Dorado P, Berecz R, Peñas-Lledó E M, Cáceres M C, Llerena A
University of Extremadura, Faculty of Medicine, Department of Pharmacology and Psychiatry, Avda. de Elvas s/n. E-06071, Badajoz, Spain.
Curr Drug Targets. 2006 Dec;7(12):1671-80. doi: 10.2174/138945006779025329.
CYP2D6 is described as the most relevant enzyme in the metabolism of many antipsychotic drugs. Its contribution to the interindividual differences in drug response is reviewed here highlighting its role in the kinetics of antipsychotic drugs and the occurrence of drug interactions. The activity of CYP2D6 is inherited as a monogenetic trait and the CYP2D6 gene appears highly polymorphic in humans. The polymorphic alleles may lead to altered activity of the CYP enzymes causing absent, decreased (poor), or increased (ultrarapid) metabolism that in turn influence the disposition of the antipsychotic drugs. Antipsychotic drug biotransformation is mainly determined by genetic factors mediating CYP2D6 gene polymorphism, however the importance of environmental factors (dietary, smoking, diseases, etc.) is also recognized. Additionally, the potential interaction between CYP2D6 and the endogenous metabolism must be taken into consideration. The present review summarizes the relevance of physiological and environmental factors in CYP2D6 hydroxylation capacity, the inhibition of CYP2D6 activity during treatment, the use of drug/metabolite ratio as a tool to evaluate CYP2D6 hydroxylation capacity in a patient, and the relevance of CYP2D6 for drug plasma concentration and for QTc interval lengthening during treatment with antipsychotic drugs.
细胞色素P450 2D6(CYP2D6)被认为是许多抗精神病药物代谢中最相关的酶。本文回顾了其在药物反应个体差异中的作用,重点强调了其在抗精神病药物动力学及药物相互作用发生中的作用。CYP2D6的活性作为一种单基因性状遗传,且CYP2D6基因在人类中表现出高度多态性。多态性等位基因可能导致CYP酶活性改变,引起代谢缺失、降低(慢代谢型)或增加(超快代谢型),进而影响抗精神病药物的处置。抗精神病药物的生物转化主要由介导CYP2D6基因多态性的遗传因素决定,不过环境因素(饮食、吸烟、疾病等)的重要性也得到认可。此外,必须考虑CYP2D6与内源性代谢之间的潜在相互作用。本综述总结了生理和环境因素在CYP2D6羟化能力中的相关性、治疗期间CYP2D6活性的抑制、使用药物/代谢物比值作为评估患者CYP2D6羟化能力的工具,以及CYP2D6在抗精神病药物治疗期间对药物血浆浓度和QTc间期延长的相关性。