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首页> 外文期刊>Current Drug Metabolism >Evaluation of Microsomal Incubation Conditions on CYP3A4-Mediated Metabolism of Cyclosporine A by a Statistical Experimental Design
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Evaluation of Microsomal Incubation Conditions on CYP3A4-Mediated Metabolism of Cyclosporine A by a Statistical Experimental Design

机译:通过统计实验设计评估微粒体温育条件对CYP3A4介导的环孢菌素A代谢的影响

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摘要

Objective: The aim of this study was to evaluate the influence of microsomal incubation conditions on CYP3A4-mediated metabolism of cyclosporine (CsA) within the limits of previous in vitro studies by application of a statistical experimental design.nnThe effect of changes in microsomal incubation conditions (NADPH, Mg2+, Cl-, NADPH-regenerating system and pH) on the formation of the CYP3A4 metabolites AM1 and AM9 from CsA were studied by application of a fractional factorial design. Metabolism was studied in microsomes of transfected human liver epithelial (THLE) cells specifically expressing CYP3A4.nnWithin the conditions tested, a 3-4-fold difference in formation of CsA metabolites was observed. Formation of both AM1 and AM9 was favoured by a low Mg2+ concentration (0.5 mM) and no addition of Cl- to the incubation matrix. However, while a high NADPH concentration (1.75 mM) was the single most important factor for the formation of AM1, changes in NADPH concentration between 0.25 and 1.75 mM had no influence on AM9 formation. Formation of the two metabolites also differed in their influence by pH changes, as a change in pH from 7.2 to 7.5 significantly increased the formation of AM9, while formation of AM1 was unaffected by this change.nnThe present study showed that relatively small changes in the incubation matrix had a significant influence on the microsomal CYP3A4-mediated metabolism of CsA. Systematic studies on microsomal incubation conditions could be a key to improve metabolic in vitro-in vivo extrapolations in drug development.
机译:目的:本研究的目的是通过统计学实验设计在先前体外研究的范围内评估微粒体温育条件对CYP3A4介导的环孢素(CsA)代谢的影响.nn微粒体温育条件变化的影响通过分数分解设计研究了由CsA形成CYP3A4代谢产物AM1和AM9的反应(NADPH,Mg2 +,Cl-,NADPH再生系统和pH)。在特异表达CYP3A4.nn的转染人肝上皮(THLE)细胞的微粒体中研究了代谢,在测试条件下,观察到CsA代谢物形成的3至4倍差异。低Mg2 +浓度(0.5 mM)且不向培养基质中添加Cl-有利于AM1和AM9的形成。但是,虽然高NADPH浓度(1.75 mM)是形成AM1的最重要因素,但NADPH浓度在0.25和1.75 mM之间变化不会影响AM9的形成。两种代谢物的形成也受pH变化的影响不同,因为pH从7.2变为7.5会显着增​​加AM9的形成,而AM1的形成不受此变化的影响。孵育基质对CYP3A4介导的CsA微粒体代谢有显着影响。对微粒体温育条件的系统研究可能是改善药物开发中体内外代谢的关键。

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