Hepat-Ex (Chelidonium) Ingredients & Drug Interactions
What is this page for?
First and foremost: checking Hepat-Ex (Chelidonium) 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
Hepat-Ex (Chelidonium) is a dietary supplement by Douglas Laboratories with 8 active ingredients. Its ingredients are commonly taken for water retention (diuretic), digestive upset, liver and gallbladder support.Based on those ingredients, 1,416 medications have a known interaction with it, the most serious rated major. The ingredients most likely to interact are Hydrastis Can, Carduus Mar, Cinchona. Use the checker below to test your specific medication, or read the full HelloPharmacist Interaction Report.
Check Your Meds Against Hepat-Ex (Chelidonium) by Douglas Laboratories
Ask about any prescription or over-the-counter medication and we check it for interactions with Hepat-Ex (Chelidonium) by Douglas Laboratories — 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 Hepat-Ex (Chelidonium) by Douglas Laboratories
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
Full disclosure
Hepat-Ex contains 8 ingredients, including herbal extracts and minerals. The active components are dandelion (Taraxacum Off), milk thistle (Carduus Mar), goldenrod (Solidago virg), goldenseal (Hydrastis Can), magnesium (Magnesia Mur), and cinchona, along with alcohol and chelidonium mat.
These herbs have traditionally been used to support liver and digestive function, though the strength and consistency of that support varies by ingredient and condition.
Does it work?
Insufficient evidence
The evidence for Hepat-Ex's ingredients is limited. Dandelion, goldenrod, goldenseal, and cinchona show insufficient reliable evidence for their listed uses—joint pain, urinary tract health, respiratory infection, and muscle cramps, respectively.
Milk thistle is possibly effective for type 2 diabetes. Magnesium is effective for constipation, indigestion, low magnesium levels, and pre-eclampsia in pregnancy.
Overall, the product's liver-support claims fall outside what the data we hold can confirm.
How safe is it?
Well-documented data
Most of these herbs are generally well tolerated at typical doses, though side effects are possible. Dandelion, milk thistle, and goldenseal can cause digestive upset (diarrhea, nausea, stomach discomfort), and allergic reactions—including rare anaphylaxis—have been reported, especially in people sensitive to ragweed or related plants.
Goldenrod is often well tolerated short-term, but human safety data are limited and allergic contact dermatitis can occur. Magnesium commonly causes diarrhea and gastrointestinal irritation.
Cinchona contains quinine, which carries serious risks including heart arrhythmias, blood disorders, and cinchonism (ringing ears, nausea, vomiting). Pregnancy and breastfeeding are particular concerns: goldenseal and cinchona should be avoided in pregnancy; dandelion and goldenrod lack sufficient safety data; and milk thistle safety during breastfeeding is not well studied.
Meds to double-check
Major interaction found
Before taking Hepat-Ex, confirm with your doctor or pharmacist that it's safe alongside: heart rhythm drugs (quinidine, quinine), blood thinners and antiplatelet drugs, diabetes medications, blood pressure pills (especially calcium channel blockers), Parkinson's drugs (levodopa/carbidopa), potassium-sparing diuretics, quinolone antibiotics, morphine, muscle relaxants, certain hepatitis C and transplant medications, skeletal muscle relaxants, and CNS depressants. The interactions are mostly Moderate severity, but cinchona's Major interactions with quinidine and quinine are serious.
The bottom line
Scorecard at a glanceFully disclosed formula with insufficient evidence for its stated purpose. Major medication interactions have been identified, and safety information is well characterized.
Hepat-Ex is a multi-ingredient herbal-mineral blend with limited proven effectiveness for liver support. Because it contains six ingredients with documented interactions affecting over 1,400 medications—including Major-severity risks with heart drugs and Parkinson's medication—this product demands careful review before use.
If you take any prescription medication, blood thinners, diabetes drugs, heart medications, or blood pressure pills, check with your doctor or pharmacist before starting it.
Educational only — not medical advice; always confirm with your pharmacist. Our editorial policy · How we use AI
Assessment coverage: 6 of 8 active ingredients matched to our full ingredient reviews (monographs). Based on the product label dated Jun 25, 2012.
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 Hepat-Ex (Chelidonium), straight from the product label.
| Brand | Douglas Laboratories |
|---|---|
| Barcode (UPC) | 310539011386 |
| Net contents | 30 mL |
| Market status | On market |
| Date entered into DSLD | Jun 25, 2012 |
| DSLD ID | 8169 |
| Product type | Other Combinations |
| Supplement form | Liquid |
| Dietary claims / uses | All Other |
| Intended target group(s) | Adult (18 - 50 Years) |
Everything in this section is reproduced from the manufacturer’s own product label — it’s the label speaking, not HelloPharmacist. We show it so you can see exactly what the maker states; we don’t verify or endorse those statements.
Supplement Facts
The label details for Hepat-Ex (Chelidonium) by Douglas Laboratories, sourced from the NIH Dietary Supplement Label Database.
Supplement Facts
| Ingredient | Amount | % DV |
|---|---|---|
| Alcohol | 20 % | -- |
| Chelidonium Mat | 3 X | -- |
| Taraxacum Off | 3 X | -- |
| Carduus Mar | 3 X | -- |
| Solidago virg | 3 X | -- |
| Hydrastis Can | 3 C | -- |
| Magnesia Mur | 3 C | -- |
| Cinchona | 3 C | -- |
Tap any ingredient to jump to its full detail below.
These statements are the manufacturer’s wording, reproduced from the product label — the label is saying it, not HelloPharmacist. We don’t verify or endorse them.
Suggested/Recommended/Usage/Directions
Suggested Usage: As a dietary supplement, adults 10 drops in a small amount of water 3 times daily or as directed by your healthcare professional
Precautions
If you are pregnant or nursing, seek professional advice before using.
KEEP OUT OF REACH OF CHILDREN.
Tamper resistant package, do not use if outer seal is missing.
Storage
For optimal storage conditions, store in a cool, dry place. DO NOT FREEZE.
General
Formula #7164
FDA Statement of Identity
A Dietary Supplement
Is this label outdated? Report a formula or label change and our pharmacy team will review it.
Hepat-Ex (Chelidonium) by Douglas Laboratories 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 Hepat-Ex (Chelidonium) by Douglas Laboratories
These are the 8 active ingredients this product is made of. Select any to open its full monograph.
Serving size1 mL Dosage formLiquid Servings per container30 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.
Alcohol
Chelidonium Mat
Taraxacum Off
Interacts with457 drugs
Dandelion is a common plant used in food and traditional medicine, often promoted as a natural 'water pill' and digestive aid. Human evidence for thes...
Taraxacum Off monograph & interactionsCarduus Mar
Interacts with954 drugs
Milk thistle is a popular herbal supplement most often used for liver health, and its main active component is a group of compounds called silymarin....
Carduus Mar monograph & interactionsSolidago virg
Interacts with75 drugs
Goldenrod is a flowering plant traditionally used as an herbal diuretic and for urinary tract health. Human evidence is limited, and while it is gener...
Solidago virg monograph & interactionsHydrastis Can
Interacts with1,237 drugs
Goldenseal is a popular North American herb that contains berberine, a compound studied for antimicrobial effects. However, strong human evidence for...
Hydrastis Can monograph & interactionsMagnesia Mur
Interacts with295 drugs
Magnesium is an essential mineral your body needs for muscles, nerves, blood pressure, and many other functions, and supplements are useful for preven...
Magnesia Mur monograph & interactionsCinchona
Interacts with492 drugs
Cinchona bark is the natural source of quinine and has been used for centuries to treat malaria and fever, but the bark itself is not standardized and...
Cinchona monograph & interactionsHepat-Ex (Chelidonium) by Douglas Laboratories Drug Interactions
HelloPharmacist Interaction Report
Hepat-Ex (Chelidonium) by Douglas Laboratories contains several ingredients with documented interactions: through its dandelion, milk thistle, goldenrod, goldenseal, magnesium, and cinchona content, this product interacts with a range of medications.
The most serious interaction is cinchona's Major-severity effect on quinidine and quinine—cinchona contains these drugs as active constituents and can dramatically increase their plasma levels and side effects.
Read the full breakdown — every affected drug type, severity by severity
Dandelion interacts with blood thinners (anticoagulant/antiplatelet drugs), diabetes medications, potassium-sparing water pills, certain antibiotics (quinolones), drugs broken down by liver enzyme CYP1A2, lithium, and a class of drugs cleared by glucuronidation—all Moderate severity. Milk thistle affects blood thinners (warfarin specifically), diabetes drugs, morphine, certain transplant and hepatitis C medications, and drugs processed through liver enzyme systems (CYP2B6 and glucuronidation)—all Moderate.
Goldenseal interacts with blood thinners, diabetes drugs, blood pressure medications, CNS depressants, and multiple liver enzymes (CYP2D6, CYP2C9, CYP3A4)—all Moderate. Goldenrod affects diuretic water pills (Moderate).
Magnesium has one Major-severity interaction with levodopa/carbidopa and Moderate interactions with muscle relaxants, potassium-sparing diuretics, blood pressure medications (calcium channel blockers), antacids, diabetes drugs (sulfonylureas), antibiotics (quinolones), and bone medications (bisphosphonates).
We could not check alcohol and chelidonium mat—interaction data for these ingredients is not on file. Altogether, these interactions span 1,417 individual medications.
Check your exact medications with the tool on this page before starting Hepat-Ex.
Check your own medications below · Editorial policy · How we use AI
Want to check YOUR meds against Hepat-Ex (Chelidonium)?
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 Hepat-Ex (Chelidonium) interact with 1,416 drugs. Click any drug to see the details.
6 of the 8 ingredients in Hepat-Ex (Chelidonium) interact with drugs. Each result below shows which ingredient is responsible. Hydrastis Can Carduus Mar Cinchona Taraxacum Off Magnesia Mur Solidago virg
Benserazide, LevodopaMadopar, Prolopa
How Benserazide, Levodopa interacts with Hepat-Ex (Chelidonium) — through 1 ingredient. Tap an ingredient for the detail:
Magnesia MurLevodopa/carbidopa (sinemet) Major
Interaction Summary
Magnesium can reduce the bioavailability of levodopa/carbidopa.
Read the full Magnesia Mur + Benserazide, Levodopa interactionCarbidopaLodosyn
How Carbidopa interacts with Hepat-Ex (Chelidonium) — through 1 ingredient. Tap an ingredient for the detail:
Magnesia MurLevodopa/carbidopa (sinemet) Major
Interaction Summary
Magnesium can reduce the bioavailability of levodopa/carbidopa.
Read the full Magnesia Mur + Carbidopa interactionCarbidopa, LevodopaDhivy, Rytary, Sinemet, Sinemet CR
How Carbidopa, Levodopa interacts with Hepat-Ex (Chelidonium) — through 1 ingredient. Tap an ingredient for the detail:
Magnesia MurLevodopa/carbidopa (sinemet) Major
Interaction Summary
Magnesium can reduce the bioavailability of levodopa/carbidopa.
Read the full Magnesia Mur + Carbidopa, Levodopa interactionCarbidopa, Levodopa, EntacaponeStalevo
How Carbidopa, Levodopa, Entacapone interacts with Hepat-Ex (Chelidonium) — through 3 ingredients. Tap an ingredient for the detail:
Magnesia MurLevodopa/carbidopa (sinemet) Major
Interaction Summary
Magnesium can reduce the bioavailability of levodopa/carbidopa.
Read the full Magnesia Mur + Carbidopa, Levodopa, Entacapone interactionTaraxacum OffGlucuronidated Drugs Moderate
Interaction Summary
Theoretically, dandelion might increase the clearance of drugs that are UDP-glucuronosyltransferase substrates.
Read the full Taraxacum Off + Carbidopa, Levodopa, Entacapone interactionCarduus MarGlucuronidated Drugs Moderate
Interaction Summary
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Read the full Carduus Mar + Carbidopa, Levodopa, Entacapone interactionLevodopaInbrija, Larodopa
How Levodopa interacts with Hepat-Ex (Chelidonium) — through 1 ingredient. Tap an ingredient for the detail:
Magnesia MurLevodopa/carbidopa (sinemet) Major
Interaction Summary
Magnesium can reduce the bioavailability of levodopa/carbidopa.
Read the full Magnesia Mur + Levodopa interactionLevodopa, CarbidopaDuodopa
How Levodopa, Carbidopa interacts with Hepat-Ex (Chelidonium) — through 1 ingredient. Tap an ingredient for the detail:
Magnesia MurLevodopa/carbidopa (sinemet) Major
Interaction Summary
Magnesium can reduce the bioavailability of levodopa/carbidopa.
Read the full Magnesia Mur + Levodopa, Carbidopa interactionQuinidineCardioquin, Cin-Quin, Duraquin, Lin-Qin, Quinova, Quinaglute, Quinaglute Duratabs +2 more
How Quinidine interacts with Hepat-Ex (Chelidonium) — through 3 ingredients. Tap an ingredient for the detail:
CinchonaQt Interval-prolonging Drugs, Quinidine Major
Interaction Summary
Theoretically, taking cinchona with other QT interval-prolonging drugs might cause an additive effect and increase the risk of ventricular arrhythmias.
Read the full Cinchona + Quinidine interactionHydrastis CanP-glycoprotein Substrates, Cytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, goldenseal might increase or decrease serum levels of P-glycoprotein (P-gp) substrates.
Read the full Hydrastis Can + Quinidine interactionCarduus MarP-glycoprotein Substrates, Cytochrome P450 3a4 (cyp3a4) Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Carduus Mar + Quinidine interactionQuinineQualaquin
How Quinine interacts with Hepat-Ex (Chelidonium) — through 3 ingredients. Tap an ingredient for the detail:
CinchonaQuinine Major
Interaction Summary
Theoretically, taking cinchona might increase plasma levels and adverse effects of quinine.
Read the full Cinchona + Quinine interactionHydrastis CanCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Goldenseal might increase serum levels of drugs metabolized by CYP3A4.
Read the full Hydrastis Can + Quinine interactionCarduus MarCytochrome P450 3a4 (cyp3a4) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP3A4; research is conflicting.
Read the full Carduus Mar + Quinine interactionQuinine SulfateQuinamm, Quinine Sulfate
How Quinine Sulfate interacts with Hepat-Ex (Chelidonium) — through 3 ingredients. Tap an ingredient for the detail:
CinchonaQuinine Major
Interaction Summary
Theoretically, taking cinchona might increase plasma levels and adverse effects of quinine.
Read the full Cinchona + Quinine Sulfate interactionHydrastis CanCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Goldenseal might increase serum levels of drugs metabolized by CYP3A4.
Read the full Hydrastis Can + Quinine Sulfate interactionCarduus MarCytochrome P450 3a4 (cyp3a4) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP3A4; research is conflicting.
Read the full Carduus Mar + Quinine Sulfate interactionAdo-trastuzumab EmtansineKadcyla
How Ado-trastuzumab Emtansine interacts with Hepat-Ex (Chelidonium) — through 2 ingredients. Tap an ingredient for the detail:
Hydrastis CanCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Goldenseal might increase serum levels of drugs metabolized by CYP3A4.
Read the full Hydrastis Can + Ado-trastuzumab Emtansine interactionCarduus MarCytochrome P450 3a4 (cyp3a4) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP3A4; research is conflicting.
Read the full Carduus Mar + Ado-trastuzumab Emtansine interactionAbciximabReoPro
How Abciximab interacts with Hepat-Ex (Chelidonium) — through 4 ingredients. Tap an ingredient for the detail:
Hydrastis CanAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, goldenseal might increase the risk of bleeding when used with anticoagulant or antiplatelet drugs.
Read the full Hydrastis Can + Abciximab interactionTaraxacum OffAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, taking dandelion root along with anticoagulant or antiplatelet drugs might increase the risk of bruising and bleeding.
Read the full Taraxacum Off + Abciximab interactionCinchonaAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, taking cinchona might increase the drug effects and risk of bleeding with anticoagulant and antiplatelet drugs.
Read the full Cinchona + Abciximab interactionMagnesia MurAnticoagulant/antiplatelet Drugs Minor
Interaction Summary
Theoretically, magnesium may have antiplatelet effects, but the evidence is conflicting.
Read the full Magnesia Mur + Abciximab interactionAbemaciclibVerzenio
How Abemaciclib interacts with Hepat-Ex (Chelidonium) — through 2 ingredients. Tap an ingredient for the detail:
Hydrastis CanCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Goldenseal might increase serum levels of drugs metabolized by CYP3A4.
Read the full Hydrastis Can + Abemaciclib interactionCarduus MarCytochrome P450 3a4 (cyp3a4) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP3A4; research is conflicting.
Read the full Carduus Mar + Abemaciclib interactionAbiraterone
How Abiraterone interacts with Hepat-Ex (Chelidonium) — through 2 ingredients. Tap an ingredient for the detail:
Hydrastis CanCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Goldenseal might increase serum levels of drugs metabolized by CYP3A4.
Read the full Hydrastis Can + Abiraterone interactionCarduus MarCytochrome P450 3a4 (cyp3a4) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP3A4; research is conflicting.
Read the full Carduus Mar + Abiraterone interactionAbiraterone AcetateYonsa, Zytiga
How Abiraterone Acetate interacts with Hepat-Ex (Chelidonium) — through 2 ingredients. Tap an ingredient for the detail:
Hydrastis CanCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Goldenseal might increase serum levels of drugs metabolized by CYP3A4.
Read the full Hydrastis Can + Abiraterone Acetate interactionCarduus MarCytochrome P450 3a4 (cyp3a4) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP3A4; research is conflicting.
Read the full Carduus Mar + Abiraterone Acetate interactionAbrocitinibCibinqo
How Abrocitinib interacts with Hepat-Ex (Chelidonium) — through 5 ingredients. Tap an ingredient for the detail:
Hydrastis CanAnticoagulant/antiplatelet Drugs, Cytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, goldenseal might increase the risk of bleeding when used with anticoagulant or antiplatelet drugs.
Read the full Hydrastis Can + Abrocitinib interactionCinchonaAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, taking cinchona might increase the drug effects and risk of bleeding with anticoagulant and antiplatelet drugs.
Read the full Cinchona + Abrocitinib interactionTaraxacum OffAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, taking dandelion root along with anticoagulant or antiplatelet drugs might increase the risk of bruising and bleeding.
Read the full Taraxacum Off + Abrocitinib interactionMagnesia MurAnticoagulant/antiplatelet Drugs Minor
Interaction Summary
Theoretically, magnesium may have antiplatelet effects, but the evidence is conflicting.
Read the full Magnesia Mur + Abrocitinib interactionCarduus MarCytochrome P450 2c9 (cyp2c9) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
Read the full Carduus Mar + Abrocitinib interactionAcalabrutinibCalquence
How Acalabrutinib interacts with Hepat-Ex (Chelidonium) — through 2 ingredients. Tap an ingredient for the detail:
Hydrastis CanCytochrome P450 3a4 (cyp3a4) Substrates, P-glycoprotein Substrates Moderate
Interaction Summary
Goldenseal might increase serum levels of drugs metabolized by CYP3A4.
Read the full Hydrastis Can + Acalabrutinib interactionCarduus MarCytochrome P450 3a4 (cyp3a4) Substrates, P-glycoprotein Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP3A4; research is conflicting.
Read the full Carduus Mar + Acalabrutinib interactionAcarboseGlucobay, Prandase, Precose
How Acarbose interacts with Hepat-Ex (Chelidonium) — through 3 ingredients. Tap an ingredient for the detail:
Hydrastis CanAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, goldenseal might increase the risk of hypoglycemia when used with antidiabetes drugs.
Read the full Hydrastis Can + Acarbose interactionCarduus MarAntidiabetes Drugs Moderate
Interaction Summary
Taking milk thistle with antidiabetes drugs may increase the risk of hypoglycemia.
Read the full Carduus Mar + Acarbose interactionTaraxacum OffAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, dandelion might increase the risk for hypoglycemia when used with antidiabetes drugs.
Read the full Taraxacum Off + Acarbose interactionAcebutololRhotral, Sectral
How Acebutolol interacts with Hepat-Ex (Chelidonium) — through 1 ingredient. Tap an ingredient for the detail:
Hydrastis CanAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, goldenseal might increase the risk of hypotension when taken with antihypertensive drugs.
Read the full Hydrastis Can + Acebutolol interactionAcenocoumarolSintrom
How Acenocoumarol interacts with Hepat-Ex (Chelidonium) — through 4 ingredients. Tap an ingredient for the detail:
CinchonaAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, taking cinchona might increase the drug effects and risk of bleeding with anticoagulant and antiplatelet drugs.
Read the full Cinchona + Acenocoumarol interactionTaraxacum OffAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, taking dandelion root along with anticoagulant or antiplatelet drugs might increase the risk of bruising and bleeding.
Read the full Taraxacum Off + Acenocoumarol interactionHydrastis CanAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, goldenseal might increase the risk of bleeding when used with anticoagulant or antiplatelet drugs.
Read the full Hydrastis Can + Acenocoumarol interactionMagnesia MurAnticoagulant/antiplatelet Drugs Minor
Interaction Summary
Theoretically, magnesium may have antiplatelet effects, but the evidence is conflicting.
Read the full Magnesia Mur + Acenocoumarol interactionAcepromazineAtravet
How Acepromazine interacts with Hepat-Ex (Chelidonium) — through 1 ingredient. Tap an ingredient for the detail:
Hydrastis CanCns Depressants Moderate
Interaction Summary
Theoretically, goldenseal might increase the sedative effects of CNS depressants.
Read the full Hydrastis Can + Acepromazine interactionAcetaminophenChildren's Tylenol, Children's Tylenol Meltaways, Tylenol, Tylenol Ex Strength
How Acetaminophen interacts with Hepat-Ex (Chelidonium) — through 3 ingredients. Tap an ingredient for the detail:
Taraxacum OffCytochrome P450 1a2 (cyp1a2) Substrates, Glucuronidated Drugs Moderate
Interaction Summary
Theoretically, dandelion might increase levels of drugs metabolized by CYP1A2.
Read the full Taraxacum Off + Acetaminophen interactionHydrastis CanCytochrome P450 2e1 (cyp2e1) Substrates Moderate
Interaction Summary
Theoretically, goldenseal might increase serum levels of drugs metabolized by CYP2E1.
Read the full Hydrastis Can + Acetaminophen interactionCarduus MarGlucuronidated Drugs Moderate
Interaction Summary
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Read the full Carduus Mar + Acetaminophen interactionAcetaminophen, AspirinGemnisyn
How Acetaminophen, Aspirin interacts with Hepat-Ex (Chelidonium) — through 5 ingredients. Tap an ingredient for the detail:
Carduus MarGlucuronidated Drugs Moderate
Interaction Summary
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Read the full Carduus Mar + Acetaminophen, Aspirin interactionTaraxacum OffGlucuronidated Drugs, Anticoagulant/antiplatelet Drugs +1 Moderate
Interaction Summary
Theoretically, dandelion might increase the clearance of drugs that are UDP-glucuronosyltransferase substrates.
Read the full Taraxacum Off + Acetaminophen, Aspirin interactionCinchonaAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, taking cinchona might increase the drug effects and risk of bleeding with anticoagulant and antiplatelet drugs.
Read the full Cinchona + Acetaminophen, Aspirin interactionHydrastis CanCytochrome P450 2e1 (cyp2e1) Substrates, Anticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, goldenseal might increase serum levels of drugs metabolized by CYP2E1.
Read the full Hydrastis Can + Acetaminophen, Aspirin interactionMagnesia MurAnticoagulant/antiplatelet Drugs Minor
Interaction Summary
Theoretically, magnesium may have antiplatelet effects, but the evidence is conflicting.
Read the full Magnesia Mur + Acetaminophen, Aspirin interactionAcetaminophen, Aspirin, CaffeineExcedrin, Excedrin Extra Strength, Excedrin Migraine
How Acetaminophen, Aspirin, Caffeine interacts with Hepat-Ex (Chelidonium) — through 5 ingredients. Tap an ingredient for the detail:
Hydrastis CanAnticoagulant/antiplatelet Drugs, Cytochrome P450 3a4 (cyp3a4) Substrates +1 Moderate
Interaction Summary
Theoretically, goldenseal might increase the risk of bleeding when used with anticoagulant or antiplatelet drugs.
Read the full Hydrastis Can + Acetaminophen, Aspirin, Caffeine interactionCarduus MarGlucuronidated Drugs, Cytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Read the full Carduus Mar + Acetaminophen, Aspirin, Caffeine interactionTaraxacum OffCytochrome P450 1a2 (cyp1a2) Substrates, Anticoagulant/antiplatelet Drugs +1 Moderate
Interaction Summary
Theoretically, dandelion might increase levels of drugs metabolized by CYP1A2.
Read the full Taraxacum Off + Acetaminophen, Aspirin, Caffeine interactionCinchonaAnticoagulant/antiplatelet Drugs Moderate
Interaction Summary
Theoretically, taking cinchona might increase the drug effects and risk of bleeding with anticoagulant and antiplatelet drugs.
Read the full Cinchona + Acetaminophen, Aspirin, Caffeine interactionMagnesia MurAnticoagulant/antiplatelet Drugs Minor
Interaction Summary
Theoretically, magnesium may have antiplatelet effects, but the evidence is conflicting.
Read the full Magnesia Mur + Acetaminophen, Aspirin, Caffeine interactionAcetaminophen, Brompheniramine, PhenylpropanolamineDimetapp Cold and Flu
How Acetaminophen, Brompheniramine, Phenylpropanolamine interacts with Hepat-Ex (Chelidonium) — through 3 ingredients. Tap an ingredient for the detail:
Taraxacum OffCytochrome P450 1a2 (cyp1a2) Substrates, Glucuronidated Drugs Moderate
Interaction Summary
Theoretically, dandelion might increase levels of drugs metabolized by CYP1A2.
Read the full Taraxacum Off + Acetaminophen, Brompheniramine, Phenylpropanolamine interactionHydrastis CanCytochrome P450 2e1 (cyp2e1) Substrates Moderate
Interaction Summary
Theoretically, goldenseal might increase serum levels of drugs metabolized by CYP2E1.
Read the full Hydrastis Can + Acetaminophen, Brompheniramine, Phenylpropanolamine interactionCarduus MarGlucuronidated Drugs Moderate
Interaction Summary
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Read the full Carduus Mar + Acetaminophen, Brompheniramine, Phenylpropanolamine interactionAcetaminophen, ButalbitalAxocet, Bancap, Bucet, Butex Forte, Esgic CF, Orbivan CF +5 more
How Acetaminophen, Butalbital interacts with Hepat-Ex (Chelidonium) — through 3 ingredients. Tap an ingredient for the detail:
Carduus MarGlucuronidated Drugs Moderate
Interaction Summary
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Read the full Carduus Mar + Acetaminophen, Butalbital interactionTaraxacum OffGlucuronidated Drugs, Cytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, dandelion might increase the clearance of drugs that are UDP-glucuronosyltransferase substrates.
Read the full Taraxacum Off + Acetaminophen, Butalbital interactionHydrastis CanCytochrome P450 2e1 (cyp2e1) Substrates Moderate
Interaction Summary
Theoretically, goldenseal might increase serum levels of drugs metabolized by CYP2E1.
Read the full Hydrastis Can + Acetaminophen, Butalbital interactionAcetaminophen, Butalbital, CaffeineEsgic, Esgic Plus, Fiogesic, Fioricet, Repan, Tecnal +1 more
How Acetaminophen, Butalbital, Caffeine interacts with Hepat-Ex (Chelidonium) — through 3 ingredients. Tap an ingredient for the detail:
Hydrastis CanCytochrome P450 2e1 (cyp2e1) Substrates, Cytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, goldenseal might increase serum levels of drugs metabolized by CYP2E1.
Read the full Hydrastis Can + Acetaminophen, Butalbital, Caffeine interactionCarduus MarGlucuronidated Drugs, Cytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Read the full Carduus Mar + Acetaminophen, Butalbital, Caffeine interactionTaraxacum OffCytochrome P450 1a2 (cyp1a2) Substrates, Glucuronidated Drugs Moderate
Interaction Summary
Theoretically, dandelion might increase levels of drugs metabolized by CYP1A2.
Read the full Taraxacum Off + Acetaminophen, Butalbital, Caffeine interactionAcetaminophen, Butalbital, Caffeine, CodeineEsgic with Codeine, Fioricet w/ Codeine
How Acetaminophen, Butalbital, Caffeine, Codeine interacts with Hepat-Ex (Chelidonium) — through 4 ingredients. Tap an ingredient for the detail:
Taraxacum OffGlucuronidated Drugs, Cytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, dandelion might increase the clearance of drugs that are UDP-glucuronosyltransferase substrates.
Read the full Taraxacum Off + Acetaminophen, Butalbital, Caffeine, Codeine interactionHydrastis CanCns Depressants, Cytochrome P450 2d6 (cyp2d6) Substrates +2 Moderate
Interaction Summary
Theoretically, goldenseal might increase the sedative effects of CNS depressants.
Read the full Hydrastis Can + Acetaminophen, Butalbital, Caffeine, Codeine interactionCarduus MarCytochrome P450 3a4 (cyp3a4) Substrates, Glucuronidated Drugs Moderate
Interaction Summary
It is unclear if milk thistle inhibits CYP3A4; research is conflicting.
Read the full Carduus Mar + Acetaminophen, Butalbital, Caffeine, Codeine interactionCinchonaCytochrome P450 2d6 (cyp2d6) Substrates Moderate
Interaction Summary
Theoretically, taking cinchona might inhibit cytochrome P450 2D6 (CYP2D6) and increase levels of drugs metabolized by this enzyme.
Read the full Cinchona + Acetaminophen, Butalbital, Caffeine, Codeine interactionAcetaminophen, Butalbital, CodeineBancap w/ Codeine
How Acetaminophen, Butalbital, Codeine interacts with Hepat-Ex (Chelidonium) — through 4 ingredients. Tap an ingredient for the detail:
CinchonaCytochrome P450 2d6 (cyp2d6) Substrates Moderate
Interaction Summary
Theoretically, taking cinchona might inhibit cytochrome P450 2D6 (CYP2D6) and increase levels of drugs metabolized by this enzyme.
Read the full Cinchona + Acetaminophen, Butalbital, Codeine interactionCarduus MarGlucuronidated Drugs Moderate
Interaction Summary
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Read the full Carduus Mar + Acetaminophen, Butalbital, Codeine interactionHydrastis CanCytochrome P450 2d6 (cyp2d6) Substrates, Cns Depressants +1 Moderate
Interaction Summary
Goldenseal might increase serum levels of drugs metabolized by CYP2D6.
Read the full Hydrastis Can + Acetaminophen, Butalbital, Codeine interactionTaraxacum OffGlucuronidated Drugs, Cytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, dandelion might increase the clearance of drugs that are UDP-glucuronosyltransferase substrates.
Read the full Taraxacum Off + Acetaminophen, Butalbital, Codeine interactionAcetaminophen, Butalbital, Codeine PhosphatePhrenilin #3
How Acetaminophen, Butalbital, Codeine Phosphate interacts with Hepat-Ex (Chelidonium) — through 4 ingredients. Tap an ingredient for the detail:
Hydrastis CanCytochrome P450 2e1 (cyp2e1) Substrates, Cytochrome P450 2d6 (cyp2d6) Substrates +1 Moderate
Interaction Summary
Theoretically, goldenseal might increase serum levels of drugs metabolized by CYP2E1.
Read the full Hydrastis Can + Acetaminophen, Butalbital, Codeine Phosphate interactionCarduus MarGlucuronidated Drugs Moderate
Interaction Summary
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Read the full Carduus Mar + Acetaminophen, Butalbital, Codeine Phosphate interactionCinchonaCytochrome P450 2d6 (cyp2d6) Substrates Moderate
Interaction Summary
Theoretically, taking cinchona might inhibit cytochrome P450 2D6 (CYP2D6) and increase levels of drugs metabolized by this enzyme.
Read the full Cinchona + Acetaminophen, Butalbital, Codeine Phosphate interactionTaraxacum OffCytochrome P450 1a2 (cyp1a2) Substrates, Glucuronidated Drugs Moderate
Interaction Summary
Theoretically, dandelion might increase levels of drugs metabolized by CYP1A2.
Read the full Taraxacum Off + Acetaminophen, Butalbital, Codeine Phosphate interactionAcetaminophen, Caffeine, Chlorpheniramine, Hydrocodone, PhenylephrineHycomine Compound
How Acetaminophen, Caffeine, Chlorpheniramine, Hydrocodone, Phenylephrine interacts with Hepat-Ex (Chelidonium) — through 4 ingredients. Tap an ingredient for the detail:
Hydrastis CanCns Depressants, Cytochrome P450 2d6 (cyp2d6) Substrates +2 Moderate
Interaction Summary
Theoretically, goldenseal might increase the sedative effects of CNS depressants.
Read the full Hydrastis Can + Acetaminophen, Caffeine, Chlorpheniramine, Hydrocodone, Phenylephrine interactionTaraxacum OffCytochrome P450 1a2 (cyp1a2) Substrates, Glucuronidated Drugs Moderate
Interaction Summary
Theoretically, dandelion might increase levels of drugs metabolized by CYP1A2.
Read the full Taraxacum Off + Acetaminophen, Caffeine, Chlorpheniramine, Hydrocodone, Phenylephrine interactionCinchonaCytochrome P450 2d6 (cyp2d6) Substrates Moderate
Interaction Summary
Theoretically, taking cinchona might inhibit cytochrome P450 2D6 (CYP2D6) and increase levels of drugs metabolized by this enzyme.
Read the full Cinchona + Acetaminophen, Caffeine, Chlorpheniramine, Hydrocodone, Phenylephrine interactionCarduus MarGlucuronidated Drugs, Cytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Read the full Carduus Mar + Acetaminophen, Caffeine, Chlorpheniramine, Hydrocodone, Phenylephrine interactionEach ingredient & the kinds of drugs it affects
For each ingredient in Hepat-Ex (Chelidonium) 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.
Hydrastis Can
Anticoagulant/Antiplatelet Drugs
Theoretically, goldenseal might increase the risk of bleeding when used with anticoagulant or antiplatelet drugs.
Goldenseal contains berberine. In vitro and animal research shows that berberine can inhibit platelet aggregation. However, this effect has not been reported in humans.
Antidiabetes Drugs
Theoretically, goldenseal might increase the risk of hypoglycemia when used with antidiabetes drugs.
Goldenseal contains berberine. Clinical research shows that berberine can lower blood glucose levels. However, this effect has not been reported with goldenseal.
Antihypertensive Drugs
Theoretically, goldenseal might increase the risk of hypotension when taken with antihypertensive drugs.
Goldenseal contains berberine. Animal research shows that berberine can have hypotensive effects. Also, an analysis of clinical research shows that taking berberine in combination with amlodipine can lower systolic and diastolic blood pressure when compared with amlodipine alone. However, this effect has not been reported with goldenseal.
Cns Depressants
Theoretically, goldenseal might increase the sedative effects of CNS depressants.
Goldenseal contains berberine. Animal research shows that berberine can have sedative effects. However, this effect has not been reported in humans.
Cytochrome P450 2C9 (Cyp2C9) Substrates
Theoretically, goldenseal might increase serum levels of drugs metabolized by CYP2C9.
In vitro research shows that goldenseal root extract can modestly inhibit CYP2C9. This effect may be due to its alkaloid constituents, hydrastine and berberine. However, this effect has not been reported in humans.
Cytochrome P450 2D6 (Cyp2D6) Substrates
Goldenseal might increase serum levels of drugs metabolized by CYP2D6.
Clinical and in vitro research shows that goldenseal can significantly inhibit CYP2D6 enzymes, potentially increasing levels of drugs metabolized by CYP2D6.
Cytochrome P450 2E1 (Cyp2E1) Substrates
Theoretically, goldenseal might increase serum levels of drugs metabolized by CYP2E1.
In vitro research shows that goldenseal root extract can inhibit the activity of CYP2E1. However, this effect has not been reported in humans.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Goldenseal might increase serum levels of drugs metabolized by CYP3A4.
Most clinical and in vitro research shows that goldenseal inhibits CYP3A4 enzyme activity and increases serum levels of CYP3A4 substrates, such as midazolam. However, in one small clinical study, goldenseal did not affect the levels of indinavir, a CYP3A4 substrate, in healthy volunteers. This is likely due to the fact that indinavir has a high oral bioavailability, making it an inadequate probe for CYP3A4 interactions and/or that it is primarily metabolized by hepatic CYP3A, while goldenseal has more potential to inhibit intestinal CYP3A enzyme activity. Both goldenseal extract and its isolated constituents berberine and hydrastine inhibit CYP3A, with hydrastine possibly having more inhibitory potential than berberine.
Dextromethorphan (Robitussin Dm, Others)
Theoretically, goldenseal might increase serum levels of dextromethorphan.
Goldenseal contains berberine. A small clinical study shows that berberine can inhibit cytochrome P450 2D6 (CYP2D6) activity and reduce the metabolism of dextromethorphan.
Digoxin (Lanoxin)
Goldenseal might increase serum levels of digoxin, although this effect is unlikely to be clinically significant.
Clinical research shows that goldenseal modestly increases digoxin peak levels by about 14% in healthy volunteers. However, goldenseal does not seem to affect other pharmacokinetic parameters such as area under the curve (AUC). This suggests that goldenseal does not cause a clinically significant interaction with digoxin. Digoxin is a P-glycoprotein substrate. Some evidence suggests that goldenseal constituents might affect P-glycoprotein; however, it is unclear whether these constituents inhibit or induce P-glycoprotein.
Losartan (Cozaar)
Theoretically, goldenseal might decrease the conversion of losartan to its active form.
Goldenseal contains berberine. A small clinical study shows that berberine inhibits cytochrome P450 2C9 (CYP2C9) activity and reduces the metabolism of losartan. However, this effect has not been reported with goldenseal.
Metformin (Glucophage)
Theoretically, goldenseal might reduce blood levels of metformin.
In vitro research shows that goldenseal extract decreases the bioavailability of metformin, likely by interfering with transport, intestinal permeability, or other processes involved in metformin absorption. It is unclear which, if any, of metformin's transporters are inhibited by goldenseal. Goldenseal does not appear to alter the clearance or half-life of metformin.
P-Glycoprotein Substrates
Theoretically, goldenseal might increase or decrease serum levels of P-glycoprotein (P-gp) substrates.
There is conflicting evidence about the effect of goldenseal on P-gp. In vitro research suggests that berberine, a constituent of goldenseal, modestly inhibits P-gp efflux. Other evidence suggests that berberine induces P-gp. In healthy volunteers, goldenseal modestly increases peak levels of the P-gp substrate digoxin by about 14%. However, it does not seem to affect other pharmacokinetic parameters such as area under the curve (AUC). This suggests that goldenseal is not a potent inhibitor of P-gp-mediated drug efflux. Until more is known, goldenseal should be used cautiously with P-gp substrates.
Pentobarbital (Nembutal)
Theoretically, goldenseal might increase the sedative effects of pentobarbital.
Animal research shows that berberine, a constituent of goldenseal, can prolong pentobarbital-induced sleeping time. However, this effect has not been reported with goldenseal.
Tacrolimus (Prograf)
Theoretically, goldenseal might increase serum levels of tacrolimus.
Goldenseal contains berberine. In a 16-year-old patient with idiopathic nephrotic syndrome who was being treated with tacrolimus 6.5 mg twice daily, intake of berberine 200 mg three times daily increased the blood concentration of tacrolimus from 8 to 22 ng/mL. Following a reduction of tacrolimus dosing to 3 mg daily, blood levels of tacrolimus decreased to 12 ng/mL.
Oseltamivir (Tamiflu)
Theoretically, goldenseal might reduce the therapeutic effects of oseltamivir by decreasing its conversion to its active form.
In vitro evidence suggests that goldenseal reduces the formation of the active compound from the prodrug oseltamivir. The mechanism of action and clinical relevance is unclear.
Carduus Mar
Antidiabetes Drugs
Taking milk thistle with antidiabetes drugs may increase the risk of hypoglycemia.
Clinical research shows that milk thistle extract, alone or along with tree turmeric extract, can lower blood glucose levels and glycated hemoglobin (HbA1c) in patients with type 2 diabetes, including those already taking antidiabetes drugs. Additionally, animal research shows that milk thistle extract increases the metformin maximum plasma concentration and area under the curve and decreases the renal clearance of metformin, due to inhibition of the multi-drug and toxin extrusion protein 1 (MATE1) renal tubular transport protein.
Cytochrome P450 2B6 (Cyp2B6) Substrates
Theoretically, milk thistle might inhibit CYP2B6.
An in vitro study shows that silybin, a constituent of milk thistle, binds to and noncompetitively inhibits CYP2B6. Additionally, silybin might downregulate the expression of CYP2B6 by decreasing mRNA and protein levels.
Glucuronidated Drugs
Theoretically, milk thistle might affect the clearance of drugs that undergo glucuronidation.
Laboratory research shows that milk thistle constituents inhibit uridine diphosphoglucuronosyl transferase (UGT), the major phase 2 enzyme that is responsible for glucuronidation. Theoretically, this could decrease the clearance and increase levels of glucuronidated drugs. Other laboratory research suggests that a milk thistle extract of silymarin might inhibit beta-glucuronidase, although the significance of this effect is unclear.
Ledipasvir
Theoretically, milk thistle might increase the levels and clinical effects of ledipasvir.
Animal research in rats shows that milk thistle increases the area under the curve (AUC) for ledipasvir and slows its elimination.
Morphine
Theoretically, concomitant use of milk thistle with morphine might affect serum levels of morphine and either increase or decrease its effects.
Animal research shows that milk thistle reduces serum levels of morphine by up to 66%. In contrast, laboratory research shows that milk thistle constituents inhibit uridine diphosphoglucuronosyl transferase (UGT), the major phase 2 enzyme that is responsible for glucuronidation. Theoretically, this could decrease the clearance and increase morphine levels. The effect of taking milk thistle on morphine metabolism in humans is not known.
Raloxifene (Evista)
Theoretically, milk thistle might decrease the clearance and increase levels of raloxifene.
Laboratory research suggests that the milk thistle constituents silibinin and silymarin inhibit the glucuronidation of raloxifene in the intestines.
Sirolimus (Rapamune)
Milk thistle might decrease the clearance of sirolimus.
Pharmacokinetic research shows that a milk thistle extract of silymarin decreases the apparent clearance of sirolimus in hepatically impaired renal transplant patients. It is unclear if this interaction occurs in patients without hepatic impairment.
Sofosbuvir (Solvaldi)
Theoretically, milk thistle might decrease the levels and clinical effects of sofosbuvir.
Animal research in rats shows that milk thistle reduces the metabolism of sofosbuvir, as well as the hepatic uptake of its active metabolite.
Tamoxifen (Nolvadex)
Theoretically, the milk thistle constituent silibinin might increase tamoxifen levels and interfere with its conversion to an active metabolite.
Animal research suggests that the milk thistle constituent silibinin might increase plasma levels of tamoxifen and alter its conversion to an active metabolite. The mechanism appears to involve inhibition of pre-systemic metabolism of tamoxifen by cytochrome P450 (CYP) 2C9 and CYP3A4, and inhibition of P-glycoprotein-mediated efflux of tamoxifen into the intestine for excretion. Whether this interaction occurs in humans is not known.
Warfarin (Coumadin)
Theoretically, milk thistle might increase the effects of warfarin.
In one case report, a man stabilized on warfarin experienced an increase in INR from 2.64 to 4.12 after taking a combination product containing milk thistle 200 mg daily, as well as dandelion, wild yam, niacinamide, and vitamin B12. Levels returned to normal after stopping the supplement. Although a direct correlation between milk thistle and the change in INR cannot be confirmed, some in vitro research suggests that milk thistle might inhibit cytochrome P450 2C9 (CYP2C9), an enzyme involved in the metabolism of various drugs, including warfarin.
Cytochrome P450 2C9 (Cyp2C9) Substrates
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
In vitro research suggests that milk thistle might inhibit CYP2C9. Additionally, 3 case reports from the World Health Organization (WHO) adverse drug reaction database describe increased toxicity in patients taking milk thistle and cancer medications that are CYP2C9 substrates, including imatinib and capecitabine. However, contradictory clinical research shows that milk thistle extract does not inhibit CYP2C9 or significantly affect levels of the CYP2C9 substrate tolbutamide. Differences in results could be due to differences in dosages or formulations utilized.
Cytochrome P450 3A4 (Cyp3A4) Substrates
It is unclear if milk thistle inhibits CYP3A4; research is conflicting.
While laboratory research shows conflicting results, pharmacokinetic research shows that taking milk thistle extract 420-1350 mg daily does not significantly affect the metabolism of the CYP3A4 substrates irinotecan, midazolam, or indinavir. However, 8 case reports from the World Health Organization (WHO) adverse drug reaction database describe increased toxicity in patients taking milk thistle and cancer medications that are CYP3A4 substrates, including gefitinib, sorafenib, doxorubicin, and vincristine.
Estrogens
Theoretically, milk thistle might interfere with estrogen therapy through competition for estrogen receptors.
Animal research suggests that a milk thistle extract of silymarin binds to estrogen receptor beta.
Hmg-Coa Reductase Inhibitors ("Statins")
Theoretically, milk thistle might interfere with statin therapy by decreasing the activity of organic anion transporting polypeptide 1B1 (OATB1B1) and inhibiting breast cancer resistance protein (BCRP).
Preliminary evidence suggests that a milk thistle extract of silymarin can decrease the activity of the OATP1B1, which transports HMG-CoA reductase inhibitors into the liver to their site of action, and animal research shows this increases the maximum plasma concentration of pitavastatin and pravastatin. The silibinin component also inhibits BCRP, which transports statins from the liver into the bile for excretion. However, in a preliminary study in healthy males, silymarin 140 mg three times daily had no effect on the pharmacokinetics of a single 10 mg dose of rosuvastatin.
Indinavir (Crixivan)
Theoretically, milk thistle may induce cytochrome P450 3A4 (CYP3A4) enzymes and increase the metabolism of indinavir; however, results are conflicting.
One pharmacokinetic study shows that taking milk thistle (Standardized Milk Thistle, General Nutrition Corp.) 175 mg three times daily in combination with multiple doses of indinavir 800 mg every 8 hours decreases the mean trough levels of indinavir by 25%. However, results from the same pharmacokinetic study show that milk thistle does not affect the overall exposure to indinavir. Furthermore, two other pharmacokinetic studies show that taking specific milk thistle extract (Legalon, Rottapharm Madaus; Thisilyn, Nature's Way) 160-450 mg every 8 hours in combination with multiple doses of indinavir 800 mg every 8 hours does not reduce levels of indinavir.
Organic Anion-Transporting Polypeptide Substrates (Oatp)
Milk thistle may inhibit one form of OATP, OATP-B1, which could reduce the bioavailability and clinical effects of OATP-B1 substrates.
In vitro research shows that milk thistle inhibits OATP-B1. Two case reports from the World Health Organization (WHO) adverse drug reaction database describe increased toxicity in patients taking milk thistle and cancer medications that are OATP substrates, including sorafenib and methotrexate. OATPs are expressed in the small intestine and liver and are responsible for the uptake of drugs and other compounds into the body. Inhibition of OATP may reduce the bioavailability of oral drugs that are substrates of OATP.
P-Glycoprotein Substrates
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates. However, this effect does not seem to be clinically significant.
In vitro research shows that milk thistle can inhibit P-glycoprotein activity and 1 case report from the World Health Organization (WHO) adverse drug reaction database describes increased abdominal pain in a patient taking milk thistle and the cancer medication vincristine, a P-glycoprotein substrate, though this patient was also taking methotrexate. However, a small pharmacokinetic study in healthy volunteers shows that taking milk thistle (Enzymatic Therapy Inc.) 900 mg, standardized to 80% silymarin, in 3 divided doses daily for 14 days does not affect absorption of digoxin, a P-glycoprotein substrate.
Cinchona
Quinidine
Theoretically, taking cinchona might increase plasma levels and adverse effects of quinidine.
Cinchona contains quinidine.
Quinine
Theoretically, taking cinchona might increase plasma levels and adverse effects of quinine.
Cinchona contains quinine.
Antacids
Theoretically, taking cinchona might decrease the effectiveness of antacids. Theoretically, taking antacids might also increase the risk of adverse effects from cinchona.
Some research shows that taking cinchona lowers stomach acid pH. In addition, some research shows that taking antacids might increase urinary pH. Theoretically, this may increase the amount of quinidine, a constituent of cinchona, reabsorbed in the renal tubules and increase the risk of quinidine toxicity.
Anticoagulant/Antiplatelet Drugs
Theoretically, taking cinchona might increase the drug effects and risk of bleeding with anticoagulant and antiplatelet drugs.
In vitro evidence shows that the alkaloids quinine, quinidine, and cinchonine, constituents of cinchona, inhibit platelet aggregation.
Carbamazepine (Tegretol)
Theoretically, taking cinchona might increase the adverse effects of carbamazepine.
Clinical research shows that taking quinine, a constituent of cinchona, increases the peak plasma concentration and area under the curve of carbamazepine.
Cytochrome P450 2D6 (Cyp2D6) Substrates
Theoretically, taking cinchona might inhibit cytochrome P450 2D6 (CYP2D6) and increase levels of drugs metabolized by this enzyme.
Quinidine, a constituent of cinchona, inhibits CYP2D6-mediated metabolism in humans.
Digoxin (Lanoxin)
Theoretically, taking cinchona might increase serum levels of digoxin.
Quinine and quinidine, which are constituents of cinchona, decrease clearance of digoxin and increase serum digoxin levels in humans.
Phenobarbital (Luminal)
Theoretically, taking cinchona might increase the adverse effects of phenobarbital.
Clinical research shows that taking quinine, a constituent of cinchona, increases the peak plasma concentration and area under the curve of phenobarbital.
Qt Interval-Prolonging Drugs
Theoretically, taking cinchona with other QT interval-prolonging drugs might cause an additive effect and increase the risk of ventricular arrhythmias.
Quinidine and quinine, which are constituents of cinchona, prolong the QT interval.
H2-Blockers
Theoretically, taking cinchona might decrease the effectiveness of H2-blockers.
Some research shows that taking cinchona lowers stomach acid pH.
Proton Pump Inhibitors (Ppis)
Theoretically, taking cinchona might decrease the effectiveness of PPIs.
Some research shows that taking cinchona lowers stomach acid pH.
Taraxacum Off
Anticoagulant/Antiplatelet Drugs
Theoretically, taking dandelion root along with anticoagulant or antiplatelet drugs might increase the risk of bruising and bleeding.
In vitro research suggests that dandelion root inhibits platelet aggregation.
Antidiabetes Drugs
Theoretically, dandelion might increase the risk for hypoglycemia when used with antidiabetes drugs.
Laboratory research suggests that dandelion extract may have moderate alpha-glucosidase inhibitor activity and might also increase insulin secretion. Also, in a case report, a 58-year-old woman with type 2 diabetes who was being treated with insulin developed hypoglycemia 2 weeks after beginning to eat salads containing dandelion.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Theoretically, dandelion might increase levels of drugs metabolized by CYP1A2.
Laboratory research suggests that dandelion might inhibit CYP1A2. So far, this interaction has not been reported in humans. However, until more is known, watch for an increase in the levels of drugs metabolized by CYP1A2 in patients taking dandelion.
Glucuronidated Drugs
Theoretically, dandelion might increase the clearance of drugs that are UDP-glucuronosyltransferase substrates.
There is some preliminary evidence that dandelion might induce UDP-glucuronosyltransferase, a phase II enzyme.
Lithium
Theoretically, through diuretic effects, dandelion might reduce excretion and increase levels of lithium.
Animal research suggests that dandelion has diuretic properties. As diuretics can increase serum lithium levels, the dose of lithium might need to be decreased when taken with dandelion.
Potassium-Sparing Diuretics
Theoretically, dandelion might increase the risk of hyperkalemia when taken with potassium-sparing diuretics.
Dandelion contains significant amounts of potassium.
Quinolone Antibiotics
Theoretically, dandelion might lower fluoroquinolone levels.
Animal research shows that dandelion reduces absorption of ciprofloxacin and can lower levels by 73%. However, this effect has not been reported in humans.
Magnesia Mur
Levodopa/Carbidopa (Sinemet)
Magnesium can reduce the bioavailability of levodopa/carbidopa.
Clinical research in healthy volunteers shows that taking magnesium oxide 1000 mg with levodopa 100 mg/carbidopa 10 mg reduces the area under the curve (AUC) of levodopa by 35% and of carbidopa by 81%. In vitro and animal research shows that magnesium produces an alkaline environment in the digestive tract, which might lead to degradation and reduced bioavailability of levodopa/carbidopa.
Aminoglycoside Antibiotics
Concomitant use of aminoglycoside antibiotics and magnesium can increase the risk for neuromuscular weakness.
Both aminoglycosides and magnesium reduce presynaptic acetylcholine release, which can lead to neuromuscular blockade and possible paralysis. This is most likely to occur with high doses of magnesium given intravenously.
Antacids
Use of acid reducers may reduce the laxative effect of magnesium oxide.
A retrospective analysis shows that, in the presence of H2 receptor antagonists (H2RAs) or proton pump inhibitors (PPIs), a higher dose of magnesium oxide is needed for a laxative effect. This may also occur with antacids. Under acidic conditions, magnesium oxide is converted to magnesium chloride and then to magnesium bicarbonate, which has an osmotic laxative effect. By reducing acidity, antacids may reduce the conversion of magnesium oxide to the active bicarbonate salt.
Bictegravir/Emtricitabine/Tenofovir Alafenamide (Biktarvy)
Magnesium might decrease levels of bictegravir/emtricitabine/tenofovir alafenamide by reducing its absorption.
Advise patients that bictegravir/emtricitabine/tenofovir alafenamide should be taken at least 2 hours before or 6 hours after magnesium containing products.
Bisphosphonates
Magnesium can decrease absorption of bisphosphonates.
Cations, including magnesium, can decrease bisphosphonate absorption. Advise patients to separate doses of magnesium and these drugs by at least 2 hours.
Calcium Channel Blockers
Magnesium can have additive effects with calcium channel blockers, although evidence is conflicting.
Magnesium inhibits calcium entry into smooth muscle cells and may therefore have additive effects with calcium channel blockers. Severe hypotension and neuromuscular blockades may occur when nifedipine is used with intravenous magnesium, although some contradictory evidence suggests that concurrent use of magnesium with nifedipine does not increase the risk of neuromuscular weakness. High doses of magnesium could theoretically have additive effects with other calcium channel blockers.
Digoxin
Magnesium salts may reduce absorption of digoxin.
Clinical evidence suggests that treatment with oral magnesium hydroxide or magnesium trisilicate reduces absorption of digoxin from the intestines. This may reduce the blood levels of digoxin and decrease its therapeutic effects.
Potassium-Sparing Diuretics
Potassium-sparing diuretics decrease excretion of magnesium, possibly increasing magnesium levels.
Potassium-sparing diuretics also have magnesium-sparing properties, which can counteract the magnesium losses associated with loop and thiazide diuretics. Theoretically, increased magnesium levels could result from concomitant use of potassium-sparing diuretics and magnesium supplements.
Quinolone Antibiotics
Magnesium decreases absorption of quinolones.
Magnesium can form insoluble complexes with quinolones and decrease their absorption. Advise patients to take these drugs at least 2 hours before, or 4 to 6 hours after, magnesium supplements.
Skeletal Muscle Relaxants
Parenteral magnesium alters the pharmacokinetics of skeletal muscle relaxants, increasing their effects and accelerating the onset of effect.
Parenteral magnesium shortens the time to onset of skeletal muscle relaxants by about 1 minute and prolongs the duration of action by about 2 minutes. Magnesium potentiates the effects of skeletal muscle relaxants by decreasing calcium-mediated release of acetylcholine from presynaptic nerve terminals, reducing postsynaptic sensitivity to acetylcholine, and having a direct effect on the membrane potential of myocytes. Magnesium also has vasodilatory actions and increases cardiac output, allowing a greater amount of muscle relaxant to reach the motor end plate. A clinical study found that low-dose rocuronium (0.45 mg/kg), when given after administration of magnesium 30 mg/kg over 10 minutes, has an accelerated onset of effect, which matches the onset of effect seen with a full-dose rocuronium regimen (0.6 mg/kg). In another clinical study, onset times for rocuronium doses of 0.3, 0.6, and 1.2 mg/kg were 86, 76, and 50 seconds, respectively, when given alone, but were reduced to 66, 44, and 38 seconds, respectively, when the doses were given after a 15-minute infusion of magnesium sulfate 60 mg/kg. Giving intraoperative intravenous magnesium sulfate, 50 mg/kg loading dose followed by 15 mg/kg/hour, reduces the onset time of rocuronium, enhances its clinical effects, reduces the dose of intraoperative opiates, and prolongs the spontaneous recovery time. It does not affect the activity of subsequently administered neostigmine.
Sulfonylureas
Magnesium increases the systemic absorption of sulfonylureas, increasing their effects and side effects.
Clinical research shows that administration of magnesium hydroxide with glyburide increases glyburide absorption, increases maximal insulin response by 35-fold, and increases the risk of hypoglycemia, when compared with glyburide alone. A similar interaction occurs between magnesium hydroxide and glipizide. The mechanism of this effect appears to be related to the elevation of gastrointestinal pH by magnesium-based antacids, increasing solubility and enhancing absorption of sulfonylureas.
Tetracycline Antibiotics
Magnesium decreases absorption of tetracyclines.
Magnesium can form insoluble complexes with tetracyclines in the gut and decrease their absorption and antibacterial activity. Advise patients to take these drugs 1 hour before or 2 hours after magnesium supplements.
Anticoagulant/Antiplatelet Drugs
Theoretically, magnesium may have antiplatelet effects, but the evidence is conflicting.
In vitro evidence shows that magnesium sulfate inhibits platelet aggregation, even at low concentrations. Some preliminary clinical evidence shows that infusion of magnesium sulfate increases bleeding time by 48% and reduces platelet activity. However, other clinical research shows that magnesium does not affect platelet aggregation, although inhibition of platelet-dependent thrombosis can occur.
Gabapentin (Neurontin)
Gabapentin absorption can be decreased by magnesium.
Clinical research shows that giving magnesium oxide orally along with gabapentin decreases the maximum plasma concentration of gabapentin by 33%, time to maximum concentration by 36%, and area under the curve by 43%. Advise patients to take gabapentin at least 2 hours before, or 4 to 6 hours after, magnesium supplements.
Sevelamer (Renagel, Renvela)
Sevelamer may increase serum magnesium levels.
In patients on hemodialysis, sevelamer use was associated with a 0.28 mg/dL increase in serum magnesium. The mechanism of this interaction remains unclear.
Solidago virg
Diuretic Drugs
Theoretically, goldenrod might increase the effects and adverse effects of diuretic drugs.
In vitro and animal research suggests that goldenrod has diuretic effects.
Brand information
Manufacturer and brand details for Hepat-Ex (Chelidonium), from the product label.
Douglas Laboratories
See all Douglas Laboratories products- Name
- Douglas Laboratories
- Street Address
- 600 Boyce Road
- City
- Pittsburgh
- State
- PA
- ZipCode
- 15205
- Web Address
- www.douglaslabs.com
Hepat-Ex (Chelidonium) by Douglas Laboratories: 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 Hepat-Ex (Chelidonium)’s Ingredients
Every ingredient we hold a full HelloPharmacist monograph for — uses, evidence, safety, and the complete interaction list.
Dandelion
Interacts with 457 drugsDandelion is a common plant used in food and traditional medicine, often promoted as a natural 'water pill' and digestive aid. Human evidence for these uses is very limited, so its benefits...
Read the full Dandelion monograph → Herb & supplement monographMilk Thistle
Interacts with 954 drugsMilk thistle is a popular herbal supplement most often used for liver health, and its main active component is a group of compounds called silymarin. While it is generally well tolerated, th...
Read the full Milk Thistle monograph → Herb & supplement monographGoldenrod
Interacts with 75 drugsGoldenrod is a flowering plant traditionally used as an herbal diuretic and for urinary tract health. Human evidence is limited, and while it is generally well tolerated, people with certain...
Read the full Goldenrod monograph → Herb & supplement monographGoldenseal
Interacts with 1,237 drugsGoldenseal is a popular North American herb that contains berberine, a compound studied for antimicrobial effects. However, strong human evidence for its many traditional uses is largely lac...
Read the full Goldenseal monograph → Herb & supplement monographMagnesium
Interacts with 295 drugsMagnesium is an essential mineral your body needs for muscles, nerves, blood pressure, and many other functions, and supplements are useful for preventing or correcting deficiency. Some othe...
Read the full Magnesium monograph → Herb & supplement monographCinchona
Interacts with 492 drugsCinchona bark is the natural source of quinine and has been used for centuries to treat malaria and fever, but the bark itself is not standardized and can be unpredictable and risky. Modern...
Read the full Cinchona monograph →Sources & How We Checked
Hepat-Ex (Chelidonium)'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 233 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.
Dandelion 27 references
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- Jovanovic M, Mimica-Dukic N, Poljacki M, Boza P. Erythema multiforme due to contact with weeds: a recurrence after patch testing. Contact Dermatitis 2003;48:17-25. PubMed
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- Rodriguez, B., Rodriguez, A., de Barrio, M., Tornero, P., and Baeza, M. L. Asthma induced by canary food mix. Allergy Asthma Proc. 2003;24(4):265-268.
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- Davies, M. G. and Kersey, P. J. Contact allergy to yarrow and dandelion. Contact Dermatitis 1986;14(4):256-257. PubMed
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Milk Thistle 69 references
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- Anon. Milk thistle: Effects on liver disease and cirrhosis and clinical adverse effects. Summary, Evidence Report/Technology Assessment: Number 21, September 2000. Agency for Healthcare Research and Quality, Rockville, MD. Available at: http://www.ahrq.g
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- Venkataramanan R, Ramachandran V, Komoroski BJ, et al. Milk thistle, a herbal supplement, decreases the activity of CYP3A4 and uridine diphosphoglucuronosyl transferase in human hepatocyte cultures. Drug Metab Dispos 2000;28:1270-3. DOI
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- Pares A, Planas R, Torres M, et al. Effects of silymarin in alcoholic patients with cirrhosis of the liver: results of a controlled, double-blind, randomized and multicenter trial. J Hepatol 1998;28:615-21. PubMed
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- Gurley BJ, Gardner SF, Hubbard MA, et al. In vivo assessment of botanical supplementation on human cytochrome P450 phenotypes: Citrus aurantium, Echinacea purpurea, milk thistle, and saw palmetto. Clin Pharmacol Ther 2004;76:428-40. .
- Huseini HF, Larijani B, Heshmat R, et al. The efficacy of Silybum marianum (L.) Gaertn. (silymarin) in the treatment of type II diabetes: a randomized, double-blind, placebo-controlled, clinical trial. Phytother Res 2006;20;1036-9.
- Deng JW, Shon JH, Shin HJ, et al. Effect of silymarin supplement on the pharmacokinetics of rosuvastatin. Pharm Res 2008;25:1807-14. PubMed
- Kim CS, Choi SJ, Park CY, et al. Effects of silybinin on the pharmacokinetics of tamoxifen and its active metabolite, 4-hydroxytamoxifen in rats. Anticancer Res 2010;30:79-85.
- Sridar C, Goosen TC, Kent UM, et al. Silybin inactivates cytochromes P450 3A4 and 2C9 and inhibits major hepatic glucuronosyltransferases. Drug Metab Dispos 2004;32:587-94. PubMed
- van Erp NP, Baker SD, Zhao M, et al. Effect of milk thistle (Silybum marianum) on the pharmacokinetics of irinotecan. Clin Cancer Res 2005;11:7800-6.
- Budzinski JW, Trudeau VL, Drouin CE, et al. Modulation of human cytochrome P450 3A4 (CYP3A4) and P-glycoprotein (P-gp) in Caco-2 cell monolayers by selected commercial-source milk thistle and goldenseal products. Can J Physiol Pharmacol 2007;85:966-78.
- Doehmer J, Weiss G, McGregor GP, Appel K. Assessment of a dry extract from milk thistle (Silybum marianum) for interference with human liver cytochrome-P450 activities. Toxicol In Vitro 2011;25:21-7. PubMed
- Jiao Z, Shi XJ, Li ZD, et al. Population pharmacokinetics of sirolimus in de novo Chinese adult renal transplant patients. Br.J.Clin.Pharmacol. 2009;68(1):47-60.
- Gurley, B. J., Barone, G. W., Williams, D. K., Carrier, J., Breen, P., Yates, C. R., Song, P. F., Hubbard, M. A., Tong, Y., and Cheboyina, S. Effect of milk thistle (Silybum marianum) and black cohosh (Cimicifuga racemosa) supplementation on digoxin phar
- Allain, H., Schuck, S., Lebreton, S., Strenge-Hesse, A., Braun, W., Gandon, J. M., and Brissot, P. Aminotransferase levels and silymarin in de novo tacrine-treated patients with Alzheimer's disease. Dement.Geriatr.Cogn Disord. 1999;10(3):181-185. PubMed
- Angulo, P., Patel, T., Jorgensen, R. A., Therneau, T. M., and Lindor, K. D. Silymarin in the treatment of patients with primary biliary cirrhosis with a suboptimal response to ursodeoxycholic acid. Hepatology 2000;32(5):897-900. PubMed
- Bean, P. The use of alternative medicine in the treatment of hepatitis C. Am.Clin.Lab 2002;21(4):19-21.
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- El-Kamary, S. S., Shardell, M. D., Abdel-Hamid, M., Ismail, S., El-Ateek, M., Metwally, M., Mikhail, N., Hashem, M., Mousa, A., Aboul-Fotouh, A., El-Kassas, M., Esmat, G., and Strickland, G. T. A randomized controlled trial to assess the safety and effic
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Goldenrod 6 references
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