Protect Ingredients & Drug Interactions
by Revive
What is this page for?
First and foremost: checking Protect 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
Protect is a dietary supplement by Revive with 6 active ingredients. Its ingredients are commonly taken for blood sugar support, high cholesterol, indigestion and gas.Based on those ingredients, 1,306 medications have a known interaction with it, the most serious rated major. The ingredients most likely to interact are Clove Fruit Oil, Eucalyptus Leaf Oil, Cassia Leaf, Twig Oil. Use the checker below to test your specific medication, or read the full HelloPharmacist Interaction Report.
Check Your Meds Against Protect by Revive
Ask about any prescription or over-the-counter medication and we check it for interactions with Protect by Revive — 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 Protect by Revive
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
Revive Protect contains six active ingredients, all plant-derived oils: Cinnamon Bark Oil, Rosemary Leaf Oil, Orange Peel Oil, Clove Fruit Oil, Cassia Leaf, Twig Oil, and Eucalyptus Leaf Oil. There are no inactive ingredients listed.
Each oil brings its own phytochemical profile—cinnamon and cassia both contain compounds that may affect blood sugar, orange peel oil's main component is limonene and other volatile compounds that interact with drug-transport systems, rosemary and clove each contain multiple bioactive constituents that affect liver enzyme activity, and eucalyptus oil's active component is eucalyptol.
Does it work?
Moderate evidence
The evidence base for these ingredients is sparse. Rosemary is rated Possibly Effective for memory, though data on age-related cognitive decline is insufficient.
Clove is rated Possibly Effective for ventilator-associated pneumonia (a serious respiratory infection in hospitalized patients), but evidence for cough, acute pain, and indigestion is insufficient. Cinnamon Bark Oil, Cassia Leaf, Twig Oil, Orange Peel Oil, and Eucalyptus Leaf Oil have insufficient evidence for the conditions listed in our data—obesity, diabetes, hay fever, cold, asthma, and others.
None of the ingredients have strong efficacy data to support general wellness or protection claims.
How safe is it?
Well-documented data
Most of these oils are generally well tolerated in food amounts, but supplement-strength doses are less studied. Cinnamon and cassia can cause bloating, upset stomach, and nausea at higher doses; a case of bleeding was reported in one patient taking 1 tablespoon of cinnamon daily for 10 months after surgery.
Rosemary may cause allergic reactions, gum swelling, and occupational asthma in sensitive people; the undiluted oil can trigger seizures. Clove oil is toxic in small amounts (5–10 mL can harm children) and can cause liver failure at high doses; clove cigarettes are linked to serious lung damage.
Orange Peel Oil in the form of juice has caused intestinal colic in children who consumed large amounts, but the fruit itself is safe as food. Eucalyptus oil is poisonous if swallowed undiluted—even 1 mL can cause respiratory depression, coma, or death—and can trigger seizures and asthma flares.
All these oils require dilution and careful dosing; do not give to children without medical guidance.
Meds to double-check
Major interaction found
Check your medications against this product's interactions, especially if you take: antihypertensive (blood pressure) drugs, antidiabetes (blood sugar) medications, anticoagulant or antiplatelet drugs (blood thinners like warfarin or clopidogrel), aspirin or salicylate drugs, cholesterol drugs (especially pravastatin), antihistamines like fexofenadine, antibiotics (quinolones and others), antiparasitic drugs like ivermectin, or any drug your liver processes via CYP enzymes (CYP1A2, CYP2D6, CYP2C9, CYP3A4, CYP2C19). The most serious documented interactions are Major-severity and involve Orange Peel Oil blocking or altering absorption of several common medications.
The bottom line
Scorecard at a glanceFormula with limited ingredient disclosure with some supporting evidence behind its ingredients' uses. Major medication interactions have been identified, and safety information is well characterized.
Revive Protect is a concentrated oil blend with significant documented interactions, especially with blood pressure drugs, diabetes medications, blood thinners, and many drugs your liver processes. If you take any prescription medication, check with your pharmacist before starting this product.
Even if you don't take medications, the individual oils carry serious safety concerns at high doses and are not suitable for children.
Educational only — not medical advice; always confirm with your pharmacist. Our editorial policy · How we use AI
Assessment coverage: 6 of 6 active ingredients matched to our full ingredient reviews (monographs). Based on the product label dated May 21, 2025.
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 Protect, straight from the product label.
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 Protect by Revive, sourced from the NIH Dietary Supplement Label Database.
Supplement Facts
| Ingredient | Amount | % DV |
|---|---|---|
| Cinnamon Bark Oil | 0 NP | -- |
| Rosemary Leaf Oil | 0 NP | -- |
| Protect | 60 mg | -- |
| Orange Peel Oil | 0 NP | -- |
| Clove Fruit Oil | 0 NP | -- |
| Cassia Leaf, Twig Oil | 0 NP | -- |
| Eucalyptus Leaf Oil | 0 NP | -- |
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.
FDA Statement of Identity
Essential Oil Supplement
Formula
100% Essential Oil Blend 100% Pure Therapeutic Grade Essential Oil
Precautions
Caution: Possible skin sensitivity. Avoid contact with eyes, inner ears and sensitive areas. Avoid sunlight and UV rays for up to 12 hours after applying.
Keep out of reach of children.
If pregnant or under a doctor's care, consult your physician.
General Statements
Made with love #GoRevive
Formulation
Bottled in the USA
Is this label outdated? Report a formula or label change and our pharmacy team will review it.
Protect by Revive 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 Protect by Revive
These are the 6 active ingredients this product is made of. Select any to open its full monograph.
Serving size1 Drop(s) Dosage formLiquid Servings per container170 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.
Protect by Revive Drug Interactions
HelloPharmacist Interaction Report
Revive Protect is a six-ingredient liquid blend with documented interactions affecting a substantial number of medications.
The most serious concern is Orange Peel Oil, which contains Major-severity interactions with several drug types: it can significantly reduce absorption of certain medications (like the antibiotic celiprolol, the antiparasitic ivermectin, and the antihistamine fexofenadine), increase levels of the cholesterol drug pravastatin by up to 149%, and block absorption of a broad category of drugs called OATP substrates—a potentially serious issue if you take multiple medications. Altogether, these interactions span 1,285 individual medications.
Read the full breakdown — every affected drug type, severity by severity
Cinnamon Bark Oil and Cassia Leaf, Twig Oil both present Moderate-severity interactions with blood sugar-lowering drugs (antidiabetes medications) and blood pressure-lowering drugs, with additive effects that could lower your glucose or pressure too much. Rosemary Leaf Oil can thin the blood further if you're already on anticoagulants (like warfarin) or antiplatelet agents (like clopidogrel), aspirin, or related salicylate drugs, and may also reduce levels of certain other medications your liver processes.
Clove Fruit Oil interacts with multiple drug-metabolizing pathways, potentially raising levels of drugs processed by liver enzymes (CYP2D6, CYP1A2, CYP3A4, CYP2C9), and may increase bleeding risk with blood thinners. Eucalyptus Leaf Oil similarly interacts with liver enzyme pathways and can lower blood sugar.
Before you start Revive Protect, run your exact medications through the interaction checker on this page—especially if you take blood pressure medicines, diabetes drugs, blood thinners, cholesterol medications, antihistamines, antibiotics, or any drug your doctor says your liver processes.
Check your own medications below · Editorial policy · How we use AI
Want to check YOUR meds against Protect?
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 Protect interact with 1,306 drugs. Click any drug to see the details.
6 of the 6 ingredients in Protect interact with drugs. Each result below shows which ingredient is responsible. Clove Fruit Oil Eucalyptus Leaf Oil Cassia Leaf, Twig Oil Rosemary Leaf Oil Cinnamon Bark Oil Orange Peel Oil
AtorvastatinAtorvaliq
How Atorvastatin interacts with Protect — through 4 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Atorvastatin interactionEucalyptus Leaf OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP3A4 substrates.
Read the full Eucalyptus Leaf Oil + Atorvastatin interactionClove Fruit OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP3A4.
Read the full Clove Fruit Oil + Atorvastatin interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Atorvastatin interactionAtorvastatin CalciumLipitor
How Atorvastatin Calcium interacts with Protect — through 4 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Atorvastatin Calcium interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Atorvastatin Calcium interactionClove Fruit OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP3A4.
Read the full Clove Fruit Oil + Atorvastatin Calcium interactionEucalyptus Leaf OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP3A4 substrates.
Read the full Eucalyptus Leaf Oil + Atorvastatin Calcium interactionBosentanTracleer
How Bosentan interacts with Protect — through 5 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Bosentan interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Bosentan interactionClove Fruit OilCytochrome P450 3a4 (cyp3a4) Substrates, Cytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP3A4.
Read the full Clove Fruit Oil + Bosentan interactionCinnamon Bark OilAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, Ceylon cinnamon might have additive effects with antihypertensive drugs and increase the risk of hypotension.
Read the full Cinnamon Bark Oil + Bosentan interactionEucalyptus Leaf OilCytochrome P450 3a4 (cyp3a4) Substrates, Cytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP3A4 substrates.
Read the full Eucalyptus Leaf Oil + Bosentan interactionBrincidofovirTembexa
How Brincidofovir interacts with Protect — through 1 ingredient. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Brincidofovir interactionCeliprololCelicard
How Celiprolol interacts with Protect — through 2 ingredients. Tap an ingredient for the detail:
Orange Peel OilP-glycoprotein Substrates, Organic Anion-transporting Polypeptide Substrates (oatp) +1 Major
Interaction Summary
Sweet orange juice seems to modulate P-glycoprotein (P-gp), which might affect the blood levels of P-gp substrates.
Read the full Orange Peel Oil + Celiprolol interactionCinnamon Bark OilAntihypertensive Drugs Moderate
Interaction Summary
Theoretically, Ceylon cinnamon might have additive effects with antihypertensive drugs and increase the risk of hypotension.
Read the full Cinnamon Bark Oil + Celiprolol interactionCerivastatin SodiumBaycol
How Cerivastatin Sodium interacts with Protect — through 2 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Cerivastatin Sodium interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Cerivastatin Sodium interactionCinoxacinCinobac
How Cinoxacin interacts with Protect — through 2 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp), Quinolone Antibiotics Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Cinoxacin interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Cinoxacin interactionCiprofloxacinCiloxan, Cipro, Cipro IV, Cipro XR, Ciprobay, Otiprio
How Ciprofloxacin interacts with Protect — through 2 ingredients. Tap an ingredient for the detail:
Orange Peel OilQuinolone Antibiotics, Organic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Calcium-fortified sweet orange juice might reduce quinolone absorption.
Read the full Orange Peel Oil + Ciprofloxacin interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Ciprofloxacin interactionCiprofloxacin, HydrocortisoneCipro HC Otic
How Ciprofloxacin, Hydrocortisone interacts with Protect — through 1 ingredient. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Ciprofloxacin, Hydrocortisone interactionClinafloxacinClinafloxacin
How Clinafloxacin interacts with Protect — through 1 ingredient. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp), Quinolone Antibiotics Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Clinafloxacin interactionEnoxacinPenetrex
How Enoxacin interacts with Protect — through 1 ingredient. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp), Quinolone Antibiotics Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Enoxacin interactionEtoposideEtopophos, VePesid, VP16
How Etoposide interacts with Protect — through 3 ingredients. Tap an ingredient for the detail:
Orange Peel OilP-glycoprotein Substrates, Organic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Sweet orange juice seems to modulate P-glycoprotein (P-gp), which might affect the blood levels of P-gp substrates.
Read the full Orange Peel Oil + Etoposide interactionEucalyptus Leaf OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP3A4 substrates.
Read the full Eucalyptus Leaf Oil + Etoposide interactionClove Fruit OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP3A4.
Read the full Clove Fruit Oil + Etoposide interactionEzetimibe, AtorvastatinLiptruzet
How Ezetimibe, Atorvastatin interacts with Protect — through 4 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Ezetimibe, Atorvastatin interactionEucalyptus Leaf OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP3A4 substrates.
Read the full Eucalyptus Leaf Oil + Ezetimibe, Atorvastatin interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Ezetimibe, Atorvastatin interactionClove Fruit OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP3A4.
Read the full Clove Fruit Oil + Ezetimibe, Atorvastatin interactionFexofenadineAllegra
How Fexofenadine interacts with Protect — through 3 ingredients. Tap an ingredient for the detail:
Orange Peel OilFexofenadine (allegra), P-glycoprotein Substrates +1 Major
Interaction Summary
Consuming sweet orange juice with fexofenadine can decrease oral absorption of fexofenadine.
Read the full Orange Peel Oil + Fexofenadine interactionEucalyptus Leaf OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP3A4 substrates.
Read the full Eucalyptus Leaf Oil + Fexofenadine interactionClove Fruit OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP3A4.
Read the full Clove Fruit Oil + Fexofenadine interactionFexofenadine, PseudoephedrineAllegra D
How Fexofenadine, Pseudoephedrine interacts with Protect — through 3 ingredients. Tap an ingredient for the detail:
Orange Peel OilP-glycoprotein Substrates, Organic Anion-transporting Polypeptide Substrates (oatp) +1 Major
Interaction Summary
Sweet orange juice seems to modulate P-glycoprotein (P-gp), which might affect the blood levels of P-gp substrates.
Read the full Orange Peel Oil + Fexofenadine, Pseudoephedrine interactionEucalyptus Leaf OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP3A4 substrates.
Read the full Eucalyptus Leaf Oil + Fexofenadine, Pseudoephedrine interactionClove Fruit OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP3A4.
Read the full Clove Fruit Oil + Fexofenadine, Pseudoephedrine interactionFluvastatinLescol, Lescol XL
How Fluvastatin interacts with Protect — through 4 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Fluvastatin interactionEucalyptus Leaf OilCytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP2C9 substrates.
Read the full Eucalyptus Leaf Oil + Fluvastatin interactionClove Fruit OilCytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP2C9.
Read the full Clove Fruit Oil + Fluvastatin interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Fluvastatin interactionGatifloxacinTequin, Tequin Injection
How Gatifloxacin interacts with Protect — through 2 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp), Quinolone Antibiotics Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Gatifloxacin interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Gatifloxacin interactionGemifloxacinFactive
How Gemifloxacin interacts with Protect — through 1 ingredient. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp), Quinolone Antibiotics Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Gemifloxacin interactionGlyburideAlbert Glyburide, Diabeta, Glycron, Glynase, Glynase PresTab, Micronase +1 more
How Glyburide interacts with Protect — through 6 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Glyburide interactionRosemary Leaf OilAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, taking rosemary with antidiabetes drugs might increase the risk of hypoglycemia.
Read the full Rosemary Leaf Oil + Glyburide interactionClove Fruit OilAntidiabetes Drugs, Cytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove extracts with antidiabetes drugs might increase the risk of hypoglycemia.
Read the full Clove Fruit Oil + Glyburide interactionEucalyptus Leaf OilAntidiabetes Drugs, Cytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus leaf might increase the risk of hypoglycemia.
Read the full Eucalyptus Leaf Oil + Glyburide interactionCinnamon Bark OilAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, Ceylon cinnamon may have additive effects with antidiabetes drugs.
Read the full Cinnamon Bark Oil + Glyburide interactionCassia Leaf, Twig OilHepatotoxic Drugs, Antidiabetes Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Glyburide interactionGlyburide, MetforminGlucovance
How Glyburide, Metformin interacts with Protect — through 6 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Glyburide, Metformin interactionCassia Leaf, Twig OilAntidiabetes Drugs, Hepatotoxic Drugs Moderate
Interaction Summary
Theoretically, cassia cinnamon may have additive effects with antidiabetes drugs.
Read the full Cassia Leaf, Twig Oil + Glyburide, Metformin interactionClove Fruit OilAntidiabetes Drugs, Cytochrome P450 2c9 (cyp2c9) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove extracts with antidiabetes drugs might increase the risk of hypoglycemia.
Read the full Clove Fruit Oil + Glyburide, Metformin interactionRosemary Leaf OilAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, taking rosemary with antidiabetes drugs might increase the risk of hypoglycemia.
Read the full Rosemary Leaf Oil + Glyburide, Metformin interactionEucalyptus Leaf OilCytochrome P450 2c9 (cyp2c9) Substrates, Antidiabetes Drugs Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP2C9 substrates.
Read the full Eucalyptus Leaf Oil + Glyburide, Metformin interactionCinnamon Bark OilAntidiabetes Drugs Moderate
Interaction Summary
Theoretically, Ceylon cinnamon may have additive effects with antidiabetes drugs.
Read the full Cinnamon Bark Oil + Glyburide, Metformin interactionGrepafloxacinRaxar
How Grepafloxacin interacts with Protect — through 4 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp), Quinolone Antibiotics Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Grepafloxacin interactionClove Fruit OilCytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP1A2.
Read the full Clove Fruit Oil + Grepafloxacin interactionEucalyptus Leaf OilCytochrome P450 1a2 (cyp1a2) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP1A2 substrates.
Read the full Eucalyptus Leaf Oil + Grepafloxacin interactionRosemary Leaf OilCytochrome P450 1a2 (cyp1a2) Substrates Minor
Interaction Summary
Theoretically, rosemary might decrease the levels and clinical effects of CYP1A2 substrates.
Read the full Rosemary Leaf Oil + Grepafloxacin interactionIrinotecanCamptosar, Onivyde
How Irinotecan interacts with Protect — through 3 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Irinotecan interactionEucalyptus Leaf OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP3A4 substrates.
Read the full Eucalyptus Leaf Oil + Irinotecan interactionClove Fruit OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP3A4.
Read the full Clove Fruit Oil + Irinotecan interactionIrinotecan Hydrochloride
How Irinotecan Hydrochloride interacts with Protect — through 3 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Irinotecan Hydrochloride interactionClove Fruit OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP3A4.
Read the full Clove Fruit Oil + Irinotecan Hydrochloride interactionEucalyptus Leaf OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP3A4 substrates.
Read the full Eucalyptus Leaf Oil + Irinotecan Hydrochloride interactionIsoniazid, Pyrazinamide, RifampinRifater
How Isoniazid, Pyrazinamide, Rifampin interacts with Protect — through 2 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Isoniazid, Pyrazinamide, Rifampin interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Isoniazid, Pyrazinamide, Rifampin interactionIsoniazid, RifampinRifamate
How Isoniazid, Rifampin interacts with Protect — through 2 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Isoniazid, Rifampin interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Isoniazid, Rifampin interactionIvermectinMectizan, Sklice, Soolantra, Stromectol
How Ivermectin interacts with Protect — through 1 ingredient. Tap an ingredient for the detail:
Orange Peel OilP-glycoprotein Substrates, Ivermectin (stromectol, Others) Major
Interaction Summary
Sweet orange juice seems to modulate P-glycoprotein (P-gp), which might affect the blood levels of P-gp substrates.
Read the full Orange Peel Oil + Ivermectin interactionLevofloxacinLeva-pak, Levaquin, Levaquin Injection
How Levofloxacin interacts with Protect — through 2 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp), Quinolone Antibiotics Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Levofloxacin interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Levofloxacin interactionLevofloxacin (ophthalmic)Levofloxacin
How Levofloxacin (ophthalmic) interacts with Protect — through 1 ingredient. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp), Quinolone Antibiotics Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Levofloxacin (ophthalmic) interactionLomefloxacinMaxaquin
How Lomefloxacin interacts with Protect — through 2 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp), Quinolone Antibiotics Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Lomefloxacin interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Lomefloxacin interactionLovastatinAltocor, Mevacor
How Lovastatin interacts with Protect — through 4 ingredients. Tap an ingredient for the detail:
Orange Peel OilOrganic Anion-transporting Polypeptide Substrates (oatp) Major
Interaction Summary
Consuming sweet orange juice can decrease oral absorption of OATP substrates.
Read the full Orange Peel Oil + Lovastatin interactionEucalyptus Leaf OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, eucalyptus might increase the levels of CYP3A4 substrates.
Read the full Eucalyptus Leaf Oil + Lovastatin interactionCassia Leaf, Twig OilHepatotoxic Drugs Moderate
Interaction Summary
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
Read the full Cassia Leaf, Twig Oil + Lovastatin interactionClove Fruit OilCytochrome P450 3a4 (cyp3a4) Substrates Moderate
Interaction Summary
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP3A4.
Read the full Clove Fruit Oil + Lovastatin interactionEach ingredient & the kinds of drugs it affects
For each ingredient in Protect 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.
Clove Fruit Oil
Antidiabetes Drugs
Theoretically, concomitant use of clove extracts with antidiabetes drugs might increase the risk of hypoglycemia.
Clinical and laboratory research suggest that polyphenol extracts from clove flower buds might lower blood glucose levels. Dosing adjustments for insulin or oral hypoglycemic agents may be necessary when taken with clove. Monitor blood glucose levels closely.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP1A2.
In vitro research shows that eugenol, the principal constituent of clove, can inhibit CYP1A2 in a dose-dependent manner,. This effect has not been reported in humans.
Cytochrome P450 2C9 (Cyp2C9) Substrates
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP2C9.
In vitro research shows that eugenol, the principal constituent of clove, inhibits CYP2C9 in a dose-dependent manner. This effect has not been reported in humans.
Cytochrome P450 2D6 (Cyp2D6) Substrates
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP2D6.
In vitro research shows that eugenol, the principal constituent of clove, can inhibit CYP2D6 in a dose-dependent manner. This effect has not been reported in humans.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, concomitant use of clove may increase levels of drugs metabolized by CYP3A4.
In vitro research shows that eugenol, the principal constituent of clove, can inhibit CYP3A4 in a dose-dependent manner. This effect has not been reported in humans.
Anticoagulant/Antiplatelet Drugs
Theoretically, clove oil may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs.
Laboratory research suggests that eugenol, a constituent of clove, has antiplatelet activity. This interaction has not been reported in humans.
Ibuprofen (Advil, Others)
Theoretically, topical application of clove oil with ibuprofen might increase the absorption and side effects of topical ibuprofen.
Laboratory research shows that topical application of clove oil increases the absorption of topical ibuprofen. This interaction has not been reported in humans.
Eucalyptus Leaf Oil
Amphetamines
Theoretically, inhaling eucalyptol may reduce the effectiveness of amphetamines.
Animal research suggests that inhaling eucalyptol may reduce the levels of amphetamines in the blood.
Antidiabetes Drugs
Theoretically, eucalyptus leaf might increase the risk of hypoglycemia.
Animal research suggests that eucalyptus leaf might have hypoglycemic activity, and might have additive effects when used with antidiabetes drugs.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Theoretically, eucalyptus might increase the levels of CYP1A2 substrates.
In vitro research suggests that eucalyptus oil might inhibit CYP1A2, although this has not been reported in humans.
Cytochrome P450 2C19 (Cyp2C19) Substrates
Theoretically, eucalyptus might increase the levels of CYP2C19 substrates.
In vitro research suggests that eucalyptus oil might inhibit CYP2C19, although this has not been reported in humans.
Cytochrome P450 2C9 (Cyp2C9) Substrates
Theoretically, eucalyptus might increase the levels of CYP2C9 substrates.
In vitro research suggests that eucalyptus oil might inhibit CYP2C9, although this has not been reported in humans.
Cytochrome P450 3A4 (Cyp3A4) Substrates
Theoretically, eucalyptus might increase the levels of CYP3A4 substrates.
In vitro research suggests that eucalyptus oil might inhibit CYP3A4, although this has not been reported in humans.
Pentobarbital (Nembutal)
Theoretically, inhaling eucalyptol might reduce the effectiveness of pentobarbital.
Animal research suggests that inhaling eucalyptol reduces the level of pentobarbital that reaches the brain.
Cassia Leaf, Twig Oil
Antidiabetes Drugs
Theoretically, cassia cinnamon may have additive effects with antidiabetes drugs.
Cassia cinnamon may lower blood glucose levels, and have additive effects in patients treated with antidiabetic agents. Dose adjustments to diabetes medications might be necessary.
Hepatotoxic Drugs
Theoretically, large doses of cassia cinnamon might cause additive effects when used with hepatotoxic drugs.
There is some concern that ingesting large amounts of cassia cinnamon for an extended duration might cause hepatotoxicity in some people. Cassia cinnamon contains coumarin, which can cause hepatotoxicity in animal models. In humans, very high doses of coumarin from 50-7000 mg/day can result in hepatotoxicity that resolves when coumarin use is discontinued. Lower amounts might also cause liver problems in sensitive people, such as those with liver disease or those taking potentially hepatotoxic agents.
Rosemary Leaf Oil
Anticoagulant/Antiplatelet Drugs
Theoretically, rosemary may increase the risk of bleeding if used with anticoagulant or antiplatelet drugs.
In vitro and animal research suggests that rosemary inhibits platelet aggregation.
Antidiabetes Drugs
Theoretically, taking rosemary with antidiabetes drugs might increase the risk of hypoglycemia.
Animal research shows that rosemary extract can decrease blood glucose levels in diabetic models. However, research in humans is conflicting. Although rosemary powder decreased blood glucose levels in healthy adults, no change in blood glucose levels was seen in adults with type 2 diabetes, most of whom were taking antidiabetes drugs.
Aspirin
Theoretically, rosemary might have additive effects with salicylate-containing drugs such as aspirin.
Rosemary is reported to contain salicylates.
Choline Magnesium Trisalicylate (Trilisate)
Theoretically, rosemary might have additive effects with salicylate-containing drugs such as choline magnesium trisalicylate.
Rosemary is reported to contain salicylate.
Salsalate (Disalcid)
Theoretically, rosemary might have additive effects with salicylate-containing drugs such as salsalate.
Rosemary is reported to contain salicylate.
Cytochrome P450 1A2 (Cyp1A2) Substrates
Theoretically, rosemary might decrease the levels and clinical effects of CYP1A2 substrates.
In vitro research shows that rosemary induces CYP1A2 enzymes. This effect has not been reported in humans.
Cinnamon Bark Oil
Antidiabetes Drugs
Theoretically, Ceylon cinnamon may have additive effects with antidiabetes drugs.
Ceylon cinnamon may lower blood glucose levels. Dose adjustments might be necessary.
Antihypertensive Drugs
Theoretically, Ceylon cinnamon might have additive effects with antihypertensive drugs and increase the risk of hypotension.
Animal research shows that Ceylon cinnamon extract has vasorelaxant properties and reduces blood pressure in rat models of hypertension, possibly via inhibition of calcium influx through L-type voltage-sensitive channels.
Orange Peel Oil
Celiprolol (Celicard)
Consuming sweet orange with celiprolol can decrease oral absorption of celiprolol.
A pharmacokinetic study in healthy volunteers shows that celiprolol levels, after a single dose of 100 mg, are decreased by up to 90% in people who drink sweet orange juice 200 mL three times daily. It's not known if lower consumption of sweet orange juice will have the same effect. Theoretically, this occurs due to short-term inhibition of organic anion transporting polypeptide (OATP). Recommend separating drug administration and consumption of sweet orange by at least 4 hours.
Ivermectin (Stromectol, Others)
Consuming sweet orange juice with ivermectin can decrease the oral absorption of ivermectin.
A pharmacokinetic study in healthy volunteers shows that taking ivermectin orally with sweet orange juice 750 mL over 4 hours reduces the bioavailability of ivermectin. This effect does not seem to be related to effects on P-glycoprotein. The effect on ivermectin is more pronounced in males compared to females.
Organic Anion-Transporting Polypeptide Substrates (Oatp)
Consuming sweet orange juice can decrease oral absorption of OATP substrates. Separate administration by at least 4 hours.
Clinical research shows that consuming sweet orange juice inhibits OATP, which reduces bioavailability of oral drugs that are substrates of OATP. For example, sweet orange juice decreases bioavailability of fexofenadine, a substrate of OATP, by about 72% and of celiprolol, another OATP substrate, by up to 90%. Since sweet orange juice seems to affect OATP for a short time, recommend separating drug administration and consumption of sweet orange juice by at least 4 hours.
Pravastatin (Pravachol)
Consuming sweet orange juice with pravastatin can increase the absorption of pravastatin.
A small pharmacokinetic study in healthy volunteers shows that consuming sweet orange juice 800 mL over 3 hours, including before, during, and after taking pravastatin 10 mg, increases pravastatin levels by about 149%, without affecting pravastatin elimination. Theoretically this effect might be due to modulation of organic anion transporting polypeptides (OATPs) by sweet orange juice. Sweet orange juice does not seem to affect simvastatin levels, but it is not known if sweet orange affects any of the other statins.
Fexofenadine (Allegra)
Consuming sweet orange juice with fexofenadine can decrease oral absorption of fexofenadine.
Clinical research shows that coadministration of sweet orange juice 1200 mL decreases bioavailability of fexofenadine by about 72%. In an animal model, sweet orange juice decreased bioavailability of fexofenadine by 31%. Fexofenadine manufacturer data indicates that concomitant administration of sweet orange juice and fexofenadine results in larger wheal and flare sizes in research models. This suggests that sweet orange reduces the clinical response to fexofenadine. Theoretically, this occurs due to short-term inhibition of organic anion transporting polypeptide (OATP). Recommend separating drug administration and consumption of sweet orange by at least 4 hours.
P-Glycoprotein Substrates
Sweet orange juice seems to modulate P-glycoprotein (P-gp), which might affect the blood levels of P-gp substrates.
Animal and in vitro research suggest that orange juice extract inhibits drug efflux by P-gp, increasing absorption and levels of P-gp substrates. In contrast, pharmacokinetic research in humans shows that drinking large amounts of sweet orange juice decreases absorption and levels of the P-gp substrate celiprolol. This suggests that orange juice actually induces drug efflux by P-gp or affects drug levels by another mechanism such as inhibiting the gut drug transporter called organic anion transporting polypeptide (OATP). Until more is known, sweet orange juice should be used cautiously in people taking P-gp substrates.
Quinolone Antibiotics
Calcium-fortified sweet orange juice might reduce quinolone absorption.
Calcium binds to quinolones in the gut. Theoretically, the calcium in certain fortified orange juices can also bind to quinolone antibiotics and reduce their absorption and levels.
Brand information
Manufacturer and brand details for Protect, from the product label.
Revive
See all Revive products- Name
- Revive
- Street Address
- 201 California St
- City
- San Francisco
- State
- California
- Web Address
- www.revive-eo.com
Protect by Revive: Common Questions
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Written and reviewed by the HelloPharmacist editorial staff. Our editorial policy
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Our pharmacists answer your medication & supplement questions — free.
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 Protect’s Ingredients
Every ingredient we hold a full HelloPharmacist monograph for — uses, evidence, safety, and the complete interaction list.
Ceylon Cinnamon
Interacts with 258 drugsCeylon cinnamon is the so-called 'true' cinnamon, valued as a spice and used in traditional medicine for blood sugar, cholesterol, and digestion. Evidence for most health benefits is limited...
Read the full Ceylon Cinnamon monograph → Herb & supplement monographRosemary
Interacts with 372 drugsRosemary is a fragrant Mediterranean herb that is safe and flavorful in normal food amounts. Some early research suggests possible benefits for memory, mood, and hair growth, but the evidenc...
Read the full Rosemary monograph → Herb & supplement monographSweet Orange
Interacts with 246 drugsSweet orange is a common citrus fruit that is a good source of vitamin C, fiber, and antioxidants, and is enjoyed as a food worldwide. Its peel and essential oil are used in aromatherapy and...
Read the full Sweet Orange monograph → Herb & supplement monographClove
Interacts with 977 drugsClove is a common cooking spice that is also used in traditional medicine, especially as a topical numbing agent for tooth pain thanks to its main compound, eugenol. Food amounts are general...
Read the full Clove monograph → Herb & supplement monographCassia Cinnamon
Interacts with 442 drugsCassia cinnamon is the common, inexpensive cinnamon used in cooking, and it is also taken as a supplement, most often for blood sugar support. The evidence for its health benefits is mixed a...
Read the full Cassia Cinnamon monograph → Herb & supplement monographEucalyptus
Interacts with 878 drugsEucalyptus is best known for its strong-smelling oil used in vapor rubs, inhalants, and lozenges to ease coughs and congestion. It may provide mild, short-term relief of cold symptoms, but t...
Read the full Eucalyptus monograph →Sources & How We Checked
Protect'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 128 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.
Ceylon Cinnamon 22 references
- Newall CA, Anderson LA, Philpson JD. Herbal Medicine: A Guide for Healthcare Professionals. London, UK: The Pharmaceutical Press, 1996.
- McGuffin M, Hobbs C, Upton R, Goldberg A, eds. American Herbal Products Association's Botanical Safety Handbook. Boca Raton, FL: CRC Press, LLC 1997.
- Choi HK, Jung GW, Moon KH, et al. Clinical study of SS-Cream in patients with lifelong premature ejaculation. Urology 2000;55:257-61. PubMed
- Electronic Code of Federal Regulations. Title 21. Part 182 -- Substances Generally Recognized As Safe. Available at: https://www.accessdata.fda.gov/scripts/cdrh/cfdocs/cfcfr/CFRSearch.cfm?CFRPart=182
- Anderson RA, Broadhurst CL, Polansky MM, et al. Isolation and Characterization of Polyphenol Type-A Polymers from Cinnamon with Insulin-like Biological Activity. J Agric Food Chem 2004;52:65-70. PubMed
- Jarvill-Taylor KJ, Anderson RA, Graves DJ. A hydroxychalcone derived from cinnamon functions as a mimetic for insulin in 3T3-L1 adipocytes. J Am Coll Nutr 2001;20:327-36. PubMed
- Onderoglu S, Sozer S, Erbil KM, et al. The evaluation of long-term effcts of cinnamon bark and olive leaf on toxicity induced by streptozotocin administration to rats. J Pharm Pharmacol 1999;51:1305-12.
- Kanerva L, Estlander T, Jolanki R. Occupational allergic contact dermatitis from spices. Contact Dermatitis 1996;35:157-62. PubMed
- Ranasinghe P, Jayawardena R, Galappaththy P, et al. Response to Akilen et al. Efficacy and safety of 'true' cinnamon (Cinnamomum zeylanicum) as a pharmaceutical agent in diabetes: a systematic review and meta-analysis. Diabet Med 2013 Apr;30(4):506-7.
- Oliveira JdA, da Silva IC, Trindade LA, et al. Safety and tolerability of essential oil from Cinnamomum zeylanicum blume leaves with action on oral candidosis and its effect on the physical properties of the acylic resin. Evid Based Complement Alternat Me
- Ranasinghe P, Pigera S, Premakumara GA, et al. Medicinal properties of 'true' cinnamon (Cinnamomum zeylanicum): a systematic review. BMC Complement Altern Med 2013;13:275. PubMed
- Ranasinghe P, Galappaththy P. Health benefits of Ceylon cinnamon (Cinnamomum zeylanicum): a summary of the current evidence. Ceylon Med J 2016;61(1):1-5. PubMed
- Nyadjeu P, Dongmo A, Nguelefack TB, Kamanyi A. Antihypertensive and vasorelaxant effects of Cinnamomum zeylanicum stem bark aqueous extracts. J Complement Integr Med 2011;8.
- Wansi SL, Nyadjeu P, Ngamga D, et al. Blood pressure lowering effect of the ethanol extract from the stembark of Cinnamomum zeylanicum (lauraceae) in rats. Pharmacol online 2007;3:166-76.
- Admani S, Hill H, Jacob SE. Cinnamon Sugar Scrub Dermatitis: "Natural" Is Not Always Best. Pediatr Dermatol. 2017;34(1):e42-e43. PubMed
- Isaac-Renton M, Li MK, Parsons LM. Cinnamon spice and everything not nice: many features of intraoral allergy to cinnamic aldehyde. Dermatitis. 2015;26(3):116-21. PubMed
- Vandersall A, Katta R. Eyelid dermatitis as a manifestation of systemic contact dermatitis to cinnamon. Dermatitis. 2015 Jul-Aug;26(4):189. PubMed
- Brancheau D, Patel B, Zughaib M. Do cinnamon supplements cause acute hepatitis? Am J Case Rep 2015;16:250-4. PubMed
- Ranasinghe P, Jayawardena R, Pigera S, et al. Evaluation of pharmacodynamic properties and safety of Cinnamomum zeylanicum (Ceylon cinnamon) in healthy adults: a phase I clinical trial. BMC Complement Altern Med 2017;17(1):550. PubMed
- Zareie A, Sahebkar A, Khorvash F, Bagherniya M, Hasanzadeh A, Askari G. Effect of cinnamon on migraine attacks and inflammatory markers: A randomized double-blind placebo-controlled trial. Phytother Res 2020;34(11):2945-52. PubMed
- Zobeiri M, Parvizi F, Shahpiri Z, et al. Evaluation of the effectiveness of cinnamon oil soft capsule in patients with functional dyspepsia: A randomized double-blind placebo-controlled clinical trial. Evid Based Complement Alternat Med 2021;2021:6634115. PubMed
- Chase C, Doyle A, John SS, Laurent T, Griffith S. Post-operative haemorrhage secondary to cinnamon use. A case report. Int J Surg Case Rep 2022;95:107179. PubMed
Rosemary 20 references
- Newall CA, Anderson LA, Philpson JD. Herbal Medicine: A Guide for Healthcare Professionals. London, UK: The Pharmaceutical Press, 1996.
- Foster S, Tyler VE. Tyler's Honest Herbal: A Sensible Guide to the Use of Herbs and Related Remedies. 3rd ed., Binghamton, NY: Haworth Herbal Press, 1993.
- The Review of Natural Products by Facts and Comparisons. St. Louis, MO: Wolters Kluwer Co., 1999.
- McGuffin M, Hobbs C, Upton R, Goldberg A, eds. American Herbal Products Association's Botanical Safety Handbook. Boca Raton, FL: CRC Press, LLC 1997.
- Gruenwald J, Brendler T, Jaenicke C. PDR for Herbal Medicines. 1st ed. Montvale, NJ: Medical Economics Company, Inc., 1998.
- Cartier LC, Lehrer A, Malo JL. Occupational asthma caused by aromatic herbs. Allergy 1996;51:647-9. DOI
- Burkhard PR, Burkhardt K, Haenggeli CA, Landis T. Plant-induced seizures: reappearance of an old problem. J Neurol 1999;246:667-70. PubMed
- Swain AR, Dutton SP, Truswell AS. Salicylates in foods. J Am Diet.Assoc 1985;85(8):950-60. DOI
- Zhu BT, Loder DP, Cai MX, et al. Dietary administration of an extract from rosemary leaves enhances the liver microsomal metabolism of endogenous estrogens and decreases their uterotropic action in CD-1 mice. Carcinogenesis 1998;19(10):1821-7. PubMed
- Debersac P, Heydel JM, Amiot MJ, et al. Induction of cytochrome P450 and/or detoxication enzymes by various extracts of rosemary: description of specific patterns. Food Chem Toxicol 2001;39(9):907-18. PubMed
- Debersac P, Vernevaut MF, Amiot MJ, et al. Effects of a water-soluble extract of rosemary and its purified component rosmarinic acid on xenobiotic-metabolizing enzymes in rat liver. Food Chem Toxicol 2001;39(2):109-17. PubMed
- Lee JJ, Jin YR, Lee JH, et al. Antiplatelet activity of carnosic acid, a phenolic diterpene from Rosmarinus officinalis. Planta Med 2007;73(2):121-7.
- Yamamoto J, Yamada K, Naemura A, et al. Testing various herbs for antithrombotic effect. Nutrition 2005;21(5):580-7. PubMed
- Naemura A, Ura M, Yamashita T, et al. Long-term intake of rosemary and common thyme herbs inhibits experimental thrombosis without prolongation of bleeding time. Thromb Res 2008;122(4):517-22. PubMed
- Lee JJ, Jin YR, Lim Y, et al. Antiplatelet activity of carnosol is mediated by the inhibition of TXA2 receptor and cytosolic calcium mobilization. Vascul Pharmacol 2006;45:148-53. PubMed
- Bakirel, T., Bakirel, U., Keles, O. U., Ulgen, S. G., and Yardibi, H. In vivo assessment of antidiabetic and antioxidant activities of rosemary (Rosmarinus officinalis) in alloxan-diabetic rabbits. J Ethnopharmacol 2-28-2008;116(1):64-73. PubMed
- Erenmemisoglu, A., Saraymen, R., and Ustun, S. Effect of a Rosmarinus officinalis leave extract on plasma glucose levels in normoglycaemic and diabetic mice. Pharmazie 1997;52(8):645-646.
- Valones MAA, Silva ICG, Gueiros LAM, Leão JC, Caldas AF Jr, Carvalho AAT. Clinical assessment of rosemary-based toothpaste (Rosmarinus officinalis Linn.): A randomized controlled double-blind study. Braz Dent J. 2019;30(2):146-151. PubMed
- Quirarte-Báez SM, Zamora-Perez AL, Reyes-Estrada CA, et al. A shortened treatment with rosemary tea (rosmarinus officinalis) instead of glucose in patients with diabetes mellitus type 2 (TSD). J Popul Ther Clin Pharmacol. 2019;26(4):e18-e28.
- Al Jamal A. Effect of rosemary (Rosmarinus officinalis) on lipid profiles and blood glucose in human diabetic patients (type-2). African J. Biochem. Res. 2014;8(8):147-50. DOI
Sweet Orange 17 references
- Leung AY, Foster S. Encyclopedia of Common Natural Ingredients Used in Food, Drugs and Cosmetics. 2nd ed. New York, NY: John Wiley & Sons, 1996.
- FDA, CFSAN. FDA-approved potassium health claim notification for potassium containing foods. 2000. Available at: www.cfsan.fda.gov/~dms/hclm-k.html.
- Kurowska EM, Spence JD, Jordan J, et al. HDL-cholesterol-raising effect of orange juice in subjects with hypercholesterolemia. Am J Clin Nutr 2000;72:1095-100. PubMed
- Murry JJ, Healy MD. Drug-mineral interactions: a new responsibility for the hospital dietician. J Am Diet Assoc 1991;91:66-73.
- Bailey DG, Dresser GK, Munoz C, et al. Reduction of fexofenadine bioavailability by fruit juices. Clin Pharmacol Ther 2001;69:P21.
- Pletz MW, Petzold P, Allen A, et al. Effect of calcium carbonate on bioavailability of orally administered gemifloxacin. Antimicrob Agents Chemother 2003;47:2158-60.. PubMed
- Lilja JJ, Juntti-Patinen L, Neuvonen PJ. Orange juice substantially reduces the bioavailability of the beta-adrenergic-blocking agent celiprolol. Clin Pharmacol Ther 2004;75:184-90.
- Tian R, Koyabu N, Takanaga H, et al. Effects of grapefruit juice and orange juice on the intestinal efflux of P-glycoprotein substrates. Pharm Res 2002;19:802-9. PubMed
- Vanapalli SR, Chen Y, Ellingrod VL, et al. Orange juice decreases the oral bioavailability of ivermectin in health volunteers. Clin Pharmacol Ther 2003;73 (Abstract PDII-A-10):P94.
- Huang SM, Lesko LJ. Drug-drug, drug-dietary supplement, and drug-citrus fruit and other food interactions: what have we learned? J Clin Pharmacol 2004;44:559-69. PubMed
- Koitabashi Y, Kumai T, Matsumoto N, et al. Orange juice increased the bioavailability of pravastatin, 3-hydroxy-3-methylglutaryl CoA reductase inhibitor, in rats and healthy human subjects. Life Sci 2006;78:2852-9. PubMed
- Takanaga H, Ohnishi A, Yamada S, et al. Polymethoxylated flavones in orange juice are inhibitors of P-glycoprotein but not cytochrome P450 3A4. J Pharmacol Exp Ther 2000;293:230-6. DOI
- Greenblatt DJ. Analysis of drug interactions involving fruit beverages and organic anion-transporting polypeptides. J Clin Pharmacol 2009;49:1403-7. PubMed
- Bailey DG. Fruit juice inhibition of uptake transport: a new type of food-drug interaction. Br J Clin Pharmacol 2010;70:645-55. PubMed
- Kamath AV, Yao M, Zhang Y, Chong S. Effect of fruit juices on the oral bioavailability of fexofenadine in rats. J Pharm Sci 2005;94:233-9. PubMed
- Kays MB, Overholser BR, Mueller BA, et al. Effects of sevelamer hydrochloride and calcium acetate on the oral bioavailability of ciprofloxacin. Am J Kidney Dis. 2003;42(6):1253-9. PubMed
- Neuhofel, A. L., Wilton, J. H., Victory, J. M., Hejmanowsk, L. G., and Amsden, G. W. Lack of bioequivalence of ciprofloxacin when administered with calcium-fortified orange juice: a new twist on an old interaction. J Clin Pharmacol. 2002;42(4):461-466. DOI
Clove 26 references
- The Review of Natural Products by Facts and Comparisons. St. Louis, MO: Wolters Kluwer Co., 1999.
- Electronic Code of Federal Regulations. Title 21. Part 182 -- Substances Generally Recognized As Safe. Available at: https://www.accessdata.fda.gov/scripts/cdrh/cfdocs/cfcfr/CFRSearch.cfm?CFRPart=182
- Kanerva L, Estlander T, Jolanki R. Occupational allergic contact dermatitis from spices. Contact Dermatitis 1996;35:157-62. PubMed
- Chen SJ, Wang MH, Chen IJ. Antiplatelet and calcium inhibitory properties of eugenol and sodium eugenol acetate. Gen Pharmacol 1996;27:629-33. PubMed
- Malson JL, Lee EM, Murty R, et al. Clove cigarette smoking: biochemical, physiological, and subjective effects. Pharmacol Biochem Behav 2003;74:739-45. PubMed
- Kirsch CM, Yenokida GG, Jensen WA, et al. Non-cardiogenic pulmonary oedema due to the intravenous administration of clove oil. Thorax 1990;45:235-6. PubMed
- Pallares, D. E. Link between clove cigarettes and urticaria? Postgrad.Med 10-1-1999;106(4):153. PubMed
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