Biotransformation of cerivastatin in mice, rats, and dogs in vivo.

生物转化 西伐他汀 去甲基化 牛磺酸 化学 葡萄糖醛酸化 体内 代谢物 羟基化 结合 新陈代谢 药物代谢 生物化学 葡萄糖醛酸 前药 药理学 体外 胆固醇 氨基酸 生物 微粒体 普伐他汀 数学 DNA甲基化 基因 生物技术 基因表达 数学分析
作者
Michael Boberg,Rolf Angerbauer,Wolfgang K. Kanhai,Wolfgang Karl,Armin Kern,Martin Radtke,Wolfram Steinke
出处
期刊:PubMed 卷期号:26 (7): 640-52 被引量:44
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Biotransformation of cerivastatin was investigated in mice, rats, and dogs in vivo using the 14C-labeled drug. Marked species differences exist, both in pathways and extent of cerivastatin metabolism. Unchanged drug, together with its lactone, predominates in dog plasma and represents 40% of the dose in the excreta, whereas in rat bile they account for approximately 10% of the dose. In mice, the drug is metabolized rapidly and almost completely. Biotransformation of cerivastatin occurs by three distinct phase I routes and by phase II conjugation with sugar-type moieties and taurine. Phase I routes are demethylation of the pyridinyl methyl ether, beta-oxidation of the 3,5-dihydroxy acid side chain, and reductive removal of the side chain 3-hydroxy group. In dogs, demethylation is the dominating phase I biotransformation. Phase II conjugation is equally important. In dog bile, different regioisomeric drug glucuronides and the benzylic glucuronide and glucoside conjugate of the demethylated drug were found. In rats, besides demethylation, beta-oxidation of the dihydroxy acid side chain-followed by reductive removal of the 5-hydroxy group-is the major reaction. The resulting pentenoic acid derivatives are observed in plasma and liver homogenate. These metabolites are subsequently conjugated with taurine and excreted in the bile. This metabolic sequence is also important in mice. Furthermore, only in mice, cerivastatin is subject to reductive removal of the 3-hydroxy group, together with demethylation. The 5-hydroxyheptenoic acids formed predominate in plasma and liver homogenate, whereas the corresponding taurine conjugates are excreted in the bile.

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