Each 10.0 drops serving contains: Chelidonium majus 30.0 X • Clematis vitalba , Flox 30.0 X • Helianthum Nummularium , Flos 30.0 X • Lycopodium clavatum 30.0 X • Ornithogalum umbellatum , Flos 30.0 X • Pituitarium Posterium 30.0 X • Prunus Cerasifera , Flos 30.0 X. Other Ingredients: Ethanol, Water.
Brand name products often contain multiple ingredients. To read detailed information about each ingredient, click on the link for the individual ingredient shown above.
In 2004, Canada began regulating natural medicines as a category of products separate from foods or drugs. These products are officially recognized as "Natural Health Products." These products include vitamins, minerals, herbal preparations, homeopathic products, probiotics, fatty acids, amino acids, and other naturally derived supplements.
In order to be marketed in Canada, natural health products must be licensed. In order to be licensed in Canada, manufacturers must submit applications to Health Canada including information about uses, formulation, dosing, safety, and efficacy.
Products can be licensed based on several criteria. Some products are licensed based on historical or traditional uses. For example, if an herbal product has a history of traditional use, then that product may be acceptable for licensure. In this case, no reliable scientific evidence is required for approval.
For products with non-traditional uses, some level of scientific evidence may be required to support claimed uses. However, a high level of evidence is not necessarily required. Acceptable sources of evidence include at least one well-designed, randomized, controlled trial; well-designed, non-randomized trials; cohort and case control studies; or expert opinion reports.
Finished products licensed by Health Canada must be manufactured according to Good Manufacturing Practices (GMPs) as outlined by Health Canada.
This is a homeopathic preparation. Homeopathy is a system of medicine established in the 19th century by a German physician named Samuel Hahnemann. Its basic principles are that "like treats like" and "potentiation through dilution." For example, in homeopathy, diarrhea would be treated with an extreme dilution of a substance that normally causes diarrhea when taken in high doses.
Practitioners of homeopathy believe that more dilute preparations are more potent. Many homeopathic preparations are so diluted that they contain little or no active ingredient. Therefore, most homeopathic products are not expected to have any pharmacological effects, drug interactions, or other harmful effects. Any beneficial effects are controversial and cannot be explained by current scientific methods.
Dilutions of 1 to 10 are designated by an "X." So a 1X dilution = 1:10, 3X=1:1000; 6X=1:1,000,000. Dilutions of 1 to 100 are designated by a "C." So a 1C dilution = 1:100; 3C = 1:1,000,000. Dilutions of 24X or 12C or more contain zero molecules of the original active ingredient.
Homeopathic products are permitted for sale in the US due to legislation passed in 1938 sponsored by a homeopathic physician who was also a Senator. The law still requires that the FDA allow the sale of products listed in the Homeopathic Pharmacopeia of the United States. However, homeopathic preparations are not held to the same safety and effectiveness standards as conventional medicines. For more information, see the Homeopathy monograph.
Below is general information about the effectiveness of the known ingredients contained in the product Max NGH Release. Some ingredients may not be listed. This information does NOT represent a recommendation for or a test of this specific product as a whole.
There is insufficient reliable information available about the effectiveness of clubmoss.
INSUFFICIENT RELIABLE EVIDENCE to RATE
There is insufficient reliable information available about the effectiveness of star of Bethlehem.
There is insufficient reliable information available about the effectiveness of traveler's joy.
Below is general information about the safety of the known ingredients contained in the product Max NGH Release. Some ingredients may not be listed. This information does NOT represent a recommendation for or a test of this specific product as a whole.
POSSIBLY UNSAFE ...when used orally. Clubmoss contains toxic alkaloids, but no poisonings have been reported (18).
PREGNANCY AND LACTATION: POSSIBLY UNSAFE
when used orally; avoid using.
POSSIBLY UNSAFE ...when used orally. Greater celandine has been implicated in dozens of cases of liver damage, primarily in European countries including Germany (363,13410,16839,41412,53502,53504,53506,53507,53510). There is insufficient reliable information available about the safety of greater celandine when used topically or when derivatives of greater celandine constituents are used intravenously.
PREGNANCY AND LACTATION:
Insufficient reliable information available; avoid using.
LIKELY UNSAFE ...when used orally. Star of Bethlehem contains toxic cardiac glycosides (15330,15331,15332,15333). Ingestion of star of Bethlehem could result in serious adverse effects including cardiac arrhythmia and death.
PREGNANCY AND LACTATION: LIKELY UNSAFE
when used orally.
Star of Bethlehem contains toxic cardiac glycosides (15330,15331,15332,15333). Ingestion of star of Bethlehem could result in serious adverse effects.
LIKELY UNSAFE ...when used orally or topically due to the constituent protoanemonin, which is a severe local irritant (18).
PREGNANCY AND LACTATION: LIKELY UNSAFE
when used orally or topically (18).
Below is general information about the interactions of the known ingredients contained in the product Max NGH Release. Some ingredients may not be listed. This information does NOT represent a recommendation for or a test of this specific product as a whole.
Evidence from in vitro research suggests that clubmoss extract can inhibit acetylcholinesterase activity (43717). Theoretically, concurrent use of clubmoss with other acetylcholinesterase (AChE) inhibitors might have additive effects and increase the risk of cholinergic side effects. AChE inhibitors and cholinergic drugs include bethanechol (Urecholine), donepezil (Aricept), echothiophate (Phospholine Iodide), edrophonium (Enlon, Reversol, Tensilon), neostigmine (Prostigmin), physostigmine (Antilirium), pyridostigmine (Mestinon, Regonol), succinylcholine (Anectine, Quelicin), and tacrine (Cognex).
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Evidence from in vitro research suggests that clubmoss extract can inhibit acetylcholinesterase activity (43717). Theoretically, concurrent use of anticholinergic drugs and clubmoss might decrease the effectiveness of club moss or the anticholinergic agent. Some anticholinergic drugs include atropine, benztropine (Cogentin), biperiden (Akineton), procyclidine (Kemadrin), and trihexyphenidyl (Artane).
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Evidence from in vitro research suggests that clubmoss extract can inhibit acetylcholinesterase activity (43717). Theoretically, concurrent use of clubmoss with other cholinergic drugs might have additive effects and increase the risk of cholinergic side effects. AChE inhibitors and cholinergic drugs include bethanechol (Urecholine), donepezil (Aricept), echothiophate (Phospholine Iodide), edrophonium (Enlon, Reversol, Tensilon), neostigmine (Prostigmin), physostigmine (Antilirium), pyridostigmine (Mestinon, Regonol), succinylcholine (Anectine, Quelicin), and tacrine (Cognex).
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Research in vitro shows that chelidonine, a constituent of greater celandine, inhibits cytochrome P450 2D6 (CYP2D6) enzyme activity (99455). Theoretically, greater celandine might increase levels of drugs metabolized by CYP2D6.
Details
Some drugs metabolized by CYP2D6 include amitriptyline (Elavil), clozapine (Clozaril), codeine, desipramine (Norpramin), donepezil (Aricept), fentanyl (Duragesic), flecainide (Tambocor), fluoxetine (Prozac), meperidine (Demerol), methadone (Dolophine), metoprolol (Lopressor, Toprol XL), olanzapine (Zyprexa), ondansetron (Zofran), tramadol (Ultram), trazodone (Desyrel), and many others.
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There is some concern that greater celandine can adversely affect the liver. Greater celandine has been linked to many cases of hepatotoxicity (363,13410,16839,41412,53502,53504,53506,53507,53510). Theoretically, concomitant use with other potentially hepatotoxic drugs might increase the risk of developing liver damage. Some of these drugs include acarbose (Precose, Prandase), amiodarone (Cordarone), atorvastatin (Lipitor), azathioprine (Imuran), carbamazepine (Tegretol), cerivastatin (Baycol), diclofenac (Voltaren), felbamate (Felbatol), fenofibrate (TriCor), fluvastatin (Lescol), gemfibrozil (Lopid), isoniazid, itraconazole, (Sporanox), ketoconazole (Nizoral), leflunomide (Arava), lovastatin (Mevacor), methotrexate (Rheumatrex), nevirapine (Viramune), niacin, nitrofurantoin (Macrodantin), pioglitazone (Actos), pravastatin (Pravachol), pyrazinamide, rifampin (Rifadin), ritonavir (Norvir), rosiglitazone (Avandia), simvastatin (Zocor), tacrine (Cognex), tamoxifen, terbinafine (Lamisil), valproic acid, and zileuton (Zyflo).
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Preliminary clinical research suggests that taking a specific semi-synthetic derivative of the greater celandine constituent chelidonine (Ukrain; not available in North America) might stimulate immune responses in cancer patients (53473,53497). Theoretically, taking greater celandine might decrease the effects of immunosuppressive therapy. Immunosuppressant drugs include azathioprine (Imuran), basiliximab (Simulect), cyclosporine (Neoral, Sandimmune), daclizumab (Zenapax), muromonab-CD3 (OKT3, Orthoclone OKT3), mycophenolate (CellCept), tacrolimus (FK506, Prograf), sirolimus (Rapamune), prednisone (Deltasone, Orasone), and other corticosteroids (glucocorticoids).
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Theoretically taking monoamine oxidase inhibitors (MAOIs) with greater celandine might increase the risk of serotonergic side effects including serotonin syndrome. In vitro research shows that chelerythrine, an isoquinoline alkaloid in greater celandine, strongly, selectively, and reversibly inhibits an isoform of recombinant human monoamine oxidase-A (MAO-A). It was also a weak but selective inhibitor of monoamine oxidase-B (MAO-B) (99454). Some MAOIs include phenelzine (Nardil), tranylcypromine (Parnate), and others.
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Theoretically, taking star of Bethlehem with prolonged corticosteroid therapy might increase the risk of toxicity.
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Theoretically, taking star of Bethlehem in combination with digoxin might have additive effects and increase the risk of toxicity.
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Theoretically, taking diuretics with star of Bethlehem might increase the risk of toxicity.
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Theoretically, taking macrolide antibiotics with star of Bethlehem might increase the risk of cardiac glycoside toxicity.
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Star of Bethlehem contains cardiac glycosides (15330,15331). Macrolide antibiotics appear to increase the gastrointestinal absorption of oral digoxin. Theoretically, concomitant use of macrolide antibiotics might increase the absorption of the cardiac glycosides found in star of Bethlehem and increase the risk of adverse effects (17).
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Theoretically, taking quinine with star of Bethlehem might increase the risk of cardiac glycoside toxicity.
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Theoretically, excessive use of stimulant laxatives with star of Bethlehem might increase the risk of toxicity.
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Theoretically, taking tetracycline antibiotics with star of Bethlehem might increase the risk of cardiac glycoside toxicity.
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Star of Bethlehem contains cardiac glycosides similar to digitalis (15330,15331). Tetracycline antibiotics appear to increase the gastrointestinal absorption of oral digoxin. Theoretically, concomitant use of tetracycline antibiotics might increase the absorption of the cardiac glycosides found in star of Bethlehem and increase the risk of adverse effects (17).
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Below is general information about the adverse effects of the known ingredients contained in the product Max NGH Release. Some ingredients may not be listed. This information does NOT represent a recommendation for or a test of this specific product as a whole.
General
...Orally, no adverse effects have been reported; however, a thorough evaluation of safety outcomes has not been conducted.
Additionally, clubmoss contains toxic alkaloids, which could cause serious adverse effects (43721). When fir club moss (Lycopodium selago) is mistaken for clubmoss, cholinergic toxicity has been reported. This toxicity is due to huperzine A, which is not present in clubmoss (13193).
Airborne exposure to clubmoss spores might cause symptoms of asthma (43721).
Pulmonary/Respiratory ...Occupational exposure to clubmoss spores, including cases associated with facilities that use the spores to coat condoms, has been reported to cause asthma (43721).
Other ...Clubmoss (Lycopodium clavatum) might be mistaken for fir club moss (Lycopodium selago), which contains huperzine A, a constituent with strong inhibitory activity against acetylcholinesterase. In two case reports, fir club moss was mistaken for clubmoss and ingested as tea. This caused cholinergic toxicity with symptoms of sweating, nausea, dizziness, cramping, and slurred speech (13193).
General
...Orally, greater celandine has been implicated in dozens of cases of liver damage (363,13410,16839,41412,53502,53504,53506,53507,53510).
Greater celandine can also cause rash (13410). Greater celandine extract has caused a single case of hemolytic anemia (53508).
Topically, greater celandine can cause contact dermatitis (13411).
Intravenously, a derivative of the greater celandine constituent chelidonine (Ukrain) can cause gastrointestinal symptoms, increased body temperature, general burning sensations, and bleeding (13409,53460).
Dermatologic ...Orally, greater celandine can cause rash (13410). Topically, greater celandine can cause contact dermatitis (13411).
Gastrointestinal ...Intravenously, a derivative of the greater celandine constituent chelidonine (Ukrain) can cause gastrointestinal symptoms, including obstipation, nausea, and diarrhea (13409,53460).
Hematologic
...Orally, greater celandine extract has caused a single case of hemolytic anemia.
This resulted in thrombocytopenia, destruction of liver cells, and kidney failure, requiring treatment (53508).
Intravenously, a derivative of the greater celandine constituent chelidonine (Ukrain) can cause bleeding (13409,53460).
Hepatic ...Orally, greater celandine has been implicated in dozens of cases of liver damage (363,13410,16839,41412,53502,53504,53506,53507,53510). The cause is unknown, but appears to be idiopathic. It seems to be independent of dose, and the amount of time before development of liver disease is generally long and variable (363,53506). The main symptom is usually jaundice (53506). Liver enzymes are elevated at least two-fold in all cases where measurements were completed (53506). Although other causes of liver toxicity cannot be ruled out in some cases, many reported cases of hepatotoxicity are probably or likely associated with the use of greater celandine. Recurrence of hepatitis with unintentional re-exposure has also been reported (53506,94282). Discontinuation of greater celandine usually results in a fairly rapid recovery although liver enzymes need months to return to normal (53506,94282). Death has occurred in one patient with hepatitis due to bleeding associated with colonic diverticulitis. Causality was described as possible, not probable, in this case (53506).
Neurologic/CNS ...Intravenously, a derivative of the greater celandine constituent chelidonine (Ukrain) can cause increased body temperature and general burning sensations (13409).
General
...Star of Bethlehem contains cardiac glycosides, which can cause serious adverse effects.
Serious Adverse Effects (Rare):
Orally: Star of Bethlehem contains toxic cardiac glycosides that can cause cardiac arrhythmia and death.
Cardiovascular ...Orally, the cardiac glycosides in star of Bethlehem can cause cardiac arrhythmias (2).
Gastrointestinal ...Orally, the cardiac glycosides in star of Bethlehem can cause nausea and vomiting (2).
Neurologic/CNS ...Orally, the cardiac glycosides in star of Bethlehem can cause headache and stupor (18). Visual color disturbances can also occur (18).
General
...Orally, traveler's joy can cause severe irritation of the gastrointestinal tract, including colic and diarrhea.
Irritation of the urinary tract can also occur.
Topically, skin contact can cause blisters and burns that are difficult to heal (18).