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细胞色素P450 3A在精神药理学中的新作用。

The emerging role of cytochrome P450 3A in psychopharmacology.

作者信息

Ketter T A, Flockhart D A, Post R M, Denicoff K, Pazzaglia P J, Marangell L B, George M S, Callahan A M

机构信息

Biological Psychiatry Branch, National Institute of Mental Health, Bethesda, Maryland 20892, USA.

出版信息

J Clin Psychopharmacol. 1995 Dec;15(6):387-98. doi: 10.1097/00004714-199512000-00002.

Abstract

Recent advances in molecular pharmacology have allowed the characterization of the specific isoforms that mediate the metabolism of various medications. This information can be integrated with older clinical observations to begin to develop specific mechanistic and predictive models of psychotropic drug interactions. The polymorphic cytochrome P450 2D6 has gained much attention, because competition for this isoform is responsible for serotonin reuptake inhibitor-induced increases in tricyclic antidepressant concentrations in plasma. However, the cytochrome P450 3A subfamily and the 3A3 and 3A4 isoforms (CYP3A3/4) in particular are becoming increasingly important in psychopharmacology as a result of their central involvement in the metabolism of a wide range of steroids and medications, including antidepressants, benzodiazepines, calcium channel blockers, and carbamazepine. The inhibition of CYP3A3/4 by medications such as certain newer antidepressants, calcium channel blockers, and antibiotics can increase the concentrations of CYP3A3/4 substrates, yielding toxicity. The induction of CYP3A3/4 by medications such as carbamazepine can decrease the concentrations of CYP3A3/4 substrates, yielding inefficiency. Thus, knowledge of the substrates, inhibitors, and inducers of CYP3A3/ and other cytochrome P450 isoforms may help clinicians to anticipate and avoid pharmacokinetic drug interactions and improve rational prescribing practices.

摘要

分子药理学的最新进展使得介导各种药物代谢的特定亚型得以鉴定。这些信息可与既往的临床观察结果相结合,从而开始构建精神药物相互作用的特定机制和预测模型。多态性细胞色素P450 2D6备受关注,因为对该亚型的竞争是导致血清素再摄取抑制剂引起血浆中三环类抗抑郁药浓度升高的原因。然而,细胞色素P450 3A亚家族,尤其是3A3和3A4亚型(CYP3A3/4),在精神药理学中变得越来越重要,因为它们在多种类固醇和药物(包括抗抑郁药、苯二氮䓬类药物、钙通道阻滞剂和卡马西平)的代谢中起核心作用。某些新型抗抑郁药、钙通道阻滞剂和抗生素等药物对CYP3A3/4的抑制作用可增加CYP3A3/4底物的浓度,从而产生毒性。卡马西平等药物对CYP3A3/4的诱导作用可降低CYP3A3/4底物的浓度,从而导致疗效不佳。因此,了解CYP3A3/4以及其他细胞色素P450亚型的底物、抑制剂和诱导剂,可能有助于临床医生预测并避免药代动力学药物相互作用,改善合理用药实践。

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