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细胞色素P450代谢对药物反应、相互作用及不良反应的影响。

The effect of cytochrome P450 metabolism on drug response, interactions, and adverse effects.

作者信息

Lynch Tom, Price Amy

机构信息

Department of Family and Community Medicine, Eastern Virginia Medical School, Norfolk, Virginia 23507, USA.

出版信息

Am Fam Physician. 2007 Aug 1;76(3):391-6.

Abstract

Cytochrome P450 enzymes are essential for the metabolism of many medications. Although this class has more than 50 enzymes, six of them metabolize 90 percent of drugs, with the two most significant enzymes being CYP3A4 and CYP2D6. Genetic variability (polymorphism) in these enzymes may influence a patient's response to commonly prescribed drug classes, including beta blockers and antidepressants. Cytochrome P450 enzymes can be inhibited or induced by drugs, resulting in clinically significant drug-drug interactions that can cause unanticipated adverse reactions or therapeutic failures. Interactions with warfarin, antidepressants, antiepileptic drugs, and statins often involve the cytochrome P450 enzymes. Knowledge of the most important drugs metabolized by cytochrome P450 enzymes, as well as the most potent inhibiting and inducing drugs, can help minimize the possibility of adverse drug reactions and interactions. Although genotype tests can determine if a patient has a specific enzyme polymorphism, it has not been determined if routine use of these tests will improve outcomes.

摘要

细胞色素P450酶对于许多药物的代谢至关重要。尽管这类酶有50多种,但其中六种代谢了90%的药物,其中最重要的两种酶是CYP3A4和CYP2D6。这些酶的基因变异性(多态性)可能会影响患者对常用处方药的反应,包括β受体阻滞剂和抗抑郁药。细胞色素P450酶可被药物抑制或诱导,从而导致具有临床意义的药物相互作用,进而引发意外的不良反应或治疗失败。与华法林、抗抑郁药、抗癫痫药和他汀类药物的相互作用通常涉及细胞色素P450酶。了解细胞色素P450酶代谢的最重要药物以及最有效的抑制和诱导药物,有助于将药物不良反应和相互作用的可能性降至最低。尽管基因检测可以确定患者是否具有特定的酶多态性,但尚未确定常规使用这些检测是否会改善治疗结果。

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