Ezetimibe nonclinical toxicology: Difference between revisions

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==Nonclinical Toxicology==
 
===Carcinogenesis, Mutagenesis, Impairment of Fertility===
 
A 104-week dietary carcinogenicity study with ezetimibe was conducted in rats at doses up to 1500 mg/kg/day (males) and 500 mg/kg/day (females) (~20 × the human exposure at 10 mg daily based on AUC0–24hr for total ezetimibe). A 104-week dietary carcinogenicity study with ezetimibe was also conducted in mice at doses up to 500 mg/kg/day (>150 × the human exposure at 10 mg daily based on AUC0–24hr for total ezetimibe). There were no statistically significant increases in tumor incidences in drug-treated rats or mice.
 
No evidence of mutagenicity was observed in vitro in a microbial mutagenicity (Ames) test with [[Salmonella typhimurium]] and [[Escherichia coli ]]with or without metabolic activation. No evidence of clastogenicity was observed in vitro in a chromosomal aberration assay in human peripheral blood lymphocytes with or without metabolic activation. In addition, there was no evidence of genotoxicity in the in vivo mouse micronucleus test.
 
In oral (gavage) fertility studies of ezetimibe conducted in rats, there was no evidence of reproductive toxicity at doses up to 1000 mg/kg/day in male or female rats (~7 × the human exposure at 10 mg daily based on AUC0–24hr for total ezetimibe).
 
===Animal Toxicology and/or Pharmacology===
 
The hypocholesterolemic effect of ezetimibe was evaluated in cholesterol-fed Rhesus monkeys, dogs, rats, and mouse models of human cholesterol metabolism. Ezetimibe was found to have an ED50 value of 0.5 µg/kg/day for inhibiting the rise in plasma cholesterol levels in monkeys. The ED50 values in dogs, rats, and mice were 7, 30, and 700 µg/kg/day, respectively. These results are consistent with ZETIA being a potent cholesterol absorption inhibitor.
 
In a rat model, where the glucuronide metabolite of ezetimibe (SCH 60663) was administered intraduodenally, the metabolite was as potent as the parent compound (SCH 58235) in inhibiting the absorption of cholesterol, suggesting that the glucuronide metabolite had activity similar to the parent drug.
 
In 1-month studies in dogs given ezetimibe (0.03 to 300 mg/kg/day), the concentration of cholesterol in gallbladder bile increased ~2- to 4-fold. However, a dose of 300 mg/kg/day administered to dogs for one year did not result in gallstone formation or any other adverse hepatobiliary effects. In a 14-day study in mice given ezetimibe (0.3 to 5 mg/kg/day) and fed a low-fat or cholesterol-rich diet, the concentration of cholesterol in gallbladder bile was either unaffected or reduced to normal levels, respectively.
 
A series of acute preclinical studies was performed to determine the selectivity of ZETIA for inhibiting cholesterol absorption. Ezetimibe inhibited the absorption of 14C-cholesterol with no effect on the absorption of triglycerides, fatty acids, bile acids, progesterone, ethinyl estradiol, or the fat-soluble vitamins A and D.
 
In 4- to 12-week toxicity studies in mice, ezetimibe did not induce cytochrome P450 drug metabolizing enzymes. In toxicity studies, a pharmacokinetic interaction of ezetimibe with statins (parents or their active hydroxy acid metabolites) was seen in rats, dogs, and rabbits.
<ref name="dailymed.nlm.nih.gov">{{Cite web  | last =  | first =  | title = ZETIA (EZETIMIBE) TABLET [MERCK SHARP & DOHME CORP.] | url = http://dailymed.nlm.nih.gov/dailymed/lookup.cfm?setid=a773b0b2-d31c-4ff4-b9e8-1eb2d3a4d62a | publisher =  | date =  | accessdate = 11 February 2014 }}</ref>
 
==References==
 
{{Reflist|2}}
 
[[Category:Hypolipidemic agents]]
[[Category:Lactams]]
[[Category:Merck]]
[[Category:Schering-Plough]]
[[Category:Azetidines]]
[[Category:Organofluorides]]
[[Category:Phenols]]
[[Category:Cardiovasuclar Drugs]]
[[Category:Drugs]]

Latest revision as of 14:18, 21 July 2014

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