mihic S, MacDonald JR, McKenzie S, Tarnopolsky MA. Acute creatine loading increases fat-free mass, but does not affect blood pressure, plasma creatinine, or CK activity in men and women. Med Sci Sports Exerc 2000;32:291-6. PubMed
- Rawson ES, Wehnert ML, Clarkson PM. Effects of 30 days of creatine ingestion in older men. Eur J Appl Physiol Occup Physiol 1999;80:139-44. PubMed
- Earnest CP, Almada AL, Mitchell TL. High-performance capillary electrophoresis-pure creatine monohydrate reduces blood lipids in men and women. Clin Sci (Colch) 1996;91:113-8. PubMed
- Juhn MS. Oral creatine supplementation. Separating fact from hype. Phys Sportsmed 1999;27:47-50,53-54,56,61,89. PubMed
- Juhn MS, O'Kane JW, Vinci DM. Oral creatine supplementation in male collegiate athletes: a survey of dosing habits and side effects. J Am Diet Assoc 1999;99:593-5.
- Green AL, Hultman E, Macdonald IA, et al. Carbohydrate ingestion augments skeletal muscle creatine accumulation during creatine supplementation in humans. Am J Physiol 1996;271:E821-6. PubMed
- Balsom PD, Soderlund K, Sjodin B, Ekblom B. Skeletal muscle metabolism during short duration high-intensity exercise: influence of creatine supplementation. Acta Physiol Scand 1995;154:303-10. PubMed
- Snow RJ, McKenna MJ, Selig SE, et al. Effect of creatine supplementation on sprint exercise performance and muscle metabolism. (abstract) J Appl Physiol 1998;84:1667-73. PubMed
- McNaughton LR, Dalton B, Tarr J. The effects of creatine supplementation on high-intensity exercise performance in elite performers. (abstract) Eur J Appl Physiol Occup Physiol 1998;78:236-40. PubMed
- Groeneveld GJ, Veldink JH, van der Tweel I, et al. A randomized sequential trial of creatine in amyotrophic lateral sclerosis. Ann Neurol 2003;53:437-45. . PubMed
- Robinson SJ. Acute quadriceps compartment syndrome and rhabdomyolysis in a weight lifter using high-dose creatine supplementation. J Am Board Fam Pract 2000;13:134-7. PubMed
- Kammer RT. Lone atrial fibrillation associated with creatine monohydrate supplementation. Pharmacotherapy 2005;25:762-4. PubMed
- Gualano B, Ugrinowitsch C, Novaes RB, et al. Effects of creatine supplementation on renal function: a randomized, double-blind, placebo-controlled clinical trial. Eur J Appl Physiol 2008;103:33-40. PubMed
- Pfeffer, G., Majamaa, K., Turnbull, D. M., Thorburn, D., and Chinnery, P. F. Treatment for mitochondrial disorders. Cochrane Database.Syst.Rev. 2012;4:CD004426. PubMed
- Boos, C. J., White, S. H., Bland, S. A., and McAllister, P. D. Dietary supplements and military operations: caution is advised. J R.Army Med Corps 2010;156(1):41-43. PubMed
- Kreider, R. B. Dietary supplements and the promotion of muscle growth with resistance exercise. Sports Med 1999;27(2):97-110. PubMed
- Juhn, M. S., O'Kane, J. W., and Vinci, D. M. Oral creatine supplementation in male collegiate athletes: a survey of dosing habits and side effects. J Am.Diet.Assoc 1999;99(5):593-595.
- Volek, J. S., Duncan, N. D., Mazzetti, S. A., Putukian, M., Gomez, A. L., and Kraemer, W. J. No effect of heavy resistance training and creatine supplementation on blood lipids. Int J Sport Nutr.Exerc.Metab 2000;10(2):144-156. PubMed
- Robinson, T. M., Sewell, D. A., Casey, A., Steenge, G., and Greenhaff, P. L. Dietary creatine supplementation does not affect some haematological indices, or indices of muscle damage and hepatic and renal function. Br.J Sports Med 2000;34(4):284-288. PubMed
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- Tarnopolsky, M. A. and MacLennan, D. P. Creatine monohydrate supplementation enhances high-intensity exercise performance in males and females. Int J Sport Nutr.Exerc.Metab 2000;10(4):452-463. PubMed
- Arciero, P. J., Hannibal, N. S., III, Nindl, B. C., Gentile, C. L., Hamed, J., and Vukovich, M. D. Comparison of creatine ingestion and resistance training on energy expenditure and limb blood flow. Metabolism 2001;50(12):1429-1434. PubMed
- Chrusch, M. J., Chilibeck, P. D., Chad, K. E., Davison, K. S., and Burke, D. G. Creatine supplementation combined with resistance training in older men. Med Sci.Sports Exerc. 2001;33(12):2111-2117. PubMed
- Cox, G., Mujika, I., Tumilty, D., and Burke, L. Acute creatine supplementation and performance during a field test simulating match play in elite female soccer players. Int J Sport Nutr.Exerc.Metab 2002;12(1):33-46. PubMed
- Kilduff, L. P., Vidakovic, P., Cooney, G., Twycross-Lewis, R., Amuna, P., Parker, M., Paul, L., and Pitsiladis, Y. P. Effects of creatine on isometric bench-press performance in resistance-trained humans. Med Sci.Sports Exerc. 2002;34(7):1176-1183. PubMed
- Brose, A., Parise, G., and Tarnopolsky, M. A. Creatine supplementation enhances isometric strength and body composition improvements following strength exercise training in older adults. J Gerontol A Biol.Sci.Med Sci. 2003;58(1):11-19. PubMed
- Volek, J. S., Ratamess, N. A., Rubin, M. R., Gomez, A. L., French, D. N., McGuigan, M. M., Scheett, T. P., Sharman, M. J., Hakkinen, K., and Kraemer, W. J. The effects of creatine supplementation on muscular performance and body composition responses to
- Tyler, T. F., Nicholas, S. J., Hershman, E. B., Glace, B. W., Mullaney, M. J., and McHugh, M. P. The effect of creatine supplementation on strength recovery after anterior cruciate ligament (ACL) reconstruction: a randomized, placebo-controlled, double-b DOI
- Groeneveld, G. J., Beijer, C., Veldink, J. H., Kalmijn, S., Wokke, J. H., and van den Berg, L. H. Few adverse effects of long-term creatine supplementation in a placebo-controlled trial. Int J Sports Med 2005;26(4):307-313. PubMed
- Astorino, T. A., Marrocco, A. C., Gross, S. M., Johnson, D. L., Brazil, C. M., Icenhower, M. E., and Kneessi, R. J. Is running performance enhanced with creatine serum ingestion? J Strength.Cond.Res 2005;19(4):730-734. PubMed
- Cramer, J. T., Stout, J. R., Culbertson, J. Y., and Egan, A. D. Effects of creatine supplementation and three days of resistance training on muscle strength, power output, and neuromuscular function. J Strength.Cond.Res 2007;21(3):668-677. PubMed
- Young, P., De, Jonghe P., Stogbauer, F., and Butterfass-Bahloul, T. Treatment for Charcot-Marie-Tooth disease. Cochrane.Database.Syst.Rev. 2008;(1):CD006052. PubMed
- Ostojic, S. M. and Ahmetovic, Z. Gastrointestinal distress after creatine supplementation in athletes: are side effects dose dependent? Res.Sports Med. 2008;16(1):15-22. PubMed
- Whitt, K. N., Ward, S. C., Deniz, K., Liu, L., Odin, J. A., and Qin, L. Cholestatic liver injury associated with whey protein and creatine supplements. Semin.Liver Dis. 2008;28(2):226-231. PubMed
- Koenig CA, Benardot D Cody M Thompson WR. Comparison of creatine monohydrate and carbohydrate supplementation on repeated jump height performance. J Strength Cond Res. 2008;22(4):1081-1086. PubMed
- Gordon, P. H., Cheung, Y. K., Levin, B., Andrews, H., Doorish, C., Macarthur, R. B., Montes, J., Bednarz, K., Florence, J., Rowin, J., Boylan, K., Mozaffar, T., Tandan, R., Mitsumoto, H., Kelvin, E. A., Chapin, J., Bedlack, R., Rivner, M., McCluskey, L.
- Bender, A., Samtleben, W., Elstner, M., and Klopstock, T. Long-term creatine supplementation is safe in aged patients with Parkinson disease. Nutr.Res. 2008;28(3):172-178. PubMed
- Parness, J. You're "hot" from pumping iron? Anesth.Analg. 2009;108(3):711-713. PubMed
- Gualano, B., Ferreira, D. C., Sapienza, M. T., Seguro, A. C., and Lancha, A. H., Jr. Effect of short-term high-dose creatine supplementation on measured GFR in a young man with a single kidney. Am.J.Kidney Dis. 2010;55(3):e7-e9. PubMed
- Saidi, H. and Mani, M. Severe metabolic acidosis secondary to coadministration of creatine and metformin, a case report. Am.J.Emerg.Med. 2010;28(3):388-6. PubMed
- Gualano, B., de, Salles Painelli, V, Roschel, H., Lugaresi, R., Dorea, E., Artioli, G. G., Lima, F. R., da Silva, M. E., Cunha, M. R., Seguro, A. C., Shimizu, M. H., Otaduy, M. C., Sapienza, M. T., da Costa, Leite C., Bonfa, E., and Lancha Junior, A. H.
- Neves, M., Jr., Gualano, B., Roschel, H., Lima, F. R., Lucia, de Sa-Pinto, Seguro, A. C., Shimizu, M. H., Sapienza, M. T., Fuller, R., Lancha, A. H., Jr., and Bonfa, E. Effect of creatine supplementation on measured glomerular filtration rate in postmeno
- Gufford, B. T., Sriraghavan, K., Miller, N. J., Miller, D. W., Gu, X., Vennerstrom, J. L., and Robinson, D. H. Physicochemical characterization of creatine N-methylguanidinium salts. J.Diet.Suppl 2010;7(3):240-252.
- Lugaresi, R., Leme, M., de, Salles Painelli, V, Murai, I. H., Roschel, H., Sapienza, M. T., Lancha Junior, A. H., and Gualano, B. Does long-term creatine supplementation impair kidney function in resistance-trained individuals consuming a high-protein di
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See these in context on the Phenethylamine (pea) monograph →
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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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