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The cytochrome P450 isoenzyme and some new opportunities for the prediction of negative drug interaction in vivo

机译:细胞色素P450同工酶和体内负药物相互作用预测的一些新机会

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摘要

Cytochrome (CYP) 450 isoenzymes are the basic enzymes involved in Phase I biotransformation. The most important role in biotransformation belongs to CYP3A4, CYP2D6, CYP2C9, CYP2C19 and CYP1A2. Inhibition and induction of CYP isoenzymes caused by drugs are important and clinically relevant pharmacokinetic mechanisms of drug interaction. Investigation of the activity of CYP isoenzymes by using phenotyping methods (such as the determination of the concentration of specific substrates and metabolites in biological fluids) during drug administration provides the prediction of negative side effects caused by drug interaction. In clinical practice, the process of phenotyping of CYP isoenzymes and some endogenous substrates in the ratio of cortisol to 6β-hydroxycortisol in urine for the evaluation of CYP3A4 activity has been deemed to be a quite promising, safe and minimally invasive method for patients nowadays.
机译:细胞色素(CYP)450同工酶是参与I期生物转化的基本酶。在生物转化中最重要的作用是CYP3A4,CYP2D6,CYP2C9,CYP2C19和CYP1A2。药物引起的CYP同工酶的抑制和诱导是药物相互作用的重要且与临床相关的药代动力学机制。在药物给药过程中使用表型方法研究CYP同工酶的活性(例如确定生物流体中特定底物和代谢物的浓度)可预测药物相互作用引起的不良副作用。在临床实践中,以CYP3A4活性评估尿液中CYP3A4活性的CYP同工酶和某些内源性底物的表型化过程被认为是当今患者非常有前途,安全且微创的方法。

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