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The Relative Contributions of CYP3A4 and CYP3A5 to the Metabolism of Vinorelbine

机译:CYP3A4和CYP3A5对长春瑞滨代谢的相对贡献

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摘要

Vinorelbine is a semisynthetic vinca alkaloid used in the treatment of advanced breast and non-small cell lung cancers. Vincristine, a related vinca alkaloid, is 9-fold more efficiently metabolized by CYP3A5 than by CYP3A4 in vitro. This study quantified the relative contribution of CYP3A4 and CYP3A5 to the metabolism of vinorelbine in vitro using cDNA-expressed human cytochrome P450s (P450s) and human liver microsomes (HLMs). CYP3A4 and CYP3A5 were identified as the P450s capable of oxidizing vinorelbine using a panel of human enzymes and selective P450 inhibitors in HLMs. For CYP3A4 coexpressed with cytochrome b5 (CYP3A4+b5) and CYP3A5+b5, the Michaelis-Menten constants for vinorelbine were 2.6 and 3.6 μM, respectively, but the Vmax of 1.4 pmol/min/pmol was common to both enzymes. In HLMs, the intrinsic clearance of vinorelbine metabolism was highly correlated with CYP3A4 activity, and there was no significant difference in intrinsic clearance between CYP3A5 high and low expressers. When radiolabeled vinorelbine substrate was used, there were clear qualitative differences in metabolite formation fingerprints between CYP3A4+b5 and CYP3A5+b5 as determined by NMR and mass spectrometry analysis. One major metabolite (M2), a didehydro-vinorelbine, was present in both recombinant and microsomal systems but was more abundant in CYP3A4+b5 incubations. We conclude that despite the equivalent efficiency of recombinant CYP3A4 and CYP3A5 in vinorelbine metabolism the polymorphic expression of CYP3A5, as shown by the kinetics with HLMs, may have a minimal effect on systemic clearance of vinorelbine.
机译:长春瑞滨长春瑞滨碱是一种半合成长春花生物碱,用于治疗晚期乳腺癌和非小细胞肺癌。长春新碱,一种相关的长春花生物碱,在体外通过CYP3A5代谢的效率比通过CYP3A4高9倍。本研究使用cDNA表达的人细胞色素P450(P450)和人肝微粒体(HLM)定量了CYP3A4和CYP3A5对长春瑞滨代谢的相对贡献。 CYP3A4和CYP3A5被鉴定为能够在HLM中使用一组人类酶和选择性P450抑制剂氧化长春瑞滨的P450。对于与细胞色素b5(CYP3A4 + b5)和CYP3A5 + b5共表达的CYP3A4,长春瑞滨的Michaelis-Menten常数分别为2.6和3.6μM,但两种酶的Vmax均为1.4 pmol / min / pmol。在HLM中,长春瑞滨代谢的内在清除与CYP3A4活性高度相关,CYP3A5高表达和低表达之间的内在清除率无显着差异。当使用放射性标记的长春瑞滨底物时,通过NMR和质谱分析确定,CYP3A4 + b5和CYP3A5 + b5之间的代谢物形成指纹存在明显的质量差异。重组和微粒体系统中均存在一种主要的代谢产物(M2),即双氢-长春瑞滨,但在CYP3A4 + b5孵育中含量更高。我们得出的结论是,尽管重组CYP3A4和CYP3A5在长春瑞滨代谢中具有同等效率,但如HLM动力学所示,CYP3A5的多态性表达对长春瑞滨的全身清除作用可能很小。

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