CLNZ Chelator Ingredients & Drug Interactions
by Systemic Formulas Bio Challenge
What is this page for?
First and foremost: checking CLNZ Chelator 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
CLNZ Chelator is a dietary supplement by Systemic Formulas Bio Challenge with 13 active ingredients. Its ingredients are commonly taken for acetaminophen (tylenol) overdose support, liver health, urinary tract acidification.Based on those ingredients, 1,279 medications have a known interaction with it, the most serious rated major. The ingredients most likely to interact are Milk Thistle, Vitamin E, Dandelion. Use the checker below to test your specific medication, or read the full HelloPharmacist Interaction Report.
Check Your Meds Against CLNZ Chelator by Systemic Formulas Bio Challenge
Ask about any prescription or over-the-counter medication and we check it for interactions with CLNZ Chelator by Systemic Formulas Bio Challenge — and tell you which ingredient is responsible.
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HelloPharmacist Scorecard of CLNZ Chelator by Systemic Formulas Bio Challenge
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
CLNZ Chelator contains 13 ingredients total. The active ones are L-methionine (an amino acid), vitamin E (a fat-soluble antioxidant), dandelion (a plant used traditionally in herbal medicine), yucca (a plant source), pfaffia or suma (a South American herb), milk thistle (known for liver support), wahoo (a plant with cardiac glycoside compounds), bitter almond (a kernel extract), and several tissue-based factors.
The product also holds a proprietary blend — its exact makeup and amounts aren't disclosed. The inactive ingredients are gelatin (the capsule) and stearic acid (a binder).
Does it work?
Moderate evidence
The evidence for this product is thin. L-methionine is rated possibly effective for preventing neural tube birth defects, but lacks reliable evidence for acetaminophen poisoning, allergies, asthma, and colorectal cancer.
Vitamin E is effective for true vitamin E deficiency and a rare genetic condition (AVED), and possibly effective for Alzheimer's and a couple of blood disorders, but evidence is insufficient for many other uses. Dandelion, yucca, and pfaffia all lack sufficient evidence for the conditions they're sometimes used for — joint pain and related issues.
Milk thistle is possibly effective for type 2 diabetes but insufficient for acne, liver disease, allergies, and other conditions. Bitter almond and wahoo have no effectiveness ratings in our data.
Overall, we don't have established evidence that this formulation works for a specific health goal.
How safe is it?
Well-documented data
L-methionine is well tolerated in food amounts, but high-dose supplements may cause dizziness, drowsiness, low blood pressure, irritability, vomiting, headache, and high homocysteine levels — rare serious effects include brain swelling and liver encephalopathy. Vitamin E from food and normal supplements is generally safe; high doses carry a small but real risk of bleeding and (in some studies) hemorrhagic stroke.
Dandelion is usually well tolerated but can cause diarrhea, heartburn, and stomach discomfort; rare allergic reactions including anaphylaxis are possible, especially in people sensitive to ragweed and related plants. Yucca and pfaffia have limited safety data and carry unknown risks.
Milk thistle is generally well tolerated with mild GI side effects (bloating, diarrhea, nausea) but rare anaphylaxis reported. Wahoo is poisonous — it causes severe stomach upset, bloody diarrhea, fever, breathing trouble, and neurological collapse, and is considered unsafe for consumption.
Bitter almond is also unsafe; it contains amygdalin, which breaks down to cyanide in the body and can cause CNS depression, respiratory failure, and death. Several ingredients lack pregnancy and breastfeeding safety data.
Meds to double-check
Major interaction found
Stop and check with your pharmacist or doctor immediately if you take digoxin (contraindicated due to Major cardiac toxicity risk). Be cautious if you're on any blood thinner or antiplatelet drug, diabetes medications, warfarin, cyclosporine, stimulant laxatives, potassium-sparing diuretics, lithium, or macrolide/tetracycline antibiotics — these all carry documented Moderate interactions.
Do not use this product if you take CNS depressants, as bitter almond adds a Moderate risk.
The bottom line
Scorecard at a glanceFormula with limited ingredient disclosure with some supporting evidence for its stated purpose. Major medication interactions have been identified, and safety information is well characterized.
This product contains wahoo and bitter almond, both of which are considered unsafe and poisonous — neither should be ingested. Beyond that concern, if you're on digoxin, blood thinners, diabetes drugs, or immune-suppressing medications, do not use this product without talking to your pharmacist or doctor first.
The evidence that it works for any specific condition is not established. Talk to your pharmacist before starting.
Educational only — not medical advice; always confirm with your pharmacist. Our editorial policy · How we use AI
Assessment coverage: 9 of 13 active ingredients matched to our full ingredient reviews (monographs). Based on the product label dated Jun 25, 2013.
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 CLNZ Chelator, straight from the product label.
| Brand | Systemic Formulas Bio Challenge |
|---|---|
| Barcode (UPC) | 635585040815 |
| Net contents | 60 Capsule(s) |
| Market status | On market |
| Date entered into DSLD | Jun 25, 2013 |
| DSLD ID | 22135 |
| Product type | Other Combinations |
| Supplement form | Capsule |
| Dietary claims / uses | All Other, Structure/Function |
| Intended target group(s) | Adult (18 - 50 Years) |
Everything in this section is reproduced from the manufacturer’s own product label — it’s the label speaking, not HelloPharmacist. We show it so you can see exactly what the maker states; we don’t verify or endorse those statements.
Supplement Facts
The label details for CLNZ Chelator by Systemic Formulas Bio Challenge, sourced from the NIH Dietary Supplement Label Database.
Supplement Facts
| Ingredient | Amount | % DV |
|---|---|---|
| L-Methionine | 46 mg | -- |
| Vitamin E | 120 IU | 400% |
| Proprietary Blend | 1300 mg | -- |
| RNA/DNA Liver Tissue Factors | 0 NP | -- |
| Dandelion | 0 NP | -- |
| Yucca | 0 NP | -- |
| Pfaffia | 0 NP | -- |
| Cinquefoil | 0 NP | -- |
| Milk Thistle | 0 NP | -- |
| Mountain Mahogany | 0 NP | -- |
| RNA/DNA Blood Tissue Factors | 0 NP | -- |
| Wahoo | 0 NP | -- |
| Urea | 0 NP | -- |
| Bitter Almond | 0 NP | -- |
Other ingredients: Gelatin, Stearic Acid
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.
Storage
Keep away from Heat, Sunlight and Children.
Precautions
Keep away from Heat, Sunlight and Children.
General
#408 C/12
General Statements
Helps the body create micro and macro mineral balance.
SOLD THROUGH PROFESSIONALS
MADE IN U.S.A.
FDA Disclaimer Statement
This statement has not been evaluated by the Food and Drug Administration. This product is not intended to diagnose, treat, or prevent any diseases.
Suggested/Recommended/Usage/Directions
DIRECTIONS FOR NUTRITIONAL USE: 1-3 capsules at bedtime for 1-2 months, or as directed. Then, take as needed for maintenance. Increase the amount of liquids you drink each day while taking this product.
FDA Statement of Identity
Dietary Supplement
Is this label outdated? Report a formula or label change and our pharmacy team will review it.
CLNZ Chelator by Systemic Formulas Bio Challenge 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 CLNZ Chelator by Systemic Formulas Bio Challenge
These are the 13 active ingredients this product is made of. Select any to open its full monograph.
Serving size1 Capsule(s) Dosage formCapsule Amounts shown are per serving.
Most supplement products combine several ingredients, and a medication can interact with the product through any one of them. Each ingredient below shows whether it has known drug interactions.
L-Methionine
No knowninteractions
Methionine is an essential amino acid that your body needs for protein building and many basic chemical reactions. Most people get enough from a norma...
L-Methionine monograph & interactionsVitamin E
Interacts with764 drugs
Vitamin E is an essential fat-soluble vitamin and antioxidant that most people get in adequate amounts from a normal diet. Supplements can help correc...
Vitamin E monograph & interactionsProprietary Blend
- › RNA/DNA Liver Tissue Factors
- › Dandelion
- › Yucca
- › Pfaffia
- › Cinquefoil
- › Milk Thistle
- › Mountain Mahogany
- › RNA/DNA Blood Tissue Factors
- › Wahoo
- › Urea
- › Bitter Almond
Other (inactive) ingredients: Gelatin, Stearic Acid. These complete the product’s ingredient list but are not active constituents.
CLNZ Chelator by Systemic Formulas Bio Challenge Drug Interactions
HelloPharmacist Interaction Report
CLNZ Chelator by Systemic Formulas Bio Challenge contains several ingredients with documented interactions with medications.
The most serious is wahoo, which is contraindicated with digoxin (a heart medication); using them together carries a Major risk of cardiac toxicity. Wahoo also interacts with diuretics, stimulant laxatives, and certain antibiotics (macrolide and tetracycline types) — all Moderate severity due to potential cardiac glycoside toxicity, often tied to potassium loss.
Read the full breakdown — every affected drug type, severity by severity
Vitamin E poses Moderate interactions with blood thinners (anticoagulants and antiplatelet drugs), some chemotherapy agents (alkylating agents and antitumor antibiotics), warfarin specifically, the immunosuppressant cyclosporine, and a cancer drug called selumetinib. It may also interfere with niacin's cholesterol benefits.
Dandelion carries Moderate risks with blood thinners, diabetes medications, certain antibiotics (quinolones), potassium-sparing diuretics, and the mood stabilizer lithium, as well as drugs processed by a liver enzyme called CYP1A2. Milk thistle also has Moderate interactions with diabetes drugs, blood thinner warfarin, several medications processed by liver enzymes, the hepatitis C drug sofosbuvir, and morphine.
Bitter almond is unsafe and should not be used — it contains cyanide-like compounds that can cause serious CNS depression and respiratory failure, plus it adds Moderate risk with CNS depressants.
Altogether, these interactions span 1,265 individual medications. We could not check cinquefoil, RNA/DNA liver tissue factors, mountain mahogany, RNA/DNA blood tissue factors, and urea — no data on file for those.
Please check your exact medications with the search tool on this page before starting this product.
Check your own medications below · Editorial policy · How we use AI
Want to check YOUR meds against CLNZ Chelator?
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 CLNZ Chelator interact with 1,279 drugs. Click any drug to see the details.
5 of the 13 ingredients in CLNZ Chelator interact with drugs. Each result below shows which ingredient is responsible. Milk Thistle Vitamin E Dandelion Bitter Almond Wahoo
Aerosphere Budesonide, Formoterol Fumarate, GlycopyrrolateBreztri
How Aerosphere Budesonide, Formoterol Fumarate, Glycopyrrolate interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleCytochrome P450 2c9 (cyp2c9) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
Read the full Milk Thistle + Aerosphere Budesonide, Formoterol Fumarate, Glycopyrrolate interactionAfatinib DimaleateGilotrif
How Afatinib Dimaleate interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Afatinib Dimaleate interactionAlvimopanEntereg
How Alvimopan interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Alvimopan interactionAvatrombopag MaleateDoptelet
How Avatrombopag Maleate interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Avatrombopag Maleate interactionAzilsartanEdarbi
How Azilsartan interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleCytochrome P450 2c9 (cyp2c9) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
Read the full Milk Thistle + Azilsartan interactionBerotralstat HydrochlorideOrladeyo
How Berotralstat Hydrochloride interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Berotralstat Hydrochloride interactionBetamethasoneCelestone, Diprolene AF, Diprosone
How Betamethasone interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Betamethasone interactionBetamethasone DipropionateSernivo
How Betamethasone Dipropionate interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Betamethasone Dipropionate interactionBetamethasone Dipropionate, CalcipotrieneEnstilar, Wynzora
How Betamethasone Dipropionate, Calcipotriene interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Betamethasone Dipropionate, Calcipotriene interactionBetamethasone ValerateLuxiq
How Betamethasone Valerate interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Betamethasone Valerate interactionBrincidofovirTembexa
How Brincidofovir interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleOrganic Anion-transporting Polypeptide Substrates (oatp) Minor
Interaction Summary
Milk thistle may inhibit one form of OATP, OATP-B1, which could reduce the bioavailability and clinical effects of OATP-B1 substrates.
Read the full Milk Thistle + Brincidofovir interactionBudesonide, FormoterolSymbicort
How Budesonide, Formoterol interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleCytochrome P450 2c9 (cyp2c9) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
Read the full Milk Thistle + Budesonide, Formoterol interactionBupivacaine, MeloxicamZynrelef Kit
How Bupivacaine, Meloxicam interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleCytochrome P450 2c9 (cyp2c9) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
Read the full Milk Thistle + Bupivacaine, Meloxicam interactionCarvedilolCoreg, Coreg CR
How Carvedilol interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleCytochrome P450 2c9 (cyp2c9) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
Read the full Milk Thistle + Carvedilol interactionCelecoxibCelebrex, Elyxyb
How Celecoxib interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleCytochrome P450 2c9 (cyp2c9) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
Read the full Milk Thistle + Celecoxib interactionCeliprololCelicard
How Celiprolol interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates, Organic Anion-transporting Polypeptide Substrates (oatp) Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Celiprolol interactionCerivastatin SodiumBaycol
How Cerivastatin Sodium interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleHmg-coa Reductase Inhibitors ("statins"), Organic Anion-transporting Polypeptide Substrates (oatp) Minor
Interaction Summary
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).
Read the full Milk Thistle + Cerivastatin Sodium interactionCimetidineCimetidine Injection, Tagamet, Tagamet HB
How Cimetidine interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Cimetidine interactionCiprofloxacin, HydrocortisoneCipro HC Otic
How Ciprofloxacin, Hydrocortisone interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleOrganic Anion-transporting Polypeptide Substrates (oatp) Minor
Interaction Summary
Milk thistle may inhibit one form of OATP, OATP-B1, which could reduce the bioavailability and clinical effects of OATP-B1 substrates.
Read the full Milk Thistle + Ciprofloxacin, Hydrocortisone interactionClobetasolClobex, Temovate
How Clobetasol interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Clobetasol interactionCortisone AcetateCortisone Tablets, Cortone
How Cortisone Acetate interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Cortisone Acetate interactionDomperidoneMotilium
How Domperidone interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Domperidone interactionEmtricitabine, Tenofovir Alafenamide FumarateDescovy
How Emtricitabine, Tenofovir Alafenamide Fumarate interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Emtricitabine, Tenofovir Alafenamide Fumarate interactionEstroneOrtho-Est
How Estrone interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleEstrogens Minor
Interaction Summary
Theoretically, milk thistle might interfere with estrogen therapy through competition for estrogen receptors.
Read the full Milk Thistle + Estrone interactionEstropipateOgen, Ortho EST
How Estropipate interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleEstrogens Minor
Interaction Summary
Theoretically, milk thistle might interfere with estrogen therapy through competition for estrogen receptors.
Read the full Milk Thistle + Estropipate interactionFam-trastuzumab, Deruxtecan-nxkiEnhertu
How Fam-trastuzumab, Deruxtecan-nxki interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Fam-trastuzumab, Deruxtecan-nxki interactionFludrocortisoneFlorinef Acetate
How Fludrocortisone interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleP-glycoprotein Substrates Minor
Interaction Summary
Theoretically, milk thistle might increase the absorption of P-glycoprotein substrates.
Read the full Milk Thistle + Fludrocortisone interactionFluoxetineProzac, Sarafem
How Fluoxetine interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleCytochrome P450 2c9 (cyp2c9) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
Read the full Milk Thistle + Fluoxetine interactionFlurbiprofenAnsaid, Flurbiprofen, Flurprofen, Froben, Froben SR, Ocufen
How Flurbiprofen interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleCytochrome P450 2c9 (cyp2c9) Substrates Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
Read the full Milk Thistle + Flurbiprofen interactionFluvastatinLescol, Lescol XL
How Fluvastatin interacts with CLNZ Chelator — through 1 ingredient. Tap an ingredient for the detail:
Milk ThistleCytochrome P450 2c9 (cyp2c9) Substrates, Hmg-coa Reductase Inhibitors ("statins") +1 Minor
Interaction Summary
It is unclear if milk thistle inhibits CYP2C9; research is conflicting.
Read the full Milk Thistle + Fluvastatin interactionEach ingredient & the kinds of drugs it affects
For each ingredient in CLNZ Chelator 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.
Milk Thistle
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.
Vitamin E
Alkylating Agents
Theoretically, antioxidant effects of vitamin E might reduce the effectiveness of alkylating agents.
There's concern that antioxidants could reduce the activity of chemotherapy drugs which generate free radicals, such as cyclophosphamide, chlorambucil, carmustine, busulfan, and thiotepa. However, some researchers theorize that antioxidants might make chemotherapy more effective by reducing oxidative stress that might interfere with apoptosis (cell death) of cancer cells. More evidence is needed to determine what effect, if any, antioxidants such as vitamin E have on chemotherapy. Advise patients to consult their oncologist before using vitamin E supplements, especially in high doses.
Anticoagulant/Antiplatelet Drugs
Concomitant use of vitamin E and anticoagulant or antiplatelet agents might increase the risk of bleeding.
Vitamin E seems to inhibit of platelet aggregation and antagonize the effects of vitamin K-dependent clotting factors. These effects appear to be dose-dependent, and are probably only likely to be clinically significant with doses of at least 800 units daily. Mixed tocopherols, such as those found in food, might have a greater antiplatelet effect than alpha-tocopherol. RRR alpha-tocopherol (natural vitamin E) 1000 IU daily antagonizes vitamin K-dependent clotting factors. Advise patients to avoid high doses of vitamin E, especially in people with low vitamin K intake or other risk factors for bleeding.
Antitumor Antibiotics
Theoretically, antioxidant effects of vitamin E might reduce the effectiveness of antitumor antibiotics.
There's concern that antioxidants could reduce the activity of antitumor antibiotic drugs such as doxorubicin, which generate free radicals. However, some researchers theorize that antioxidants might make chemotherapy more effective by reducing oxidative stress that might interfere with apoptosis (cell death) of cancer cells. More evidence is needed to determine what effect, if any, antioxidants such as vitamin E have on chemotherapy involving antitumor antibiotics. Advise patients to consult their oncologist before using vitamin E supplements, especially in high doses.
Cyclosporine (Neoral, Sandimmune)
A specific form of vitamin E might increase absorption and levels of cyclosporine.
There is some evidence that one specific formulation of vitamin E (D-alpha-tocopheryl-polyethylene glycol-1000 succinate, TPGS, tocophersolan, Liqui-E) might increase absorption of cyclosporine. This vitamin E formulation forms micelles which seems to increase absorption of cyclosporine by 40% to 72% in some patients. However, this interaction is unlikely to occur with the usual forms of vitamin E.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, vitamin E might induce metabolism of CYP3A4, possibly reducing the levels CYP3A4 substrates.
Vitamin E appears to bind with the nuclear receptor, pregnane X receptor (PXR), which results in increased expression of CYP3A4. Although the clinical significance of this is not known, use caution when considering concomitant use of vitamin E and other drugs affected by these enzymes.
Selumetinib (Koselugo)
Taking selumetinib with vitamin E can result in a total daily dose of vitamin E that exceeds safe limits and therefore might increase the risk of bleeding.
Selumetinib contains 48-54 IU vitamin E per capsule. The increased risk of bleeding with vitamin E appears to be dose-dependent. Be cautious when using selumetinib in combination with supplemental vitamin E, especially in patients at higher risk of bleed, such as those with chronic conditions and those taking antiplatelet drugs.
Warfarin (Coumadin)
Using vitamin E with warfarin might increase the risk of bleeding.
Due to interference with production of vitamin K-dependent clotting factors, use of more than 400 IU of vitamin E daily with warfarin might increase prothrombin time (PT), INR, and the risk of bleeding,. At a dose of 1000 IU per day, vitamin E can antagonize vitamin K-dependent clotting factors even in people not taking warfarin. Limited clinical evidence suggests that doses up to 1200 IU daily may be used safely by patients taking warfarin, but this may not be applicable in all patient populations.
Niacin
Vitamin E might decrease the beneficial effects of niacin on high-density lipoprotein (HDL) cholesterol levels.
A combination of niacin and simvastatin (Zocor) effectively raises high-density lipoprotein (HDL) cholesterol levels in people with coronary disease and low HDL levels. Clinical research shows that taking a combination of antioxidants (vitamin C, vitamin E, beta-carotene, and selenium) along with niacin and simvastatin (Zocor) attenuates this rise in HDL, specifically the HDL-2 and apolipoprotein A1 fractions, by more than 50%. Vitamin E alone combined with a statin does not seem to decrease HDL levels. It is not known whether the adverse effect on HDL is due to one of the other antioxidants or to the combination. It also is not known whether it will occur in other patient populations.
Dandelion
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.
Bitter Almond
Cns Depressants
Theoretically, bitter almond oil may have additive effects with other CNS depressants.
Bitter almond and its oil contain amygdalin, which is hydrolyzed to toxic hydrocyanic acid. This can cause CNS depression and respiratory failure.
Wahoo
Digoxin (Lanoxin)
Contraindicated; using wahoo with digoxin increases risk of cardiac glycoside toxicity due to therapeutic duplication.
Diuretic Drugs
Theoretically, concomitant use of potassium-depleting diuretics with wahoo can increase the risk of cardiac glycoside toxicity due to potassium depletion. Some diuretics that can deplete potassium include chlorothiazide (Diuril), chlorthalidone (Thalitone), furosemide (Lasix), hydrochlorothiazide (HCTZ, Hydrodiuril, Microzide), and others.
Macrolide Antibiotics
Theoretically, concomitant use may increase risk of cardiac glycoside toxicity.
Quinine
Theoretically, concomitant use of quinine and wahoo might increase risk of cardiac toxicity.
Stimulant Laxatives
Theoretically, use of stimulant laxatives with wahoo might have additive laxative effects, and can increase the risk of cardiac glycoside toxicity due to potassium depletion.
Tetracycline Antibiotics
Theoretically, concomitant use may increase risk of cardiac glycoside toxicity.
Brand information
Manufacturer and brand details for CLNZ Chelator, from the product label.
Systemic Formulas Bio Challenge
- Name
- Systemic Formulas Inc.
- Street Address
- P.O. Box 1516
- City
- Ogden
- State
- UT
- ZipCode
- 84402
- Web Address
- www.systemicformulas.com
CLNZ Chelator by Systemic Formulas Bio Challenge: Common Questions
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Written and reviewed by the HelloPharmacist editorial staff. Our editorial policy
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Label information is sourced from the NIH Dietary Supplement Label Database and reflects the product version on file; always read your actual product label. This page is for education only and is not a substitute for professional medical advice. Confirm with your pharmacist or doctor before combining supplements and medications.
The Full Monographs Behind CLNZ Chelator’s Ingredients
Every ingredient we hold a full HelloPharmacist monograph for — uses, evidence, safety, and the complete interaction list.
Methionine
Methionine is an essential amino acid that your body needs for protein building and many basic chemical reactions. Most people get enough from a normal diet, and supplements are generally no...
Read the full Methionine monograph → Herb & supplement monographVitamin E
Interacts with 764 drugsVitamin E is an essential fat-soluble vitamin and antioxidant that most people get in adequate amounts from a normal diet. Supplements can help correct a true deficiency, but high-dose vitam...
Read the full Vitamin E monograph → Herb & supplement monographDandelion
Interacts with 457 drugsDandelion is a common plant used in food and traditional medicine, often promoted as a natural 'water pill' and digestive aid. Human evidence for these uses is very limited, so its benefits...
Read the full Dandelion monograph → Herb & supplement monographYucca
Yucca is a desert plant traditionally used for joint pain, arthritis, and digestion, and it contains compounds called saponins thought to have anti-inflammatory effects. Human evidence for t...
Read the full Yucca monograph → Herb & supplement monographSuma
Suma is a South American root often marketed as a 'Brazilian ginseng' and used as an adaptogen for energy, stamina, and stress. Human evidence is very limited, and most claims come from trad...
Read the full Suma monograph → Herb & supplement monographEuropean Five-finger Grass
European Five-finger Grass (Potentilla reptans) is a traditional European herb used mainly for diarrhea, sore throat, and minor skin problems, largely because of its tannin content. There is...
Read the full European Five-finger Grass 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 monographWahoo
Interacts with 133 drugsWahoo is a North American shrub historically used as a laxative and 'liver tonic,' but it is a poisonous plant with no proven benefit and a real risk of serious harm. Because it contains hea...
Read the full Wahoo monograph → Herb & supplement monographBitter Almond
Interacts with 248 drugsBitter almond is a variety of almond that contains amygdalin, a compound the body converts into cyanide, making it potentially poisonous. Because of this serious toxicity risk, bitter almond...
Read the full Bitter Almond monograph →Sources & How We Checked
CLNZ Chelator'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 187 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.
Methionine 12 references
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- Anon. Should methionine be added to paracetamol formulations? Drug Ther Perspect 1997;10:11-3. DOI
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- Food and Nutrition Board, Institute of Medicine. Dietary Reference Intakes for Energy, Carbohydrate, Fiber, Fat, Fatty Acids, Cholesterol, Protein, and Amino Acids. Washington, DC: The National Academies Press, 2005. Available at: https://doi.org/10.17226 DOI
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Vitamin E 64 references
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- Sesso, H. D., Buring, J. E., Christen, W. G., Kurth, T., Belanger, C., MacFadyen, J., Bubes, V., Manson, J. E., Glynn, R. J., and Gaziano, J. M. Vitamins E and C in the prevention of cardiovascular disease in men: the Physicians' Health Study II randomiz
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- Prescribing information: KOSELUGO (selumetinib) capsules. U.S. Food and Drug Administration. Available at: https://www.accessdata.fda.gov/drugsatfda_docs/label/2020/213756s000lbl.pdf.
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Dandelion 27 references
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See these in context on the European Five-finger Grass monograph →
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