Universal Food-Zyme Ingredients & Drug Interactions
What is this page for?
First and foremost: checking Universal Food-Zyme 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
Universal Food-Zyme is a dietary supplement by Nature's Plus with 31 active ingredients. Its ingredients are commonly taken for digestive support for protein digestion, wound cleaning (debridement of dead tissue), sore throat and inflammation.Based on those ingredients, 1,382 medications have a known interaction with it, the most serious rated moderate. The ingredients most likely to interact are Turmeric, Beet, Nattokinase. Use the checker below to test your specific medication, or read the full HelloPharmacist Interaction Report.
Check Your Meds Against Universal Food-Zyme by Nature's Plus
Ask about any prescription or over-the-counter medication and we check it for interactions with Universal Food-Zyme by Nature's Plus — 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 Universal Food-Zyme by Nature's Plus
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
Universal Food-Zyme contains 31 ingredients, of which the active components are digestive enzymes and plant materials. The main active ingredients are papain (from papaya), bromelain (from pineapple), and proteolytic enzymes (proteases), along with other carbohydrate and fat-digesting enzymes such as cellulase, amylase, lipase, and phytase.
The product also includes whole foods like banana, beet, turmeric, cherry, mango, and raspberry. The remaining ingredients are inactive excipients—silica, microcrystalline cellulose, vegetable cellulose, a mineral complex, and purified water—that serve as fillers and capsule materials.
Does it work?
Moderate evidence
The evidence for Universal Food-Zyme's effectiveness is sparse and mixed. Beet shows possibly effective evidence for athletic performance and exercise-related muscle soreness.
Turmeric is possibly effective for depression, high cholesterol, hay fever, and upset stomach. Banana is possibly effective for diarrhea.
For most other conditions the product or its ingredients have been studied for—cancer, burns, diabetes, heart disease, and many others—the evidence is insufficient to rate them. The ingredients do not have established effectiveness for general digestive support as claimed on many enzyme supplement labels.
How safe is it?
Well-documented data
Most ingredients in this product are generally well tolerated when taken short-term at typical doses. However, several important cautions apply.
Papain can cause allergic reactions, heartburn, and digestive upset, and high doses may cause serious conditions like esophageal perforation. Bromelain commonly causes diarrhea, gas, and stomach upset.
Turmeric has been linked to at least 70 cases of liver damage with prolonged use. Beet may cause red or black stools (harmless) but rarely can cause low calcium or kidney damage in large amounts.
Nattokinase carries a bleeding risk and has been associated with rare hemorrhage. Phytase occupational exposure causes respiratory allergies, though oral supplement data are limited.
Fructooligosaccharides frequently cause bloating, gas, and abdominal pain. Pregnancy and breastfeeding safety varies by ingredient: papain, bromelain, and nattokinase should be avoided in both; papaya is likely safe in pregnancy but possibly unsafe at high doses; turmeric is likely safe in both; banana and beet are likely safe as food in pregnancy and lactation.
For most other ingredients, safety data during pregnancy and breastfeeding are insufficient.
Meds to double-check
Moderate interaction found
Check before taking this product if you use warfarin or other blood thinners and antiplatelet drugs (papain, papaya, bromelain, nattokinase carry Moderate risk of increased bleeding). Also check if you take heart medications (especially amiodarone), antidiabetes drugs, levothyroxine (thyroid), blood-pressure medications, liver enzyme substrates (especially CYP3A4 inhibitor-sensitive drugs), chemotherapy drugs, tacrolimus, sulfasalazine, methotrexate, tamoxifen, tramadol, or levodopa.
No interactions are documented for the ingredients we could not check—cellulase, invertase, xylanase, pectinase, pineapple, raspberry, cherry, hemicellulase, diastase, amyloglucosidase, mango, or amylase—but absence of documented interactions is not a guarantee none exist.
The bottom line
Scorecard at a glanceFormula with limited ingredient disclosure with some supporting evidence for its stated purpose. Moderate medication interactions have been identified, and safety information is well characterized.
This multi-ingredient enzyme and food supplement is most suitable for people seeking digestive support from whole-food sources and who are not taking medications that interact with its ingredients. If you take warfarin or other blood thinners, antidiabetes drugs, heart or thyroid medications, chemotherapy, tacrolimus, methotrexate, or levodopa, you should check your specific medications against the interaction tool before use.
Talk to your pharmacist or doctor if you have liver disease, a bleeding disorder, or are pregnant or breastfeeding.
Educational only — not medical advice; always confirm with your pharmacist. Our editorial policy · How we use AI
Assessment coverage: 15 of 31 active ingredients matched to our full ingredient reviews (monographs). Based on the product label dated Aug 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 Universal Food-Zyme, straight from the product label.
| Brand | Nature's Plus |
|---|---|
| Barcode (UPC) | 097467044593 |
| Net contents | 90 Vegetarian Capsule(s) |
| Market status | Off market |
| Date entered into DSLD | Aug 25, 2015 |
| DSLD ID | 49399 |
| Product type | Other Combinations |
| Supplement form | Capsule |
| Dietary claims / uses | All Other, Structure/Function |
| Intended target group(s) | Vegetarian, 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 Universal Food-Zyme by Nature's Plus, sourced from the NIH Dietary Supplement Label Database.
Supplement Facts
| Ingredient | Amount | % DV |
|---|---|---|
| Papain | 50 mg | -- |
| Bromelain | 50 mg | -- |
| Fructooligosaccharides | 0 NP | -- |
| Cellulase | 0 NP | -- |
| Invertase | 0 NP | -- |
| Xylanase | 0 NP | -- |
| Pectinase | 0 NP | -- |
| Pineapple | 0 NP | -- |
| Beet | 0 NP | -- |
| Raspberry | 0 NP | -- |
| Cherry | 0 NP | -- |
| Papaya | 0 NP | -- |
| Phytase | 0 NP | -- |
| Hemicellulase | 0 NP | -- |
| Diastase | 5 mg | -- |
| Amyloglucosidase | 0 NP | -- |
| Nattokinase | 0 NP | -- |
| Turmeric | 0 NP | -- |
| Mango | 0 NP | -- |
| Banana | 0 NP | -- |
| Amylase | 75 mg | -- |
| Lipase | 75 mg | -- |
| Enzyme-Rich Whole Food Blend | 200 mg | -- |
| Protease | 30 mg | -- |
| Cellulase | 50 mg | -- |
| Lactospore(R) | 0 NP | -- |
| Date | 0 NP | -- |
| Lactase | 75 mg | -- |
| Activessence | 25 mg | -- |
| Oxidase | 15 mg | -- |
| Phosphatase | 10 mg | -- |
| Maltase | 5 mg | -- |
| Proprietary Probiotic Blend | 300 mg | -- |
| Lactobacillus acidophilus | 0 NP | -- |
| Nzym-5 | 75 mg | -- |
Other ingredients: Silica, Microcrystalline Cellulose, Vegetable Cellulose, Source-70 Soluble Mineral Complex, purified Water
Tap any ingredient to jump to its full detail below.
These statements are the manufacturer’s wording, reproduced from the product label — the label is saying it, not HelloPharmacist. We don’t verify or endorse them.
Brand IP Statement(s)
The Energy Supplements(R)
(C)NATURAL ORGANICS(R)
Nature’s Plus(R) Universal Food-Zyme(TM) is the most comprehensive whole food digestive and systemic enzyme supplement ever developed.
Activessence(R) is a registered trademark of Triarco Industries, Inc. and protected by U.S. patents. Lactospore(R) is a registered trademark of Sabinsa Corp. Vcaps(R)is a trademark of Capsugel(R)
General Statements
Live plant food enzymes
With Active Enzymes, Whole Foods and Probiotics
Nutritional Support for Healthy Digestion and Overall Well-Being.*
For overall well-being from the inside out, choose Universal Food-Zyme!
Designed as a natural digestive aid.
FDA Statement of Identity
Dietary Supplement
Formula
Featuring Activessence
Power-packed with Nzym-5, patented Activessence(R) and live probiotics, Universal Food-Zyme liberates the energizing nutrition trapped in foods while balancing the GI tract for optimal absorption. Infused with Source-70 (prehistoric, vegetable-derived trace elements) and a multitude of enzymes from eight fruits and vegetables, Universal Food-Zyme is a digestive powerhouse that taps into the digestive power of plants.
Formulation
Gluten free
Vegetarian
Free from artificial colors and preservatives.
Suggested/Recommended/Usage/Directions
Directions: As a dietary supplement, take two capsules with a meal.
Storage
Keep tightly closed. Refrigerate after opening.
Precautions
Keep out of reach of children.
FDA Disclaimer Statement
*This statement has not been evaluated by the Food and Drug Administration. This product is not intended to diagnose, treat, cure or prevent any disease.
Seals/Symbols
Vcaps(R)
General
Product No. 4459 LBL. 1132693
Is this label outdated? Report a formula or label change and our pharmacy team will review it.
Universal Food-Zyme by Nature's Plus 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 Universal Food-Zyme by Nature's Plus
These are the 31 active ingredients this product is made of. Select any to open its full monograph.
Serving size2 Capsule(s) Dosage formCapsule Servings per container45 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.
Papain
Interacts with2 drugs
Papain is a protein-digesting enzyme from the papaya plant that is used in digestive supplements and some topical products. While it has clear food an...
Papain monograph & interactionsBromelain
Interacts with141 drugs
Bromelain is a group of protein-digesting enzymes from pineapple that people take mainly for inflammation, swelling, and sinus problems. Some early st...
Bromelain monograph & interactionsDiastase
Amylase
Lipase
No knowninteractions
Lipase is a digestive enzyme that helps your body break down dietary fats. It is well established as part of prescription pancreatic enzyme therapy fo...
Lipase monograph & interactionsEnzyme-Rich Whole Food Blend
Protease
No knowninteractions
Proteolytic enzymes are proteins that help break down other proteins, and common examples include bromelain (from pineapple), papain (from papaya), tr...
Protease monograph & interactionsCellulase
Lactase
No knowninteractions
Lactase is a digestive enzyme supplement that helps people who lack enough natural lactase break down lactose, the sugar in milk and dairy. It can red...
Lactase monograph & interactionsActivessence
- › Cellulase
- › Xylanase
- › Pectinase
- › Hemicellulase
Oxidase
Phosphatase
Maltase
Proprietary Probiotic Blend
Nzym-5
- › Invertase
- › Phytase
- › Amyloglucosidase
- › Nattokinase
- › Turmeric
Other (inactive) ingredients: Silica, Microcrystalline Cellulose, Vegetable Cellulose, Source-70 Soluble Mineral Complex, Purified Water. These complete the product’s ingredient list but are not active constituents.
Universal Food-Zyme by Nature's Plus Drug Interactions
HelloPharmacist Interaction Report
Universal Food-Zyme by Nature's Plus contains several digestive enzymes and food ingredients, some of which interact with medications.
The most serious concern is turmeric, which has multiple Moderate-severity interactions across eight drug types. Turmeric may reduce the effectiveness of chemotherapy drugs (topoisomerase I inhibitors and antitumor antibiotics), increase levels and effects of tacrolimus and sulfasalazine, reduce tamoxifen's effectiveness, potentially increase tramadol levels, and theoretically increase levels of certain kidney-clearing drugs (OATP substrates).
It may also have additive liver toxicity with methotrexate.
Read the full breakdown — every affected drug type, severity by severity
Several other ingredients carry Moderate interactions: papain and papaya both interact with warfarin (a blood thinner), increasing its effects and bleeding risk. Papaya also interacts with antidiabetes drugs (additive blood-sugar lowering), amiodarone (heart rhythm medication), and levothyroxine (thyroid medication).
Bromelain (from pineapple) interacts with blood thinners and antiplatelet drugs, raising bleeding risk, and may increase tetracycline antibiotic levels (Minor severity). Nattokinase carries Moderate risk with blood thinners and antihypertensive drugs.
Beet interacts with liver enzyme (CYP3A4) substrates, potentially raising their levels (Moderate), and theoretically with blood-pressure medications and another enzyme system (both Minor).
Banana has one Moderate interaction: it may reduce levodopa effectiveness in Parkinson's disease. We could not check cellulase, invertase, xylanase, pectinase, pineapple, raspberry, cherry, hemicellulase, diastase, amyloglucosidase, mango, or amylase for interactions—no data are on file for these.
Altogether, these interactions span 1,361 individual medications. Use the medication checker below with your exact prescriptions before starting this product.
Check your own medications below · Editorial policy · How we use AI
Want to check YOUR meds against Universal Food-Zyme?
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 Universal Food-Zyme interact with 1,382 drugs. Click any drug to see the details.
9 of the 31 ingredients in Universal Food-Zyme interact with drugs. Each result below shows which ingredient is responsible. Turmeric Beet Nattokinase Lactospore(R) Lactobacillus acidophilus Bromelain Papaya Banana Papain
Afatinib DimaleateGilotrif
How Afatinib Dimaleate interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Afatinib Dimaleate interactionAgomelatineValdoxan
How Agomelatine interacts with Universal Food-Zyme — through 2 ingredients. Tap an ingredient for the detail:
TurmericCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, turmeric might increase levels of drugs metabolized by CYP1A2.
Read the full Turmeric + Agomelatine interactionBeetCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Beet + Agomelatine interactionAlvimopanEntereg
How Alvimopan interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Alvimopan interactionApomorphineAPO-go, APO-go Pen, APO-go PFS, Apokyn, Uprima
How Apomorphine interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Apomorphine interactionApomorphine HydrochlorideKynmobi
How Apomorphine Hydrochloride interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Apomorphine Hydrochloride interactionAsenapineSaphris, Secuado
How Asenapine interacts with Universal Food-Zyme — through 2 ingredients. Tap an ingredient for the detail:
TurmericCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, turmeric might increase levels of drugs metabolized by CYP1A2.
Read the full Turmeric + Asenapine interactionBeetCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Beet + Asenapine interactionAtropine, Morphine SulfateAtropine, Morphine Sulfate
How Atropine, Morphine Sulfate interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Atropine, Morphine Sulfate interactionAvatrombopag MaleateDoptelet
How Avatrombopag Maleate interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Avatrombopag Maleate interactionBerotralstat HydrochlorideOrladeyo
How Berotralstat Hydrochloride interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Berotralstat Hydrochloride interactionBetamethasoneCelestone, Diprolene AF, Diprosone
How Betamethasone interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Betamethasone interactionBetamethasone DipropionateSernivo
How Betamethasone Dipropionate interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Betamethasone Dipropionate interactionBetamethasone Dipropionate, CalcipotrieneEnstilar, Wynzora
How Betamethasone Dipropionate, Calcipotriene interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Betamethasone Dipropionate, Calcipotriene interactionBetamethasone ValerateLuxiq
How Betamethasone Valerate interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Betamethasone Valerate interactionChlordiazepoxideLibrium
How Chlordiazepoxide interacts with Universal Food-Zyme — through 2 ingredients. Tap an ingredient for the detail:
BeetCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Beet + Chlordiazepoxide interactionTurmericCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, turmeric might increase levels of drugs metabolized by CYP1A2.
Read the full Turmeric + Chlordiazepoxide interactionChlordiazepoxide, Clidinium BromideLibrax
How Chlordiazepoxide, Clidinium Bromide interacts with Universal Food-Zyme — through 2 ingredients. Tap an ingredient for the detail:
TurmericCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, turmeric might increase levels of drugs metabolized by CYP1A2.
Read the full Turmeric + Chlordiazepoxide, Clidinium Bromide interactionBeetCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Beet + Chlordiazepoxide, Clidinium Bromide interactionCimetidineCimetidine Injection, Tagamet, Tagamet HB
How Cimetidine interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Cimetidine interactionClobetasolClobex, Temovate
How Clobetasol interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Clobetasol interactionClozapineClozaril, Versacloz
How Clozapine interacts with Universal Food-Zyme — through 2 ingredients. Tap an ingredient for the detail:
TurmericCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, turmeric might increase levels of drugs metabolized by CYP1A2.
Read the full Turmeric + Clozapine interactionBeetCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Beet + Clozapine interactionCortisone AcetateCortisone Tablets, Cortone
How Cortisone Acetate interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Cortisone Acetate interactionDesipramineDesipramine, Norpramin, Pertofrane
How Desipramine interacts with Universal Food-Zyme — through 2 ingredients. Tap an ingredient for the detail:
TurmericCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, turmeric might increase levels of drugs metabolized by CYP1A2.
Read the full Turmeric + Desipramine interactionBeetCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Beet + Desipramine interactionDigoxinDigitek, Lanoxicaps, Lanoxin
How Digoxin interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Digoxin interactionDolutegravirTivicay
How Dolutegravir interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Dolutegravir interactionDomperidoneMotilium
How Domperidone interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Domperidone interactionEphedrine Sulfate, Hydroxyzine, TheophyllineHydroxy Compound
How Ephedrine Sulfate, Hydroxyzine, Theophylline interacts with Universal Food-Zyme — through 2 ingredients. Tap an ingredient for the detail:
BeetCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Beet + Ephedrine Sulfate, Hydroxyzine, Theophylline interactionTurmericCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, turmeric might increase levels of drugs metabolized by CYP1A2.
Read the full Turmeric + Ephedrine Sulfate, Hydroxyzine, Theophylline interactionEphedrine, Guaifenesin, Phenobarbital, TheophyllineMudrane GG
How Ephedrine, Guaifenesin, Phenobarbital, Theophylline interacts with Universal Food-Zyme — through 2 ingredients. Tap an ingredient for the detail:
TurmericCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, turmeric might increase levels of drugs metabolized by CYP1A2.
Read the full Turmeric + Ephedrine, Guaifenesin, Phenobarbital, Theophylline interactionBeetCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Beet + Ephedrine, Guaifenesin, Phenobarbital, Theophylline interactionEphedrine, Hydroxyzine, TheophyllineAmi Rax, Marax
How Ephedrine, Hydroxyzine, Theophylline interacts with Universal Food-Zyme — through 2 ingredients. Tap an ingredient for the detail:
TurmericCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, turmeric might increase levels of drugs metabolized by CYP1A2.
Read the full Turmeric + Ephedrine, Hydroxyzine, Theophylline interactionBeetCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Beet + Ephedrine, Hydroxyzine, Theophylline interactionEstradiol, NorgestimateOrtho-Prefest
How Estradiol, Norgestimate interacts with Universal Food-Zyme — through 2 ingredients. Tap an ingredient for the detail:
TurmericCytochrome P450 1a2 (cyp1a2) Substrates, P-glycoprotein Substrates +1 Minor
Interaction Summary
Theoretically, turmeric might increase levels of drugs metabolized by CYP1A2.
Read the full Turmeric + Estradiol, Norgestimate interactionBeetCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Beet + Estradiol, Norgestimate interactionEstroneOrtho-Est
How Estrone interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericEstrogens Minor
Interaction Summary
Theoretically, large amounts of turmeric might interfere with hormone replacement therapy through competition for estrogen receptors.
Read the full Turmeric + Estrone interactionEstropipateOgen, Ortho EST
How Estropipate interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericEstrogens Minor
Interaction Summary
Theoretically, large amounts of turmeric might interfere with hormone replacement therapy through competition for estrogen receptors.
Read the full Turmeric + Estropipate interactionFam-trastuzumab, Deruxtecan-nxkiEnhertu
How Fam-trastuzumab, Deruxtecan-nxki interacts with Universal Food-Zyme — through 1 ingredient. Tap an ingredient for the detail:
TurmericP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
Read the full Turmeric + Fam-trastuzumab, Deruxtecan-nxki interactionEach ingredient & the kinds of drugs it affects
For each ingredient in Universal Food-Zyme 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.
Turmeric
Alkylating Agents
Turmeric has antioxidant effects. Theoretically, this may reduce the activity of chemotherapy drugs that generate free radicals. However, research is conflicting.
In vitro research suggests that curcumin, a constituent of turmeric, inhibits mechlorethamine-induced apoptosis of breast cancer cells by up to 70%. Also, animal research shows that curcumin inhibits cyclophosphamide-induced tumor regression. However, some in vitro research shows that curcumin does not affect the apoptosis capacity of etoposide. Also, other laboratory research suggests that curcumin might augment the cytotoxic effects of alkylating agents. Reasons for the discrepancies may relate to the dose of curcumin and the specific chemotherapeutic agent. Lower doses of curcumin might have antioxidant effects while higher doses might have pro-oxidant effects. More evidence is needed to determine what effect, if any, turmeric might have on alkylating agents.
Amlodipine (Norvasc)
Taking turmeric with amlodipine may increase levels of amlodipine.
Animal research shows that giving amlodipine 1 mg/kg as a single dose following the use of turmeric extract 200 mg/kg daily for 2 weeks increases the maximum concentration and area under the curve by 53% and 56%, respectively, when compared with amlodipine alone. Additional animal research shows that taking amlodipine 1 mg/kg with a curcumin 2 mg/kg pretreatment for 10 days increases the maximum concentration and area under the curve by about 2-fold when compared with amlodipine alone.
Anticoagulant/Antiplatelet Drugs
Turmeric may have antiplatelet effects and may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs. However, research is conflicting.
Curcumin, a constituent of turmeric, has demonstrated antiplatelet effects in vitro. Furthermore, two case reports have found that taking turmeric along with warfarin or fluindione was associated with an increased international normalized ratio (INR). However, one clinical study in healthy volunteers shows that taking curcumin 500 mg daily for 3 weeks, alone or with aspirin 100 mg, does not increase antiplatelet effects or bleeding risk. It is possible that the dose of turmeric used in this study was too low to produce a notable effect.
Antidiabetes Drugs
Theoretically, taking turmeric with antidiabetes drugs might increase the risk of hypoglycemia.
Animal research and case reports suggest that curcumin, a turmeric constituent, can reduce blood glucose levels in patients with diabetes. Furthermore, clinical research in adults with type 2 diabetes shows that taking curcumin 475 mg daily for 10 days prior to taking glyburide 5 mg decreased postprandial glucose levels for up to 24 hours when compared with glyburide alone, despite the lack of a significant pharmacokinetic interaction. Other clinical studies in patients with diabetes show that taking curcumin daily can reduce blood glucose levels when compared with placebo.
Antitumor Antibiotics
Turmeric has antioxidant effects. Theoretically, this may reduce the activity of chemotherapy drugs that generate free radicals. However, research is conflicting.
In vitro and animal research shows that curcumin, a constituent of turmeric, inhibits doxorubicin-induced apoptosis of breast cancer cells by up to 65%. However, curcumin does not seem to affect the apoptosis capacity of daunorubicin. In fact, some research shows that curcumin might augment the cytotoxic effects of antitumor antibiotics, increasing their effectiveness. Reasons for the discrepancies may relate to the dose of curcumin and the chemotherapeutic agent. Lower doses of curcumin might have antioxidant effects while higher doses might have pro-oxidant effects. More evidence is needed to determine what effects, if any, antioxidants such as turmeric have on antitumor antibiotics.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Turmeric might increase or decrease levels of drugs metabolized by CYP3A4.
In vitro and animal research show that turmeric and its constituents curcumin and curcuminoids inhibit CYP3A4. Also, 8 case reports from the World Health Organization (WHO) adverse drug reaction database describe increased toxicity in patients taking turmeric and cancer medications that are CYP3A4 substrates, including everolimus, ruxolitinib, ibrutinib, and palbociclib, and bortezomib. In another case report, a transplant patient presented with acute nephrotoxicity and elevated tacrolimus levels after consuming turmeric powder at a dose of 15 or more spoonfuls daily for ten days prior. It was thought that turmeric increased levels of tacrolimus due to CYP3A4 inhibition.
Conversely, other in vitro research suggests that turmeric induces CYP3A4 activity, leading to reduced levels of CYP3A4 substrates. An animal model suggests that induction of CYP3A4 occurs after daily curcumin use for 1 week. However, the induction of CYP3A4 by turmeric has not been reported in humans.
Hepatotoxic Drugs
Theoretically, turmeric might increase the risk of liver damage when taken with hepatotoxic drugs.
There is concern that turmeric might cause hepatotoxicity, especially when highly bioavailable formulations are used in high doses.
Methotrexate (Trexall, Others)
Theoretically, turmeric might have additive effects when used with hepatotoxic drugs such as methotrexate.
In one case report, a 39-year-old female taking methotrexate, turmeric, and linseed oil developed hepatotoxicity.
Organic Anion-Transporting Polypeptide Substrates (Oatp)
Theoretically, turmeric might increase blood levels of OATP4C1 substrates.
In vitro research shows that the turmeric constituent curcumin competitively inhibits OATP4C1 transport. This transporter is expressed in the kidney and facilitates the renal excretion of certain drugs. Theoretically, taking turmeric might decrease renal excretion of OATP substrates.
Sulfasalazine (Azulfidine)
Turmeric might increase the effects and adverse effects of sulfasalazine.
Clinical research shows that taking the turmeric constituent, curcumin, can increase blood levels of sulfasalazine by 3.2-fold.
Tacrolimus (Prograf)
Turmeric might increase the effects and adverse effects of tacrolimus.
In one case report, a transplant patient presented with acute nephrotoxicity and elevated tacrolimus levels of 29 ng/mL. The patient previously had tacrolimus levels within the therapeutic range at 9.7 ng/mL. Ten days prior to presenting at the emergency room the patient started consumption of turmeric powder at a dose of 15 or more spoonfuls daily. It was thought that turmeric increased levels of tacrolimus due to cytochrome P450 3A4 (CYP3A4) inhibition. In vitro and animal research show that turmeric and its constituent curcumin inhibit CYP3A4.
Talinolol
Turmeric may reduce the absorption of talinolol in some situations.
Clinical research shows that taking curcumin for 6 days decreases the bioavailability of talinolol when taken together on the seventh day. The clinical significance of this effect is unclear.
Tamoxifen (Nolvadex)
Theoretically, turmeric might reduce the levels and clinical effects of tamoxifen.
In a small clinical trial in patients with breast cancer taking tamoxifen 20-30 mg daily, adding curcumin 1200 mg plus piperine 10 mg three times daily reduces the 24-hour area under the curve of tamoxifen and the active metabolite endoxifen by 12.8% and 12.4%, respectively, as well as the maximum concentrations of tamoxifen, when compared with tamoxifen alone. However, in the absence of piperine, the area under the curve for endoxifen and the maximum concentration of tamoxifen were not significantly reduced. Effects were most pronounced in patients who were extensive cytochrome P450 (CYP) 2D6 metabolizers.
Topoisomerase I Inhibitors
Turmeric has antioxidant effects. There is some concern that this may reduce the activity of chemotherapy drugs that generate free radicals. However, research is conflicting.
In vitro research shows that curcumin, a constituent of turmeric, inhibits camptothecin-induced apoptosis of breast cancer cells by up to 71%. However, other in vitro research shows that curcumin augments the cytotoxic effects of camptothecin. Reasons for the discrepancies may relate to the dose of curcumin and the chemotherapeutic agents. Lower doses of curcumin might have antioxidant effects while higher doses might have pro-oxidant effects. More evidence is needed to determine what effect, if any, turmeric might have.
Tramadol (Ultram)
Theoretically, turmeric might increase or decrease levels of tramadol.
Animal research suggests that a single dose of curcumin, a constituent of turmeric, may increase tramadol's maximum concentration (Cmax) by inhibiting metabolism, while continued daily use for 7 days may reduce the area under the curve (AUC) due to the induction of drug-metabolizing enzymes such as cytochrome P450 3A4 (CYP3A4). However, this interaction has not been reported in humans.
Warfarin (Coumadin)
Turmeric might increase the risk of bleeding with warfarin.
One case of increased international normalized ratio (INR) has been reported for a patient taking warfarin who began taking turmeric. Prior to taking turmeric, the patient had stable INR measurements. Within a few weeks of starting turmeric supplementation, the patient's INR increased to 10. Additionally, curcumin, the active constituent in turmeric, has demonstrated antiplatelet effects in vitro, which may produce additive effects when taken with warfarin.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Theoretically, turmeric might increase levels of drugs metabolized by CYP1A2. However, research is conflicting.
In vitro and animal research show that the turmeric constituent, curcumin, inhibits CYP1A2. However, other in vitro research suggests that curcumin does not significantly affect CYP1A2.
Docetaxel (Taxotere)
Theoretically, turmeric might increase blood levels of oral docetaxel.
Animal research suggests that the turmeric constituent, curcumin, enhances the oral bioavailability of docetaxel. However, the significance of this interaction is unclear, as this drug is typically administered intravenously in clinical settings.
Estrogens
Theoretically, large amounts of turmeric might interfere with hormone replacement therapy through competition for estrogen receptors.
In vitro research shows that curcumin, a constituent of turmeric, displaces the binding of estrogen to its receptors.
Glyburide (Diabeta, Others)
Theoretically, taking turmeric and glyburide in combination might increase the risk of hypoglycemia.
Clinical research shows that taking curcumin 475 mg daily for 10 days prior to taking glyburide 5 mg increases blood levels of glyburide by 12% at 2 hours after the dose in patients with type 2 diabetes. While maximal blood concentrations of glyburide were not affected, turmeric modestly decreased postprandial glucose levels for up to 24 hours when compared to glyburide alone, possibly due to the hypoglycemic effect of turmeric demonstrated in animal research.
Losartan (Cozaar)
Theoretically, turmeric might increase the effects of losartan.
Research in hypertensive rats shows that taking turmeric can increase the hypotensive effects of losartan.
Norfloxacin (Noroxin)
Theoretically, turmeric might increase the effects and adverse effects of norfloxacin.
Animal research shows that taking curcumin, a turmeric constituent, can increase blood levels of orally administered norfloxacin.
P-Glycoprotein Substrates
Theoretically, turmeric might increase the absorption of P-glycoprotein substrates.
In vitro and animal research shows that curcuminoids and other constituents found in turmeric can inhibit P-glycoprotein expression and activity.
Paclitaxel (Abraxane, Onxol)
Theoretically, turmeric might alter blood levels of paclitaxel, although any effect may not be clinically relevant.
Clinical research in adults with breast cancer receiving intravenous paclitaxel suggests that taking turmeric may modestly alter paclitaxel pharmacokinetics. Patients received paclitaxel on day 1, followed by either no treatment or turmeric 2 grams daily from days 2-22. Pharmacokinetic modeling suggests that turmeric reduces the maximum concentration and area under the curve of paclitaxel by 12.1% and 7.7%, respectively. However, these changes are not likely to be considered clinically relevant. Conversely, animal research suggests that curcumin, a constituent of turmeric, enhances the oral bioavailability of paclitaxel. However, the significance of this interaction is unclear, as this drug is typically administered intravenously in clinical settings.
Beet
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, beet might increase the levels of CYP3A4 substrates.
In vitro research suggests that betanin, the major pigment in beet, competitively inhibits CYP3A4 in a dose-dependent manner similarly to strong CYP3A4 inhibitor ketoconazole.
Antihypertensive Drugs
Beet and beetroot contain nitrates, which can cause vasodilation, potentially leading to lower blood pressure. However, a study published in the European Journal of Clinical Nutrition using concentrated beetroot juice found no significant impact on blood pressure or heart rate in different age groups. Other small clinical studies suggest that while beet consumption might transiently lower blood pressure due to vessel dilation, there's no consistent evidence of a lasting effect. Overall, the theoretical risk of reduced blood pressure due to beet's nitrate content exists, but studies generally indicate a low and temporary impact rather than a sustained decrease.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Theoretically, beet might decrease the levels and clinical effects of CYP1A2 substrates.
In vitro research suggests that beet induces CYP1A2 enzymes.
Nattokinase
Anticoagulant/Antiplatelet Drugs
Nattokinase might increase the risk of bleeding when used with anticoagulant/antiplatelet drugs.
Nattokinase has thrombolytic and anticoagulant effects. There is a case report of intracranial hemorrhage in a patient who added nattokinase to aspirin therapy.
Antihypertensive Drugs
Theoretically, nattokinase might increase the risk of hypotension when used with antihypertensive drugs.
Some clinical research suggests that nattokinase may reduce systolic and diastolic blood pressure.
Lactospore(R)
Antibiotic Drugs
Theoretically, taking antibiotics with Bacillus coagulans might decrease the effectiveness of B. coagulans.
B. coagulans preparations usually contain live and active organisms. Therefore, simultaneously taking antibiotics might kill a significant number of the organisms. Tell patients to separate administration of antibiotics and B. coagulans preparations by at least two hours.
Lactobacillus acidophilus
Antibiotic Drugs
Theoretically, taking Lactobacillus acidophilus with antibiotic drugs might decrease the effectiveness of L. acidophilus.
L. acidophilus preparations usually contain live and active organisms. Therefore, simultaneously taking antibiotics might kill a significant number of the organisms. Tell patients to separate administration of antibiotics and L. acidophilus preparations by at least two hours.
Bromelain
Anticoagulant/Antiplatelet Drugs
Bromelain may have antiplatelet effects and may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs.
There is one case report of a patient experiencing minor bruising while taking bromelain with naproxen. Bromelain is thought to have antiplatelet activity. Whether this interaction is of concern with topical bromelain is unclear. Interference with coagulation of burn wounds has been reported in a patient receiving bromelain-based enzymatic debridement. However, observational research has found that topical bromelain debridement is not associated with increases or decreases in laboratory markers of coagulation when compared with surgical debridement.
Tetracycline Antibiotics
Theoretically, bromelain might increase levels of tetracycline antibiotics.
Laboratory research suggests that bromelain might increase the absorption of tetracycline antibiotics. However, a study in healthy adults reported no difference in tetracycline plasma levels when a 500 mg dose was taken with or without bromelain 80 mg.
Papaya
Amiodarone (Cordarone)
Theoretically, papaya extract may increase the levels and clinical effects of amiodarone.
Animal research in rats shows that a single oral dose of papaya extract, as well as multiple doses of papaya extract daily over 14 days, prior to a single dose of amiodarone delays the time to maximum amiodarone concentration. However, only the 14-day papaya extract regimen increases systemic amiodarone exposure by 60% to 70%. This interaction has not been reported in humans.
Antidiabetes Drugs
Concomitant use of antidiabetic drugs with fermented papaya can produce additive effects. It is unclear if other forms of papaya have the same effect.
A small low-quality clinical study in patients with type 2 diabetes who are taking glibenclamide shows that taking a fermented papaya preparation 3 grams daily for 2 months decreases fasting and postprandial blood glucose levels when compared to baseline. Additionally, of the 25 patients in the study, 9 required a reduction in glibenclamide dose.
Levothyroxine (Synthroid, Others)
Theoretically, consuming large quantities of papaya fruit can reduce the clinical effects of levothyroxine.
In one case-report, a 37-year-old male with a history of thyroidectomy who was stabilized on levothyroxine for 5 years presented with hypothyroidism after consuming 5-6 papaya fruits daily for 14 days during vacation. In a controlled re-challenge test involving 5-6 papayas daily, the patient remained euthyroid for 7 days, but developed mild hypothyroidism after 14 days. Both times, thyroid levels normalized 40-45 days after discontinuing papaya.
Warfarin (Coumadin)
Theoretically, concomitant use of warfarin with papain-containing papaya extract might increase the effects and side effects of warfarin.
In one case report, a patient previously stable on warfarin was found to have an international normalization ratio (INR) of 7.4, which was attributed to ingestion of a supplement containing papain from papaya extract.
Banana
Levodopa
Taking banana may reduce the effectiveness of levodopa.
A case report describes apparent wearing off in a patient with Parkinson disease after eating a banana every day. The wearing off subsided after removing dietary bananas.
Papain
Warfarin (Coumadin)
Theoretically, papain might increase the effects and side effects of warfarin.
In one case report, a patient previously stable on warfarin was found to have an international normalization ratio (INR) of 7.4, which was attributed to ingestion of a supplement containing papain from papaya extract.
Brand information
Manufacturer and brand details for Universal Food-Zyme, from the product label.
Nature's Plus
See all Nature's Plus products- Name
- Natural Organics Laboratories, Inc. makers of Nature's Plus
- Street Address
- 9500 New Horizons Blvd.
- City
- Amityville
- State
- New York
- ZipCode
- 11701
- Web Address
- www.naturesplus.com
Universal Food-Zyme by Nature's Plus: 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 Universal Food-Zyme’s Ingredients
Every ingredient we hold a full HelloPharmacist monograph for — uses, evidence, safety, and the complete interaction list.
Papain
Interacts with 2 drugsPapain is a protein-digesting enzyme from the papaya plant that is used in digestive supplements and some topical products. While it has clear food and laboratory uses, strong human evidence...
Read the full Papain monograph → Herb & supplement monographBromelain
Interacts with 141 drugsBromelain is a group of protein-digesting enzymes from pineapple that people take mainly for inflammation, swelling, and sinus problems. Some early studies are promising, but the overall evi...
Read the full Bromelain monograph → Herb & supplement monographLipase
Lipase is a digestive enzyme that helps your body break down dietary fats. It is well established as part of prescription pancreatic enzyme therapy for people who cannot make enough of their...
Read the full Lipase monograph → Herb & supplement monographBeet
Interacts with 861 drugsBeet, especially beetroot juice, is a nitrate-rich food that may modestly lower blood pressure and slightly improve exercise performance in some people. It is generally safe as a food, but s...
Read the full Beet monograph → Herb & supplement monographPapaya
Interacts with 92 drugsPapaya is a tropical fruit that is nutritious and generally safe to eat as food, and it contains an enzyme called papain used as a digestive aid and meat tenderizer. Papaya leaf extract is b...
Read the full Papaya monograph → Herb & supplement monographBanana
Interacts with 5 drugsBananas are a nutritious, widely eaten fruit that provide potassium, fiber, vitamin B6, and quick energy, and they are part of a healthy diet. While some traditional uses (like easing diarrh...
Read the full Banana monograph → Herb & supplement monographDate Palm
Date palm fruit is a nutritious food rich in natural sugars, fiber, and antioxidants, and is widely eaten as part of a healthy diet. Beyond its value as food, evidence for medicinal benefits...
Read the full Date Palm monograph → Herb & supplement monographProteolytic Enzymes (proteases)
Proteolytic enzymes are proteins that help break down other proteins, and common examples include bromelain (from pineapple), papain (from papaya), trypsin, chymotrypsin, and pancreatin. Peo...
Read the full Proteolytic Enzymes (proteases) monograph → Herb & supplement monographLactase
Lactase is a digestive enzyme supplement that helps people who lack enough natural lactase break down lactose, the sugar in milk and dairy. It can reduce gas, bloating, cramping, and diarrhe...
Read the full Lactase monograph → Herb & supplement monographFructo-oligosaccharides (fos)
Fructo-oligosaccharides (FOS) are a type of soluble fiber that acts as a prebiotic, meaning they feed the helpful bacteria in your gut. They are generally considered safe for most people in...
Read the full Fructo-oligosaccharides (fos) monograph → Herb & supplement monographBacillus Coagulans
Interacts with 182 drugsBacillus coagulans is a spore-forming probiotic that survives stomach acid well and may help with some digestive problems such as IBS, constipation, and certain types of diarrhea. The eviden...
Read the full Bacillus Coagulans monograph → Herb & supplement monographLactobacillus Acidophilus
Interacts with 182 drugsLactobacillus acidophilus is a 'friendly' bacterium used as a probiotic to support gut and vaginal health. It is generally well tolerated in healthy people, and there is reasonable evidence...
Read the full Lactobacillus Acidophilus monograph → Herb & supplement monographPhytase
Phytase is an enzyme that breaks down phytic acid (phytate) found in grains, beans, nuts, and seeds, which can free up minerals like iron, zinc, and calcium for absorption. It is widely used...
Read the full Phytase monograph → Herb & supplement monographNattokinase
Interacts with 289 drugsNattokinase is an enzyme from the fermented soybean food natto that may have mild blood-thinning and blood-flow effects. Some small studies hint at benefits for blood pressure and circulatio...
Read the full Nattokinase monograph → Herb & supplement monographTurmeric
Interacts with 1,133 drugsTurmeric is a popular spice whose main active compounds, curcuminoids, are studied mostly for inflammation and joint pain. Some research is promising, but quality is mixed and curcumin is po...
Read the full Turmeric monograph →Sources & How We Checked
Universal Food-Zyme'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 242 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.
Papain 11 references
- The Review of Natural Products by Facts and Comparisons. St. Louis, MO: Wolters Kluwer Co., 1999.
- Shaw D, Leon C, Kolev S, Murray V. Traditional remedies and food supplements: a 5-year toxicological study (1991-1995). Drug Saf 1997;17:342-56.
- Shuttleworth D, Hill S, Marks R, Connelly DM. Relief of experimentally induced pruritus with a novel eutectic mixture of local anaesthetic agents. Br J Dermatol 1988;119:535-40.
- Mansfield LE, Ting S, Haverly RW, Yoo TJ. The incidence and clinical implications of hypersensitivity to papain in an allergic population, confirmed by blinded oral challenge. Ann Allergy 1985;55:541-3.
- Martin, T., Uhder, K., Kurek, R., Roeddiger, S., Schneider, L., Vogt, H. G., Heyd, R., and Zamboglou, N. Does prophylactic treatment with proteolytic enzymes reduce acute toxicity of adjuvant pelvic irradiation? Results of a double-blind randomized trial PubMed
- Walker-Renard, P. Update on the medicinal management of phytobezoars. Am J Gastroenterol. 1993;88(10):1663-1666.
- Tymoszuk D, Wiszniewska M, Walusiak-Skorupa J. Papain-induced occupational rhinoconjunctivitis and asthma - A case report. Med Pr 2016;67(1):109-12. PubMed
- Soto-Mera MT, López-Rico MR, Filgueira JF, et al. Occupational allergy to papain. Allergy 2000;55(10):983-4. PubMed
- Tarlo SM, Shaikh W, Bell B, et al. Papain-induced allergic reactions. Clin Allergy 1978;8(3):207-15. PubMed
- Baur X, König G, Bencze K, Fruhmann G. Clinical symptoms and results of skin test, RAST and bronchial provocation test in thirty-three papain workers: Evidence for strong immunogenic potency and clinically relevant proteolytic e?ects of airborne papain. C
- Novey HS, Keenan WJ, Fairshter RD, Wells ID, Wilson AF, Culver BD. Pulmonary disease in workers exposed to papain: clinico-physiological and immunological studies. Clin Allergy 1980;10(6):721-31. PubMed
Bromelain 19 references
- Nettis E, Napoli G, Ferrannini A, Tursi A. IgE-mediated allergy to bromelain. Allergy 2001;56:257-8. PubMed
- Taussig SJ, Batkin S. Bromelain, the enzyme complex of pineapple (Ananas comosus) and its clinical application. An update. J Ethnopharmacol 1988;22:191-203.. PubMed
- Bradbrook ID, Morrison PJ, Rogers HJ. The effect of bromelain on the absorption of orally administered tetracycline. Br J Clin Pharmacol 1978;6:552-4. PubMed
- Bush TM, Rayburn KS, Holloway SW, et al. Adverse interactions between herbal and dietary substances and prescription medications: a clinical survey. Altern Ther Health Med 2007;13:30-5.
- Brien S, Lewith G, Walker AF, et al. Bromelain as an adjunctive treatment for moderate-to-severe osteoarthritis of the knee: a randomized placebo-controlled pilot study. QJM 2006;99:841-50. PubMed
- Mori S, Ojima Y, Hirose T, et al. The clinical effect of proteolytic enzyme containing bromelain and trypsin on urinary tract infection evaluated by double blind method. Acta Obstet Gynaecol Jpn 1972;19:147-53.
- Glaser D, Hilberg T. The influence of bromelain on platelet count and platelet activity in vitro. Platelets 2006;17:37-41. PubMed
- Heinicke R M, van der Wal L, Yokoyama M. Effect of bromelain (Ananase) on human platelet aggregation. Experientia 1972;28:844-5. PubMed
- Gailhofer, G., Wilders-Truschnig, M., Smolle, J., and Ludvan, M. Asthma caused by bromelain: an occupational allergy. Clin Allergy 1988;18(5):445-450. PubMed
- Mattei, O., Fabri, G., and Farina, G. [Occupational health experience regarding four cases of asthma due to bromelain (author's transl)]. Medicina del Lavoro 1979;70(5):404-409.
- Galleguillos, F. and Rodriguez, J. C. Asthma caused by bromelin inhalation. Clin Allergy 1978;8(1):21-24. PubMed
- Perez-Camo I, Quirce S, Duran MA, and et al. Latex allergy: evidence of cross-reactivity with papain and bromelain [abstract]. Allergy 1996;51(suppl 31):48.
- Martin GJ, Ehrenreich J, and Asbell N. Bromelain: pineapple proteases with anti-edema activity. Exp Med Surg 1962;20:227-247.
- Kasemsuk T, Saengpetch N, Sibmooh N, Unchern S. Improved WOMAC score following 16-week treatment with bromelain for knee osteoarthritis. Clin Rheumatol. 2016 Oct;35(10):2531-40. PubMed
- Kutlu Ö, DemirbaS A, Elmas ÖF, Güvenç U, Metin A. Fixed drug eruption: a new side effect of bromelain. Contact Dermatitis 2020. Online ahead of print. PubMed
- Shoham Y, Shapira E, Haik J, et al. Bromelain-based enzymatic debridement of chronic wounds: Results of a multicentre randomized controlled trial. Wound Repair Regen 2021;29(6):899-907. PubMed
- Pfister P, Garcia Wendel PD, Kim BS, et al. Coagulation side effects of enzymatic debridement in burned patients. Burns 2022. PubMed
- Hasham S, Riyat H, Fletcher A, O'Boyle CP, Alexander S. To bleed or not to bleed? Case series and discussion of haemorrhage risk with enzymatic debridement in burn injuries. Scars Burn Heal 2023;9:20595131231168333. PubMed
- Leelakanok N, Petchsomrit A, Janurai T, Saechan C, Sunsandee N. Efficacy and safety of bromelain: A systematic review and meta-analysis. Nutr Health 2023. PubMed
Fructo-oligosaccharides (fos) 6 references
- Briet F, et al. Symptomatic response to varying levels of fructo-oligosaccharides consumed occasionally or regularly. Eur J Clin Nutr 1995;49:501-7.
- Bouhnik Y, Vahedi K, Achour L, et al. Short-chain fructo-oligosaccharide administration dose-dependently increases fecal bifidobacteria in healthy humans. J Nutr 1999;129:113-6. PubMed
- Cummings JH, Macfarlane GT, Englyst HN. Prebiotic digestion and fermentation. Am J Clin Nutr 2001;73:415S-420S. PubMed
- Souza DDS, Tahan S, Weber TK, Araujo-Filho HB, de Morais MB. Randomized, double-blind, placebo-controlled parallel clinical trial assessing the effect of fructooligosaccharides in infants with constipation. Nutrients. 2018;10(11). pii: E1602. PubMed
- Andermann TM, Fouladi F, Tamburini FB, et al. A Fructo-Oligosaccharide Prebiotic Is Well Tolerated in Adults Undergoing Allogeneic Hematopoietic Stem Cell Transplantation: A Phase I Dose-Escalation Trial. Transplant Cell Ther 2021;27(11):932. PubMed
- Dou Y, Yu X, Luo Y, Chen B, Ma D, Zhu J. Effect of Fructooligosaccharides Supplementation on the Gut Microbiota in Human: A Systematic Review and Meta-Analysis. Nutrients 2022;14(16):3298. PubMed
See these in context on the Fructo-oligosaccharides (fos) monograph →
Beet 14 references
- Gruenwald J, Brendler T, Jaenicke C. PDR for Herbal Medicines. 1st ed. Montvale, NJ: Medical Economics Company, Inc., 1998.
- Clifford T, Berntzen B, Davison GW, et al. Effects of beetroot juice on recovery of muscle function and performance between bouts of repeated sprint exercise. Nutrients 2016;8. pii: E506. PubMed
- Siervo M, Lara J, Ogbonmwan I, Mathers JC. Inorganic nitrate and beetroot juice supplementation reduces blood pressure in adults: a systematic review and meta-analysis. J Nutr 2013;143:818-26. PubMed
- Clifford T, Howatson G, West DJ, Stevenson EJ. Beetroot juice is more beneficial than sodium nitrate for attenuating muscle pain after strenuous eccentric-bias exercise. Appl Physiol Nutr Metab. 2017;42(11):1185-1191. PubMed
- Clifford T, Bell O, West DJ, Howatson G, Stevenson EJ. The effects of beetroot juice supplementation on indices of muscle damage following eccentric exercise. Eur J Appl Physiol. 2016;116(2):353-62. PubMed
- Wylie LJ, Kelly J, Bailey SJ, et al. Beetroot juice and exercise: pharmacodynamic and dose-response relationships. J Appl Physiol (1985). 2013;115(3):325-36. PubMed
- Garnacho-Castaño MV, Palau-Salvà G, Cuenca E, et al. Effects of a single dose of beetroot juice on cycling time trial performance at ventilatory thresholds intensity in male triathletes. J Int Soc Sports Nutr. 2018;15(1):49. PubMed
- Rasica L, Porcelli S, Marzorati M, et al. Ergogenic effects of beetroot juice supplementation during severe-intensity exercise in obese adolescents. Am J Physiol Regul Integr Comp Physiol. 2018;315(3):R453-R460. PubMed
- Henrohn D, Björkstrand K, Lundberg JO, et al. Effects of oral supplementation with nitrate-rich beetroot juice in patients with pulmonary arterial hypertension-results from BEET-PAH, an exploratory randomized, double-blind, placebo-controlled, crosso
- Serra-Payá N, Garnacho-Castaño MV, Sánchez-Nuño S, et al. The relationship between resistance exercise performance and ventilatory efficiency after beetroot juice intake in well-trained athletes. Nutrients 2021;13(4):1094. PubMed
- Haron MH, Dale O, Martin K, et al. Evaluation of the Herb-Drug Interaction Potential of Commonly Used Botanicals on the US Market with Regard to PXR- and AhR-Mediated Influences on CYP3A4 and CYP1A2. J Diet Suppl 2022. PubMed
- Hemmatinafar M, Zaremoayedi L, Koushkie Jahromi M, et al. Effect of Beetroot Juice Supplementation on Muscle Soreness and Performance Recovery after Exercise-Induced Muscle Damage in Female Volleyball Players. Nutrients 2023;15(17):3763. PubMed
- Lim SH, Bae S, Lee HS, Han HK, Choi CI. Effect of Betanin, the Major Pigment of Red Beetroot (Beta vulgaris L.), on the Activity of Recombinant Human Cytochrome P450 Enzymes. Pharmaceuticals (Basel) 2023;16(9):1224. PubMed
- Oscherwitz M, Tamayo RM, Heudebert A, Centor R. A Case of Pseudo-Hematochezia from Beet Supplement Ingestion. Am J Med 2023;136(9):e177-e178. PubMed
Papaya 14 references
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Lactobacillus Acidophilus 15 references
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See these in context on the Lactobacillus Acidophilus monograph →
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