PWO Chocolate Ingredients & Drug Interactions
What is this page for?
First and foremost: checking PWO Chocolate 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
PWO Chocolate is a dietary supplement by Core Nutritionals with 12 active ingredients. Its ingredients are commonly taken for muscle recovery and sports performance, gut health and 'leaky gut', recovery from severe illness or injury.Based on those ingredients, 1,024 medications have a known interaction with it, the most serious rated moderate. The ingredients most likely to interact are Vitamin E, Vitamin C, Sodium. Use the checker below to test your specific medication, or read the full HelloPharmacist Interaction Report.
Check Your Meds Against PWO Chocolate by Core Nutritionals
Ask about any prescription or over-the-counter medication and we check it for interactions with PWO Chocolate by Core Nutritionals — 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 PWO Chocolate by Core Nutritionals
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
Partial disclosure
PWO Chocolate contains 10 active ingredients designed to support workout performance and recovery. L-glutamine, L-leucine, L-isoleucine, and L-valine are branched-chain and amino acids that play roles in muscle protein synthesis and recovery after exercise.
Taurine supports cardiovascular and muscular function. Sodium and potassium are electrolytes that replace what you lose through sweat during intense training.
Vitamin C supports immune function and acts as an antioxidant, while vitamin E also has antioxidant properties. The product also contains whey protein isolate (an inactive ingredient providing protein structure) along with carbohydrate sources like dextrose and maltodextrin for energy, cocoa powder for flavor, and sweeteners.
Does it work?
Not established
L-glutamine is rated effective for sickle cell disease and possibly effective for HIV/AIDS-related wasting, postoperative recovery, and critical illness from trauma, though this product is formulated as a pre-workout supplement rather than a therapeutic dose for those conditions. Sodium's role in the product relates to electrolyte replacement; the facts show it is likely effective for cystic fibrosis and possibly effective for amphotericin B nephrotoxicity, which are not typical pre-workout concerns.
Vitamin C is effective for vitamin C deficiency and possibly effective for exercise-induced respiratory infections and several other conditions. Vitamin E is effective for vitamin E deficiency and ataxia with vitamin E deficiency, and possibly effective for Alzheimer disease and several others.
Potassium and taurine have no effectiveness ratings in our data. We hold no effectiveness information for L-leucine, L-isoleucine, L-valine, or fiber.
How safe is it?
Well-documented data
L-glutamine is generally well tolerated in healthy adults but should be used only under medical supervision by people with kidney or liver disease; pregnant and nursing people should avoid supplemental doses unless a doctor recommends them. Common side effects include belching, bloating, constipation, diarrhea, flatulence, nausea, vomiting, and headache.
Sodium is generally well tolerated at normal dietary amounts but should not be supplemented in high doses without medical advice due to links to high blood pressure and heart strain. Vitamin C is generally safe at normal dietary and supplement doses; common side effects at high doses include abdominal cramps, heartburn, osmotic diarrhea, nausea, and vomiting, with kidney stones reported in those prone to them.
Potassium is generally well tolerated from food but supplements can cause dangerously high blood levels, especially in people with kidney disease. Taurine is generally well tolerated short-term in healthy adults, with common side effects being constipation, diarrhea, and dyspepsia; long-term safety is less certain.
Vitamin E is generally well tolerated but high-dose long-term supplements may raise bleeding risk; common concerns at high doses include bleeding, hemorrhagic stroke, and cardiovascular complications. Pregnancy and lactation safety varies by ingredient: L-glutamine is likely safe in pregnancy and lactation; sodium is likely safe in pregnancy but possibly unsafe in lactation; vitamin C is likely safe in pregnancy but possibly unsafe in lactation; potassium and taurine are likely safe in both; vitamin E is possibly safe in pregnancy and likely safe in lactation (but possibly unsafe at high doses during lactation).
Meds to double-check
Moderate interaction found
Check with your doctor or pharmacist before taking this product if you use anticoagulant or antiplatelet drugs (blood thinners), antihypertensive medications (blood pressure drugs), anticonvulsants (seizure medications), lithium, corticosteroids, or ACE inhibitors or angiotensin receptor blockers. Sodium and potassium content can interact with blood pressure and heart medications, while vitamin E increases bleeding risk with blood thinners.
Vitamin C can alter levels of birth control pills, thyroid medication, HIV drugs, and certain chemotherapy agents.
The bottom line
Scorecard at a glancePartially disclosed formula with no established evidence rating for its marketed use. Moderate medication interactions have been identified, and safety information is well characterized.
PWO Chocolate is a pre-workout formula combining amino acids, electrolytes, and antioxidant vitamins intended to support exercise performance and recovery. If you take any blood pressure medications, blood thinners, seizure drugs, thyroid medication, HIV medications, birth control, lithium, or other prescription drugs, you should check your exact medications against the interaction tool on this page before starting.
Talk with your doctor or pharmacist about whether this product is right for you, especially if you have kidney disease, liver disease, high blood pressure, or take multiple medications.
Educational only — not medical advice; always confirm with your pharmacist. Our editorial policy · How we use AI
Assessment coverage: 6 of 10 active ingredients matched to our full ingredient reviews (monographs). Based on the product label dated Jun 25, 2015.
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 PWO Chocolate, straight from the product label.
| Brand | Core Nutritionals |
|---|---|
| Barcode (UPC) | 850757001023 |
| Net contents | 1230 Gram(s); 2.71 lbs |
| Market status | On market |
| Date entered into DSLD | Jun 25, 2015 |
| DSLD ID | 46265 |
| Product type | Other Combinations |
| Supplement form | Powder |
| Dietary claims / uses | All Other, Structure/Function |
| Intended target group(s) | Adult (18 - 50 Years), Gluten Free |
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 PWO Chocolate by Core Nutritionals, sourced from the NIH Dietary Supplement Label Database.
Supplement Facts
| Ingredient | Amount | % DV |
|---|---|---|
| Calories | 295 {Calories} | -- |
| Total Carbohydrates | 43 Gram(s) | 14% |
| L-Glutamine | 2 Gram(s) | -- |
| Sugar | 23 Gram(s) | -- |
| Calories from Fat | 10 {Calories} | -- |
| Total Fat | 1 Gram(s) | 1% |
| Protein | 28 Gram(s) | 56% |
| Saturated Fat | 0 Gram(s) | -- |
| Sodium | 90 mg | 4% |
| Vitamin C | 250 mg | 417% |
| Potassium | 210 mg | 6% |
| Cholesterol | 0.9 Gram(s) | 1% |
| L-Leucine | 0 NP | -- |
| L-Isoleucine | 0 NP | -- |
| Taurine | 1 Gram(s) | -- |
| L-Valine | 0 NP | -- |
| Vitamin E | 100 IU | 333% |
| Branched-Chain Amino Acids | 4 Gram(s) | -- |
| Fiber | 0.3 Gram(s) | 1% |
Other ingredients: cross-flow microfiltered Whey Protein isolate, Dextrose, Maltodextrin, Cocoa powder, Branched-Chain Amino Acid Blend, Natural and/or Artificial flavors, Taurine, Ascorbic Acid, D-Alpha-Tocopherol Succinate, Sucralose
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
POST-WORKOUT RECOVERY MATRIX
ADDED FREE-FORM BCAAS FAST-ACTING PROTEIN AND CARB MATRIX GOURMET TASTE
NATURALLY & ARTIFICIALLY FLAVORED
When it comes to ideas on how to grow, fads, tricks, and disagreement are the name of the game. Ask ten, “gurus” and all ten will give you different responses, and each says the other is wrong. But Core Nutritionals wants to let you in on a secret: there is no big secret! There are, however, critical components to growth, such as excellent post-workout nutrition like Core PWO.
Core PWO contains the premium, fast-acting protein and carbohydrate sources to optimize your post-workout nutrition and supercharge your growth. Our post-workout matrix balances your needs in perfect proportion, including a healthy dose of BCAAs and antioxidants to expedite growth and recovery. In a world where, “what’s best” changes every ten minutes, stick with what works– Core PWO.
Manufactured in a cGMP Facility.
Made in the USA.
Formulation
NO FILLERS GLUTEN-FREE
FDA Statement of Identity
DIETARY SUPPLEMENT
Precautions
ALLERGEN STATEMENT: Processed is a facility that manufactures Peanut, Egg, and Tree Nut ingredients. Contains Milk and Soy (Lecithin).
WARNING: This product is only intended for use in healthy adults 18 years of age or older.
Pregnant or nursing women should not use this product. Consult your healthcare provider before using this product, especially if you are taking any prescription, over the counter medication, dietary supplement product , or if you have any pre-existing medical condition including but not limited to: high or low blood pressure, cardiac arrhythmia, stroke, heart, liver, kidney or thyroid disease, seizure disorder, psychiatric disease, diabetes, difficulty urinating due to prostate enlargement or if you are taking a MAOI (Monoamine Oxidase Inhibitor) or any other medication.
Discontinue use and consult your health care professional if you experience adverse reaction to this product. Do not exceed recommended serving. Do not use if safety seal is broken or missing.
Keep out of reach of children.
Suggested/Recommended/Usage/Directions
DIRECTIONS: Add 2 scoops to 8-12 oz cold water and shake or stir until mixed. Consume immediately after training.
Storage
Protect from heat, light and moisture Store at 10-25(0)C (50-77(0)F)
FDA Disclaimer Statement
These statements have not been evaluated by the Food and Drug Administration. This product is not intended to diagnose, treat, cure, or prevent any disease.
Seals/Symbols
American Flag
Brand IP Statement(s)
Crush It(R)
Is this label outdated? Report a formula or label change and our pharmacy team will review it.
PWO Chocolate by Core Nutritionals 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 PWO Chocolate by Core Nutritionals
These are the 12 active ingredients this product is made of. Select any to open its full monograph.
Serving size82 Gram(s) Dosage formPowder Servings per container15 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.
L-Glutamine
Interacts with50 drugs
Glutamine is the most abundant amino acid in the body and is usually made in your muscles. A prescription form is FDA-approved to help reduce sickle c...
L-Glutamine monograph & interactionsSugar
Protein
Sodium
Interacts with205 drugs
Sodium is an essential mineral and electrolyte your body needs to balance fluids, support nerves, and help muscles work. Most people in modern diets g...
Sodium monograph & interactionsVitamin C
Interacts with207 drugs
Vitamin C (ascorbic acid) is an essential nutrient your body needs but cannot make, so you must get it from food or supplements. It's important for im...
Vitamin C monograph & interactionsPotassium
Interacts with62 drugs
Potassium is an essential mineral your body needs for nerve signals, muscle function, and a steady heartbeat, and most people get enough from a balanc...
Potassium monograph & interactionsTaurine
Interacts with173 drugs
Taurine is an amino acid your body makes naturally and that you also get from animal foods. It is widely used in energy drinks and sports supplements,...
Taurine monograph & interactionsVitamin E
Interacts with764 drugs
Vitamin E is an essential fat-soluble vitamin and antioxidant that most people get in adequate amounts from a normal diet. Supplements can help correc...
Vitamin E monograph & interactionsBranched-Chain Amino Acids
- › L-Leucine
- › L-Isoleucine
- › L-Valine
Fiber
Other (inactive) ingredients: Cross-flow microfiltered Whey Protein isolate, Dextrose, Maltodextrin, Cocoa powder, Branched-Chain Amino Acid Blend, Natural and/or Artificial flavors, Taurine, Ascorbic Acid, D-Alpha-Tocopherol Succinate, Sucralose. These complete the product’s ingredient list but are not active constituents.
PWO Chocolate by Core Nutritionals Drug Interactions
HelloPharmacist Interaction Report
PWO Chocolate by Core Nutritionals has multiple documented interactions with medications, primarily through its L-glutamine, sodium, vitamin C, potassium, taurine, and vitamin E content.
The most serious interaction is L-glutamine's theoretical antagonism of anticonvulsant medications (seizure drugs), which could reduce their effectiveness—though this hasn't been reported in humans yet.
Read the full breakdown — every affected drug type, severity by severity
Sodium in this product interacts with several drug types: antihypertensive drugs (blood pressure medications), corticosteroids, lithium, didanosine, sodium phosphate products, tolvaptan, and any other sodium-containing drugs. High sodium intake can reduce blood pressure control, increase sodium retention, alter lithium levels dangerously, or raise sodium to unsafe levels.
Vitamin C interacts with estrogens (including birth control), certain chemotherapy drugs (alkylating agents and antitumor antibiotics), aluminum compounds, warfarin (a blood thinner), fluphenazine (an antipsychotic), indinavir (an HIV drug), and levothyroxine (thyroid medication)—potentially reducing or increasing their levels depending on the drug.
Potassium interacts with potassium-sparing diuretics, ACE inhibitors, and angiotensin receptor blockers—all blood pressure or heart medications—raising the risk of dangerously high potassium levels. Taurine may increase the blood-pressure-lowering effect of antihypertensive drugs or alter lithium levels.
Vitamin E interacts with blood thinners and antiplatelet drugs, certain chemotherapy agents, warfarin, cyclosporine (an immune suppressant), niacin, and selumetinib—with a major concern being increased bleeding risk at higher doses.
We could not check L-leucine, L-isoleucine, L-valine, and fiber for interactions—no data is on file for them. Use the search tool below to verify your exact medications against this product before starting.
Check your own medications below · Editorial policy · How we use AI
Want to check YOUR meds against PWO Chocolate?
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 PWO Chocolate interact with 1,024 drugs. Click any drug to see the details.
6 of the 12 ingredients in PWO Chocolate interact with drugs. Each result below shows which ingredient is responsible. Vitamin E Vitamin C Sodium Taurine Potassium L-Glutamine
Cabozantinib S-malateCabometyx
How Cabozantinib S-malate interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Cabozantinib S-malate interactionCaffeine (otc Drug)Molie, Overtime, Vivarin
How Caffeine (otc Drug) interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Caffeine (otc Drug) interactionCaffeine (prescription Drug)Caffeine, Dextrophin
How Caffeine (prescription Drug) interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Caffeine (prescription Drug) interactionCaffeine , Sodium BenzoateCaffeine and Sodium Benzoate
How Caffeine , Sodium Benzoate interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Caffeine , Sodium Benzoate interactionCaffeine, Diphenhydramine, Ergotamine (prescription Drug)Ergodryl
How Caffeine, Diphenhydramine, Ergotamine (prescription Drug) interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Caffeine, Diphenhydramine, Ergotamine (prescription Drug) interactionCaffeine, Ergotamine (prescription Drug)Migergot
How Caffeine, Ergotamine (prescription Drug) interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Caffeine, Ergotamine (prescription Drug) interactionCaffeine, Ergotamine Tartrate (prescription Drug)Cafergot, Wigraine
How Caffeine, Ergotamine Tartrate (prescription Drug) interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Caffeine, Ergotamine Tartrate (prescription Drug) interactionCaffeine, Potassium Salicylate, SalicylamideTrim-Elim
How Caffeine, Potassium Salicylate, Salicylamide interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Caffeine, Potassium Salicylate, Salicylamide interactionCalcifediolRayaldee
How Calcifediol interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Calcifediol interactionCandesartan CilexetilAmias, Atacand
How Candesartan Cilexetil interacts with PWO Chocolate — through 3 ingredients. Tap an ingredient for the detail:
TaurineAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taurine might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Taurine + Candesartan Cilexetil interactionSodiumAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, a high intake of dietary sodium might reduce the effectiveness of antihypertensive drugs.
Read the full Sodium + Candesartan Cilexetil interactionPotassiumAngiotensin Receptor Blockers (arbs) Moderate
Interaction Summary
Using ARBs with high doses of potassium increases the risk of hyperkalemia.
Read the full Potassium + Candesartan Cilexetil interactionCandesartan Cilexetil, HydrochlorothiazideAtacand HCT
How Candesartan Cilexetil, Hydrochlorothiazide interacts with PWO Chocolate — through 3 ingredients. Tap an ingredient for the detail:
PotassiumAngiotensin Receptor Blockers (arbs) Moderate
Interaction Summary
Using ARBs with high doses of potassium increases the risk of hyperkalemia.
Read the full Potassium + Candesartan Cilexetil, Hydrochlorothiazide interactionTaurineAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taurine might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Taurine + Candesartan Cilexetil, Hydrochlorothiazide interactionSodiumAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, a high intake of dietary sodium might reduce the effectiveness of antihypertensive drugs.
Read the full Sodium + Candesartan Cilexetil, Hydrochlorothiazide interactionCangrelorKengreal
How Cangrelor interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin EAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Concomitant use of vitamin E and anticoagulant or antiplatelet agents might increase the risk of bleeding.
Read the full Vitamin E + Cangrelor interactionCannabidiol (prescription Drug)Epidiolex
How Cannabidiol (prescription Drug) interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Cannabidiol (prescription Drug) interactionCapivasertibTruqap
How Capivasertib interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Capivasertib interactionCapmatinib HydrochlorideTabrecta
How Capmatinib Hydrochloride interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Capmatinib Hydrochloride interactionCaptoprilAcepril, Capoten
How Captopril interacts with PWO Chocolate — through 3 ingredients. Tap an ingredient for the detail:
TaurineAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taurine might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Taurine + Captopril interactionSodiumAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, a high intake of dietary sodium might reduce the effectiveness of antihypertensive drugs.
Read the full Sodium + Captopril interactionPotassiumAce Inhibitors (aceis) Moderate
Interaction Summary
Using ACEIs with high doses of potassium increases the risk of hyperkalemia.
Read the full Potassium + Captopril interactionCaptopril, HydrochlorothiazideAcezide, Capozide
How Captopril, Hydrochlorothiazide interacts with PWO Chocolate — through 3 ingredients. Tap an ingredient for the detail:
PotassiumAce Inhibitors (aceis) Moderate
Interaction Summary
Using ACEIs with high doses of potassium increases the risk of hyperkalemia.
Read the full Potassium + Captopril, Hydrochlorothiazide interactionTaurineAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taurine might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Taurine + Captopril, Hydrochlorothiazide interactionSodiumAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, a high intake of dietary sodium might reduce the effectiveness of antihypertensive drugs.
Read the full Sodium + Captopril, Hydrochlorothiazide interactionCarbamazepineCarbatrol, Carnexiv, Equetro, Tegretol, Tegretol XR
How Carbamazepine interacts with PWO Chocolate — through 2 ingredients. Tap an ingredient for the detail:
L-glutamineAnticonvulsants Moderate
Interaction Summary
Theoretically, glutamine might antagonize the effects of anticonvulsant medications.
Read the full L-glutamine + Carbamazepine interactionVitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Carbamazepine interactionCarbetapentane Tannate, Chlorpheniramine TannateTussi-12
How Carbetapentane Tannate, Chlorpheniramine Tannate interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Carbetapentane Tannate, Chlorpheniramine Tannate interactionCarbetapentane Tannate, Chlorpheniramine Tannate, Ephedrine Tannate, Phenylephrine TannateQuadratuss, Ry Tuss, Rynatuss, Tri Tannate Plus
How Carbetapentane Tannate, Chlorpheniramine Tannate, Ephedrine Tannate, Phenylephrine Tannate interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Carbetapentane Tannate, Chlorpheniramine Tannate, Ephedrine Tannate, Phenylephrine Tannate interactionCarbetapentane, Chlorpheniramine, PhenylephrineRicotuss
How Carbetapentane, Chlorpheniramine, Phenylephrine interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Carbetapentane, Chlorpheniramine, Phenylephrine interactionCarbetapentane, Chlorpheniramine, Phenylephrine, Phenylpropanolamine, Potassium GuaiacolsulfonateCophene-X
How Carbetapentane, Chlorpheniramine, Phenylephrine, Phenylpropanolamine, Potassium Guaiacolsulfonate interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Carbetapentane, Chlorpheniramine, Phenylephrine, Phenylpropanolamine, Potassium Guaiacolsulfonate interactionCarboplatinParaplatin
How Carboplatin interacts with PWO Chocolate — through 2 ingredients. Tap an ingredient for the detail:
Vitamin EAlkylating Agents Moderate
Interaction Summary
Theoretically, antioxidant effects of vitamin E might reduce the effectiveness of alkylating agents.
Read the full Vitamin E + Carboplatin interactionVitamin CAlkylating Agents Moderate
Interaction Summary
Theoretically, antioxidant effects of vitamin C might reduce the effectiveness of alkylating agents.
Read the full Vitamin C + Carboplatin interactionCariprazine HydrochlorideVraylar
How Cariprazine Hydrochloride interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Cariprazine Hydrochloride interactionCarmustineBiCNU, Gliadel, Gliadel Wafer
How Carmustine interacts with PWO Chocolate — through 2 ingredients. Tap an ingredient for the detail:
Vitamin EAlkylating Agents Moderate
Interaction Summary
Theoretically, antioxidant effects of vitamin E might reduce the effectiveness of alkylating agents.
Read the full Vitamin E + Carmustine interactionVitamin CAlkylating Agents Moderate
Interaction Summary
Theoretically, antioxidant effects of vitamin C might reduce the effectiveness of alkylating agents.
Read the full Vitamin C + Carmustine interactionCarteololCartrol, Ocupress
How Carteolol interacts with PWO Chocolate — through 2 ingredients. Tap an ingredient for the detail:
TaurineAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taurine might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Taurine + Carteolol interactionSodiumAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, a high intake of dietary sodium might reduce the effectiveness of antihypertensive drugs.
Read the full Sodium + Carteolol interactionCarvedilolCoreg, Coreg CR
How Carvedilol interacts with PWO Chocolate — through 2 ingredients. Tap an ingredient for the detail:
TaurineAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taurine might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Taurine + Carvedilol interactionSodiumAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, a high intake of dietary sodium might reduce the effectiveness of antihypertensive drugs.
Read the full Sodium + Carvedilol interactionCelecoxib, TramadolSeglentis
How Celecoxib, Tramadol interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
Vitamin ECytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Read the full Vitamin E + Celecoxib, Tramadol interactionCeliprololCelicard
How Celiprolol interacts with PWO Chocolate — through 2 ingredients. Tap an ingredient for the detail:
TaurineAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, taurine might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Taurine + Celiprolol interactionSodiumAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, a high intake of dietary sodium might reduce the effectiveness of antihypertensive drugs.
Read the full Sodium + Celiprolol interactionCenobamateXcopri
How Cenobamate interacts with PWO Chocolate — through 1 ingredient. Tap an ingredient for the detail:
L-glutamineAnticonvulsants Moderate
Interaction Summary
Theoretically, glutamine might antagonize the effects of anticonvulsant medications.
Read the full L-glutamine + Cenobamate interactionEach ingredient & the kinds of drugs it affects
For each ingredient in PWO Chocolate 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.
Vitamin E
Alkylating Agents
Theoretically, antioxidant effects of vitamin E might reduce the effectiveness of alkylating agents.
There's concern that antioxidants could reduce the activity of chemotherapy drugs which generate free radicals, such as cyclophosphamide, chlorambucil, carmustine, busulfan, and thiotepa. However, some researchers theorize that antioxidants might make chemotherapy more effective by reducing oxidative stress that might interfere with apoptosis (cell death) of cancer cells. More evidence is needed to determine what effect, if any, antioxidants such as vitamin E have on chemotherapy. Advise patients to consult their oncologist before using vitamin E supplements, especially in high doses.
Anticoagulant/Antiplatelet Drugs
Concomitant use of vitamin E and anticoagulant or antiplatelet agents might increase the risk of bleeding.
Vitamin E seems to inhibit of platelet aggregation and antagonize the effects of vitamin K-dependent clotting factors. These effects appear to be dose-dependent, and are probably only likely to be clinically significant with doses of at least 800 units daily. Mixed tocopherols, such as those found in food, might have a greater antiplatelet effect than alpha-tocopherol. RRR alpha-tocopherol (natural vitamin E) 1000 IU daily antagonizes vitamin K-dependent clotting factors. Advise patients to avoid high doses of vitamin E, especially in people with low vitamin K intake or other risk factors for bleeding.
Antitumor Antibiotics
Theoretically, antioxidant effects of vitamin E might reduce the effectiveness of antitumor antibiotics.
There's concern that antioxidants could reduce the activity of antitumor antibiotic drugs such as doxorubicin, which generate free radicals. However, some researchers theorize that antioxidants might make chemotherapy more effective by reducing oxidative stress that might interfere with apoptosis (cell death) of cancer cells. More evidence is needed to determine what effect, if any, antioxidants such as vitamin E have on chemotherapy involving antitumor antibiotics. Advise patients to consult their oncologist before using vitamin E supplements, especially in high doses.
Cyclosporine (Neoral, Sandimmune)
A specific form of vitamin E might increase absorption and levels of cyclosporine.
There is some evidence that one specific formulation of vitamin E (D-alpha-tocopheryl-polyethylene glycol-1000 succinate, TPGS, tocophersolan, Liqui-E) might increase absorption of cyclosporine. This vitamin E formulation forms micelles which seems to increase absorption of cyclosporine by 40% to 72% in some patients. However, this interaction is unlikely to occur with the usual forms of vitamin E.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Vitamin E appears to bind with the nuclear receptor, pregnane X receptor (PXR), which results in increased expression of CYP3A4. Although the clinical significance of this is not known, use caution when considering concomitant use of vitamin E and other drugs affected by these enzymes.
Selumetinib (Koselugo)
Taking selumetinib with vitamin E can result in a total daily dose of vitamin E that exceeds safe limits and therefore might increase the risk of bleeding.
Selumetinib contains 48-54 IU vitamin E per capsule. The increased risk of bleeding with vitamin E appears to be dose-dependent. Be cautious when using selumetinib in combination with supplemental vitamin E, especially in patients at higher risk of bleed, such as those with chronic conditions and those taking antiplatelet drugs.
Warfarin (Coumadin)
Using vitamin E with warfarin might increase the risk of bleeding.
Due to interference with production of vitamin K-dependent clotting factors, use of more than 400 IU of vitamin E daily with warfarin might increase prothrombin time (PT), INR, and the risk of bleeding,. At a dose of 1000 IU per day, vitamin E can antagonize vitamin K-dependent clotting factors even in people not taking warfarin. Limited clinical evidence suggests that doses up to 1200 IU daily may be used safely by patients taking warfarin, but this may not be applicable in all patient populations.
Niacin
Vitamin E might decrease the beneficial effects of niacin on high-density lipoprotein (HDL) cholesterol levels.
A combination of niacin and simvastatin (Zocor) effectively raises high-density lipoprotein (HDL) cholesterol levels in people with coronary disease and low HDL levels. Clinical research shows that taking a combination of antioxidants (vitamin C, vitamin E, beta-carotene, and selenium) along with niacin and simvastatin (Zocor) attenuates this rise in HDL, specifically the HDL-2 and apolipoprotein A1 fractions, by more than 50%. Vitamin E alone combined with a statin does not seem to decrease HDL levels. It is not known whether the adverse effect on HDL is due to one of the other antioxidants or to the combination. It also is not known whether it will occur in other patient populations.
Vitamin C
Alkylating Agents
Theoretically, antioxidant effects of vitamin C might reduce the effectiveness of alkylating agents.
The use of antioxidants like vitamin C during chemotherapy is controversial. There is concern that antioxidants could reduce the activity of chemotherapy drugs that generate free radicals, such as cyclophosphamide, chlorambucil, carmustine, busulfan, and thiotepa. In contrast, some researchers theorize that antioxidants might make chemotherapy more effective by reducing oxidative stress that could interfere with apoptosis (cell death) of cancer cells. More evidence is needed to determine what effect, if any, antioxidants such as vitamin C have on chemotherapy.
Aluminum
Vitamin C can increase the amount of aluminum absorbed from aluminum compounds.
Research in animals and humans shows that vitamin C increases aluminum absorption, theoretically by chelating aluminum and keeping it in solution where it is available for absorption. In people with normal renal function, urinary excretion of aluminum will likely increase, making aluminum retention and toxicity unlikely. Patients with renal failure who take aluminum-containing compounds such as phosphate binders should avoid vitamin C supplements in doses above the recommended dietary allowances.
Antitumor Antibiotics
Theoretically, the antioxidant effects of vitamin C might reduce the effectiveness of antitumor antibiotics.
The use of antioxidants like vitamin C during chemotherapy is controversial. There is concern that antioxidants could reduce the activity of chemotherapy drugs which generate free radicals, such as doxorubicin. In contrast, some researchers theorize that antioxidants might make chemotherapy more effective by reducing oxidative stress that could interfere with apoptosis (cell death) of cancer cells. More evidence is needed to determine what effects, if any, antioxidants such as vitamin C have on chemotherapy.
Estrogens
Vitamin C might increase blood levels of estrogens.
Increases in plasma estrogen levels of up to 55% occur under some circumstances when vitamin C is taken concurrently with oral contraceptives or hormone replacement therapy, including topical products. It is suggested that vitamin C prevents oxidation of estrogen in the tissues, regenerates oxidized estrogen, and reduces sulfate conjugation of estrogen in the gut wall. When tissue levels of vitamin C are high, these processes are already maximized and supplemental vitamin C does not have any effect on estrogen levels. Increases in plasma estrogen levels may occur when patients who are deficient in vitamin C take supplements. Monitor these patients for estrogen-related side effects.
Fluphenazine (Prolixin)
Theoretically, vitamin C might decrease levels of fluphenazine.
In one patient there was a clinically significant decrease in fluphenazine levels when vitamin C (500 mg twice daily) was started. The mechanism is not known, and there is no further data to confirm this interaction.
Indinavir (Crixivan)
Vitamin C can modestly reduce indinavir levels.
One pharmacokinetic study shows that taking vitamin C 1 gram orally once daily along with indinavir 800 mg orally three times daily reduces the area under the concentration-time curve of indinavir by 14%. The mechanism of this interaction is unknown, but it is unlikely to be clinically significant in most patients. The effect of higher doses of vitamin C on indinavir levels is unknown.
Levothyroxine (Synthroid, Others)
Vitamin C can increase levothyroxine absorption.
Two clinical studies in adults with poorly controlled hypothyroidism show that swallowing levothyroxine with a glass of water containing vitamin C 500-1000 mg in solution reduces thyroid stimulating hormone (TSH) levels and increases thyroxine (T4) levels when compared with taking levothyroxine alone. This suggests that vitamin C increases the oral absorption of levothyroxine, possibly due to a reduction in pH.
Warfarin (Coumadin)
High-dose vitamin C might reduce the levels and effectiveness of warfarin.
Vitamin C in high doses may cause diarrhea and possibly reduce warfarin absorption. There are reports of two people who took up to 16 grams daily of vitamin C and had a reduction in prothrombin time. Lower doses of 5-10 grams daily can also reduce warfarin absorption. In many cases, this does not seem to be clinically significant. However, a case of warfarin resistance has been reported for a patient who took vitamin C 500 mg twice daily. Cessation of vitamin C supplementation resulted in a rapid increase in international normalized ratio (INR). Tell patients taking warfarin to avoid taking vitamin C in excessively high doses (greater than 10 grams daily). Lower doses may be safe, but the anticoagulation activity of warfarin should be monitored. Patients who are stabilized on warfarin while taking vitamin C should avoid adjusting vitamin C dosage to prevent the possibility of warfarin resistance.
Acetaminophen (Tylenol, Others)
High-dose vitamin C might slightly prolong the clearance of acetaminophen.
A small pharmacokinetic study in healthy volunteers shows that taking high-dose vitamin C (3 grams) 1.5 hours after taking acetaminophen 1 gram slightly increases the apparent half-life of acetaminophen from around 2.3 hours to 3.1 hours. Ascorbic acid competitively inhibits sulfate conjugation of acetaminophen. However, to compensate, elimination of acetaminophen glucuronide and unconjugated acetaminophen increases. This effect is not likely to be clinically significant.
Aspirin
Acidification of the urine by vitamin C might increase aspirin levels.
It has been suggested that acidification of the urine by vitamin C could increase reabsorption of salicylates by the renal tubules, and increase plasma salicylate levels. However, short-term use of up to 6 grams daily of vitamin C does not seem to affect urinary pH or salicylate excretion, suggesting this interaction is not clinically significant.
Choline Magnesium Trisalicylate (Trilisate)
Acidification of the urine by vitamin C might increase choline magnesium trisalicylate levels.
It has been suggested that acidification of the urine by vitamin C could increase reabsorption of salicylates by the renal tubules, and increase plasma salicylate levels. However, short-term use of up to 6 grams daily of vitamin C does not seem to affect urinary pH or salicylate excretion, suggesting this interaction probably is not clinically significant.
Niacin
Vitamin C might decrease the beneficial effects of niacin on high-density lipoprotein (HDL) cholesterol levels.
A combination of niacin and simvastatin (Zocor) effectively raises HDL cholesterol levels in patients with coronary disease and low HDL levels. Clinical research shows that taking a combination of antioxidants (vitamin C, vitamin E, beta-carotene, and selenium) along with niacin and simvastatin (Zocor) attenuates this rise in HDL, specifically the HDL-2 and apolipoprotein A1 fractions, by more than 50% in patients with coronary disease. It is not known whether this adverse effect is due to a single antioxidant such as vitamin C, or to the combination. It also is not known whether it will occur in other patient populations.
Salsalate (Disalcid)
Acidification of the urine by vitamin C might increase salsalate levels.
It has been suggested that acidification of the urine by vitamin C could increase reabsorption of salicylates by the renal tubules, and increase plasma salicylate levels. However, short-term use of up to 6 grams/day vitamin C does not seem to affect urinary pH or salicylate excretion, suggesting this interaction probably is not clinically significant.
Sodium
Antihypertensive Drugs
Theoretically, a high intake of dietary sodium might reduce the effectiveness of antihypertensive drugs.
High intake of dietary sodium can increase systolic and diastolic blood pressure. Also, high intake of sodium may necessitate increased use of antihypertensive medications to achieve blood pressure control in some patients, such as those with chronic kidney disease.
Corticosteroids
Concomitant use of mineralocorticoids and some glucocorticoids with sodium supplements might increase the risk of hypernatremia.
Mineralocorticoids and some glucocorticoids (corticosteroids) cause sodium retention. This effect is dose-related and depends on mineralocorticoid potency. It is most common with hydrocortisone, cortisone, and fludrocortisone, followed by prednisone and prednisolone.
Didanosine (Videx)
Concomitant use of didanosine with additional sodium from dietary or supplemental sources may increase the risk of hypernatremia.
Didanosine formulations contain a significant amount of sodium.
Lithium
Altering dietary intake of sodium might alter the levels and clinical effects of lithium.
High sodium intake can reduce plasma concentrations of lithium by increasing lithium excretion. Reducing sodium intake can significantly increase plasma concentrations of lithium and cause lithium toxicity in patients being treated with lithium carbonate. Stabilizing sodium intake is shown to reduce the percentage of patients with lithium level fluctuations above 0.8 mEq/L. Patients taking lithium should avoid significant alterations in their dietary intake of sodium.
Sodium Phosphates
Theoretically, concomitant use of sodium phosphate with sodium supplements might increase the risk of hypernatremia.
Use of high doses (> 45 mL in 24 hours) of sodium phosphate, such as those used for bowel cleansing before surgery, can lead to serious electrolyte disturbances, including hypernatremia. The risk of hypernatremia is highest in the elderly and people with other risk factors for electrolyte disturbances.
Sodium-Containing Drugs
Concomitant use of sodium-containing drugs with additional sodium from dietary or supplemental sources may increase the risk of hypernatremia and long-term sodium-related complications.
The Chronic Disease Risk Reduction (CDRR) intake level of 2.3 grams of sodium daily indicates the intake at which it is believed that chronic disease risk increases for the apparently healthy population. Some medications contain high quantities of sodium. When used in conjunction with sodium supplements or high-sodium diets, the CDRR may be exceeded. Additionally, concomitant use may increase the risk for hypernatremia; this risk is highest in the elderly and people with other risk factors for electrolyte disturbances.
Tolvaptan (Samsca)
Theoretically, concomitant use of tolvaptan with sodium might increase the risk of hypernatremia.
Tolvaptan is a vasopressin receptor 2 antagonist that is used to increase sodium levels in patients with hyponatremia. Patients taking tolvaptan should use caution with the use of sodium salts such as sodium chloride.
Taurine
Antihypertensive Drugs
Theoretically, taurine might increase the risk of hypotension when taken with antihypertensive drugs.
Some clinical evidence suggests that taurine can reduce both systolic and diastolic blood pressure.
Lithium
Theoretically, taurine might reduce excretion and increase plasma levels of lithium.
Taurine is thought to have diuretic properties, which might reduce the excretion of lithium.
Potassium
Ace Inhibitors (Aceis)
Using ACEIs with high doses of potassium increases the risk of hyperkalemia.
ACEIs block the actions of the renin-angiotensin-aldosterone system and reduce potassium excretion. Concomitant use of these drugs with potassium supplements increases the risk of hyperkalemia. However, concomitant use of these drugs with moderate dietary potassium intake (about 3775-5200 mg daily) does not increase serum potassium levels.
Angiotensin Receptor Blockers (Arbs)
Using ARBs with high doses of potassium increases the risk of hyperkalemia.
ARBs block the actions of the renin-angiotensin-aldosterone system and reduce potassium excretion. Concomitant use of these drugs with potassium supplements increases the risk of hyperkalemia. However, concomitant use of these drugs with moderate dietary potassium intake (about 3775-5200 mg daily) does not increase serum potassium levels.
Potassium-Sparing Diuretics
Concomitant use increases the risk of hyperkalemia.
Using potassium-sparing diuretics with potassium supplements increases the risk of hyperkalemia.
L-Glutamine
Anticonvulsants
Theoretically, glutamine might antagonize the effects of anticonvulsant medications.
Glutamine is metabolized to the excitatory neurotransmitter glutamate. Glutamate might have antagonistic effects with anticonvulsant drugs. However, this interaction has not yet been reported in humans.
Brand information
Manufacturer and brand details for PWO Chocolate, from the product label.
Core Nutritionals
See all Core Nutritionals products- Name
- Core Nutritionals, LLC
- City
- Arlington
- State
- Virginia
- Phone Number
- (888) 978-2332
- Web Address
- www.CoreNutritionals.com
PWO Chocolate by Core Nutritionals: Common Questions
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Written and reviewed by the HelloPharmacist editorial staff. Our editorial policy
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The Full Monographs Behind PWO Chocolate’s Ingredients
Every ingredient we hold a full HelloPharmacist monograph for — uses, evidence, safety, and the complete interaction list.
Glutamine
Interacts with 50 drugsGlutamine is the most abundant amino acid in the body and is usually made in your muscles. A prescription form is FDA-approved to help reduce sickle cell disease complications, but for most...
Read the full Glutamine monograph → Herb & supplement monographSodium
Interacts with 205 drugsSodium is an essential mineral and electrolyte your body needs to balance fluids, support nerves, and help muscles work. Most people in modern diets get more than enough—often too much—from...
Read the full Sodium monograph → Herb & supplement monographVitamin C
Interacts with 207 drugsVitamin C (ascorbic acid) is an essential nutrient your body needs but cannot make, so you must get it from food or supplements. It's important for immune function, collagen, and acts as an...
Read the full Vitamin C monograph → Herb & supplement monographPotassium
Interacts with 62 drugsPotassium is an essential mineral your body needs for nerve signals, muscle function, and a steady heartbeat, and most people get enough from a balanced diet rich in fruits and vegetables. P...
Read the full Potassium monograph → Herb & supplement monographTaurine
Interacts with 173 drugsTaurine is an amino acid your body makes naturally and that you also get from animal foods. It is widely used in energy drinks and sports supplements, and short-term use appears generally sa...
Read the full Taurine monograph → Herb & supplement monographVitamin E
Interacts with 764 drugsVitamin E is an essential fat-soluble vitamin and antioxidant that most people get in adequate amounts from a normal diet. Supplements can help correct a true deficiency, but high-dose vitam...
Read the full Vitamin E monograph →Sources & How We Checked
PWO Chocolate'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 197 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.
Glutamine 11 references
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- Mebane AH. L-Glutamine and mania. Am J Psychiatry 984;141:1302-3.
- Meldrum BS. Glutamate as a neurotransmitter in the brain: review of physiology and pathology. J Nutr 2000;130:1007S-15S.. PubMed
- Garlick PJ. Assessment of the safety of glutamine and other amino acids. J Nutr 2001;131:2556S-61S.. PubMed
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- Ziegler TR. Glutamine supplementation in cancer patients receiving bone marrow transplantation and high dose chemotherapy. J Nutr 2001;131:2578S-84S.. PubMed
- Laviano A, Molfino A, Lacaria MT, Canelli A, De Leo S, Preziosa I, Rossi Fanelli F. Glutamine supplementation favors weight loss in nondieting obese female patients. A pilot study. Eur J Clin Nutr. 2014 Nov;68(11):1264-6. PubMed
- Endari (l-glutamine) [package insert]. Torrance, CA: Emmaus Medical,Inc; 2017.
- Niihara Y, Miller ST, Kanter J, et al. A Phase 3 Trial of l-Glutamine in Sickle Cell Disease. N Engl J Med 2018;379(3):226-35. doi: 10.1056/NEJMoa1715971.
- Ogden HB, Child RB, Fallowfield JL, et al. Gastrointestinal Tolerance of Low, Medium and High Dose Acute Oral l-Glutamine Supplementation in Healthy Adults: A Pilot Study. Nutrients. 2020;12(10):2953. PubMed
Sodium 38 references
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- Food and Drug Administration Science Background: Safety of Sodium Phosphates Oral Solution. September 17, 2001. Available at: http://www.fda.gov/cder/drug/safety/sodiumphospate.htm
- Coton T, Mallaret C, Coilliot C, Carre D, Guisset M. Severe acute ulcerated gastritis induced by salt. Presse Med 2009;38(3):499-500. PubMed
- Frings-Meuthen P, Buehlmeier J, Baecker N, et al. High sodium chloride intake exacerbates immobilization-induced bone resorption and protein losses. J Appl Physiol 2011;111(2):537-542. PubMed
- Frings-Meuthen P, Baecker N, Heer M. Low-grade metabolic acidosis may be the cause of sodium chloride-induced exaggerated bone resorption. J Bone Miner Res 2008;23(4):517-524. PubMed
- Alam S, Johnson AG. A meta-analysis of randomised controlled trials (RCT) among healthy normotensive and essential hypertensive elderly patients to determine the effect of high salt (NaCl) diet of blood pressure. J Hum Hypertens 1999;13(6):367-74.
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- Okusa MD, Crystal LJ. Clinical manifestations and management of acute lithium intoxication. Am J Med 1994;97(4):383-9. PubMed
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- D'Elia L, Rossi G, Ippolito R, Cappuccio FP, Strazzullo P. Habitual salt intake and risk of gastric cancer: a meta-analysis of prospective studies. Clin Nutr 2012;31(4):489-98. PubMed
- Goldsmith SR. Hyponatremia in heart failure: time for a trial. J Card Fail 2013;19(6):398-400. PubMed
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- Chen L, Zhang Z, Chen W, Whelton PK, Appel LJ. Lower Sodium Intake and Risk of Headaches: Results From the Trial of Nonpharmacologic Interventions in the Elderly. Am J Public Health. 2016;106(7):1270-5. PubMed
- Cook NR, Appel LJ, Whelton PK. Lower levels of sodium intake and reduced cardiovascular risk. Circulation. 2014;129(9):981-9. PubMed
- Cook NR, Appel LJ, Whelton PK. Sodium Intake and All-Cause Mortality Over 20 Years in the Trials of Hypertension Prevention. J Am Coll Cardiol. 2016;68(15):1609-1617. PubMed
- Mente A, O'Donnell M, Rangarajan S, et al. Associations of urinary sodium excretion with cardiovascular events in individuals with and without hypertension: a pooled analysis of data from four studies. Lancet. 2016;388(10043):465-75. PubMed
- Moosavian SP, Haghighatdoost F, Surkan PJ, Azadbakht L. Salt and obesity: a systematic review and meta-analysis of observational studies. Int J Food Sci Nutr. 2017;68(3):265-277. PubMed
- O'Donnell M, Mente A, Rangarajan S, et al. Urinary sodium and potassium excretion, mortality, and cardiovascular events. N Engl J Med. 2014;371(7):612-23. DOI
- Poggio R, Gutierrez L, Matta MG, Elorriaga N, Irazola V, Rubinstein A. Daily sodium consumption and CVD mortality in the general population: systematic review and meta-analysis of prospective studies. Public Health Nutr. 2015;18(4):695-704. PubMed
- Stallings VA, Harrison M, Oria M; Committee to Review the Dietary Reference Intakes for Sodium and Potassium, Food and Nutrition Board, Health and Medicine Division, National Academies of Sciences, Engineering, and Medicine. Washington (DC): National Acad
- Mahtani KR, Heneghan C, Onakpoya I, et al. Reduced Salt Intake for Heart Failure: A Systematic Review. JAMA Intern Med. 2018 Dec 1;178(12):1693-1700. PubMed
- Yancy CW. Sodium Restriction in Heart Failure: Too Much Uncertainty-Do the Trials. JAMA Intern Med. 2018 Dec 1;178(12):1700-1701. PubMed
- He FJ, Campbell NRC, Ma Y, MacGregor GA, Cogswell ME, Cook NR. Errors in estimating usual sodium intake by the Kawasaki formula alter its relationship with mortality: implications for public health. Int J Epidemiol. 2018;47(6):1784-1795. PubMed
- Murthy K, Ondrey GJ, Malkani N, et al. THE EFFECTS OF HYPONATREMIA ON BONE DENSITY AND FRACTURES: A SYSTEMATIC REVIEW AND META-ANALYSIS. Endocr Pract. 2019;25(4):366-378. PubMed
- Messerli FH, Hofstetter L, Syrogiannouli L, et al. Sodium intake, life expectancy, and all-cause mortality. Eur Heart J 2021;42(21):2103-2112. PubMed
- Graudal NA, Hubeck-Graudal T, Jurgens G. Effects of low sodium diet versus high sodium diet on blood pressure, renin, aldosterone, catecholamines, cholesterol, and triglyceride. Cochrane Database Syst Rev 2020;12(12):CD004022. PubMed
- Giatti S, Santos RB, Aielo AN, et al. Association of sodium with obstructive sleep apnea. The ELSA-Brasil study. Ann Am Thorac Soc 2021;18(3):502-510. PubMed
- Nan X, Lu H, Wu J, et al. The interactive association between sodium intake, alcohol consumption and hypertension among elderly in northern China: a cross-sectional study. BMC Geriatr 2021;21(1):135. PubMed
- Kyozuka H, Fukusda T, Murata T, et al. Impact of preconception sodium intake on hypertensive disorders of pregnancy: The Japan Environment and Children's study. Pregnancy Hypertens 2021;23:66-72. PubMed
- Zhao L, Ogden CL, Yang Q, et al. Association of usual sodium intake with obesity among US children and adolescents, NHANES 2009-2016. Obesity (Silver Spring) 2021;29(3):587-594. PubMed
- Ma Y, He FJ, Sun Q, et al. 24-Hour urinary sodium and potassium excretion and cardiovascular risk. N Engl J Med 2022;386(3):252-263. PubMed
- Liu J, Yang X, Zhang P, et al. Association of urinary sodium excretion and left ventricular hypertrophy in people with type 2 diabetes mellitus: A cross-sectional study. Front Endocrinol (Lausanne) 2021;12:728493. PubMed
- Filippini T, Malavolti M, Whelton PK, Vinceti M. Sodium intake and risk of hypertension: A systematic review and dose-response meta-analysis of observational cohort studies. Curr Hypertens Rep 2022;24(5):133-144. PubMed
- Wang DD, Li Y, Nguyen XT, et al. Dietary sodium and potassium intake and risk of non-fatal cardiovascular diseases: The million veteran program. Nutrients 2022;14(5):1121. PubMed
- Kwak JH, Park CH, Eun CS, et al. The associations of dietary intake of high sodium and low zinc with gastric cancer mortality: A prospective cohort study in Korea. Nutr Cancer 2022;74(10):3501-3508. PubMed
- George S, Maiti R, Mishra BR, Jena M, Mohapatra D. Effect of regulated add-on sodium chloride intake on stabilization of serum lithium concentration in bipolar disorder: A randomized controlled trial. Bipolar Disord 2023;25(1):66-75. PubMed
- Zhou TL, Schütten MTJ, Kroon AA, et al. Urinary Sodium Excretion and Salt Intake Are Not Associated With Blood Pressure Variability in a White General Population. J Am Heart Assoc 2023;12(1):e026578. PubMed
Vitamin C 51 references
- McEvoy GK, ed. AHFS Drug Information. Bethesda, MD: American Society of Health-System Pharmacists, 1998.
- Back DJ, Breckenridge AM, MacIver M, et al. Interaction of ethinyloestradiol with ascorbic acid in man. Br Med J (Clin Res Ed) 1981;282:1516.
- Morris JC, Beeley L, Ballantine N. Interaction of ethinyloestradiol with ascorbic acid in man [letter]. Br Med J (Clin Res Ed) 1981;283:503.
- Labriola D, Livingston R. Possible interactions between dietary antioxidants and chemotherapy. Oncology 1999;13:1003-8.
- Dwyer JH, Merz NB, Shirocre AM, et al. Progression of early atherosclerosis and intake of vitamin C and vitamin E from supplements and food. The Los Angeles Atherosclerosis Study. 41st Annual Conference on Cardiovascular Disease Epidemiology and Prevent
- Levine M, Rumsey SC, Daruwala R, et al. Criteria and recommendations for vitamin C intake. JAMA 1999;281:1415-23. PubMed
- Hansten PD, Horn JR. Drug Interactions Analysis and Management. Vancouver, WA: Applied Therapeutics Inc., 1997 and updates.
- Segal S, Kaminski S. Drug-nutrient interactions. American Druggist 1996 Jul;42-8.
- Food and Nutrition Board, Institute of Medicine. Dietary Reference Intakes for Vitamin C, Vitamin E, Selenium, and Carotenoids. Washington, DC: National Academy Press, 2000. Available at: http://www.nap.edu/books/0309069351/html/.
- Houston JB, Levy G. Drug biotransformation interactions in man VI: Acetaminophen and ascorbic acid. J Pharm Sci 1976;65:1218-21. PubMed
- Brown BG, Zhao XQ, Chait A, et al. Simvastatin and niacin, antioxidant vitamins, or the combination for the prevention of coronary disease. N Engl J Med 2001;345:1583-93. DOI
- Rosenthal G. Interaction of ascorbic acid and warfarin. JAMA 1971;215:1671. DOI
- Hume R, Johnstone JM, Weyers E. Interaction of ascorbic acid and warfarin. JAMA 1972;219:1479. DOI
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