首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Role of specific cytochrome P450 isoforms in the conversion of phenoxypropoxybiguanide analogs in human liver microsomes to potent antimalarial dihydrotriazines.
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Role of specific cytochrome P450 isoforms in the conversion of phenoxypropoxybiguanide analogs in human liver microsomes to potent antimalarial dihydrotriazines.

机译:特定细胞色素P450亚型在人肝微粒体中苯氧基丙氧基双胍类似物向有效抗疟疾二氢三嗪的转化中的作用。

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摘要

Phenoxypropoxybiguanides, such as PS-15, are antimalarial prodrugs analogous to the relationship of proguanil and its active metabolite cycloguanil. Unlike cycloguanil, however, WR99210, the active metabolite of PS-15, has retained in vitro potency against newly emerging antifolate-resistant malaria parasites. Recently, in vitro metabolism of a new series of phenoxypropoxybiguanide analogs has examined the production of the active triazine metabolites by human liver microsomes. The purpose of this investigation was to elucidate the primary cytochrome P450 isoforms involved in the production of active metabolites in the current lead candidate. By using expressed human recombinant isoform preparations, specific chemical inhibitors, and isoform-specific inhibitory antibodies, the primary cytochrome P450 isoforms involved in the in vitro metabolic activation of JPC-2056 were elucidated. Unlike proguanil, which is metabolized primarily by CYP2C19, the results indicate that CYP3A4 plays a more important rolein the metabolism of both PS-15 and JPC-2056. Whereas CYP2D6 appears to play a major role in the metabolism of PS-15 to WR99210, it appears less important in the conversion of JPC-2056 to JPC-2067. These results are encouraging, considering the prominence of CYP2C19 and CYP2D6 polymorphisms in certain populations at risk for contracting malaria, because the current clinical prodrug candidate from this series may be less dependent on these enzymes for metabolic activation.
机译:苯氧基丙氧基双胍,例如PS-15,是抗疟药的前药,类似于丙胍及其活性代谢物环胍的关系。但是,与环鸟嘌呤不同,WR-15210是PS-15的活性代谢产物,它在体外具有抵抗新出现的抗叶酸抗疟疾寄生虫的能力。最近,一系列新的苯氧基丙氧基双胍类似物的体外代谢研究了人肝微粒体产生的活性三嗪代谢物。这项研究的目的是阐明当前候选候选药物中涉及活性代谢物生产的主要细胞色素P450亚型。通过使用表达的人重组同工型制剂,特异性化学抑制剂和同工型特异性抑制抗体,阐明了参与JPC-2056体外代谢活化的主要细胞色素P450同工型。与主要通过CYP2C19代谢的胍基虫不同,该结果表明CYP3A4在PS-15和JPC-2056的代谢中起着更重要的作用。 CYP2D6似乎在PS-15到WR99210的代谢中起主要作用,而在JPC-2056到JPC-2067的转化中似乎不那么重要。考虑到CYP2C19和CYP2D6多态性在某些有感染疟疾风险的人群中的突出性,这些结果令人鼓舞,因为该系列中当前的临床前药候选物可能较少依赖这些酶进行代谢激活。

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