Doehmer J, Goeptar A R, Vermeulen N P
Institut für Toxikologie und Umwelthygiene, Technische Universität München, Germany.
Cytotechnology. 1993;12(1-3):357-66. doi: 10.1007/BF00744673.
Cytochromes P450 are the key enzymes for activating and inactivating many drugs, in particular anticancer drugs. Therefore, individual expression levels of cytochromes P450 may play a crucial role in drug safety and drug efficacy. Overexpression of cytochrome P450 may yield rapid turnover and elimination of drugs before the target site was reached and any pharmacological effect is observed. Therefore, it may be vital to know the individual cytochrome P450 status in order to select the appropriate drug before drug resistance occurs. Expression levels and activity of cytochromes P450 depend on many different factors. These factors include tissue and organ specific expression, sex- and age-dependent expression, genetic differences yielding polymorphic forms, competitive inhibition or induction of cytochromes P450 due to multiple drug interaction, nutrition and diet. Genetically engineered test cells defined for cytochromes P450 are available for studying drugs for metabolic activation and for identifying the metabolically competent cytochrome P450 isoform.
细胞色素P450是激活和灭活许多药物,特别是抗癌药物的关键酶。因此,细胞色素P450的个体表达水平可能在药物安全性和药物疗效中发挥关键作用。细胞色素P450的过表达可能导致药物在到达靶位点并观察到任何药理作用之前就快速周转和消除。因此,在耐药性出现之前了解个体细胞色素P450状态以选择合适的药物可能至关重要。细胞色素P450的表达水平和活性取决于许多不同因素。这些因素包括组织和器官特异性表达、性别和年龄依赖性表达、产生多态性形式的基因差异、由于多种药物相互作用导致的细胞色素P450的竞争性抑制或诱导、营养和饮食。为细胞色素P450定义的基因工程测试细胞可用于研究药物的代谢激活以及鉴定具有代谢活性的细胞色素P450同工型。