Ku Hei-Young, Ahn Hee-Jeong, Seo Kyung-Ah, Kim Hyunmi, Oh Minkyung, Bae Soo Kyung, Shin Jae-Gook, Shon Ji-Hong, Liu Kwang-Hyeon
Department of Pharmacology and PharmacoGenomics Research Center, Inje University College of Medicine, Busan, South Korea.
Drug Metab Dispos. 2008 Jun;36(6):986-90. doi: 10.1124/dmd.107.020099. Epub 2008 Feb 28.
The role of the genetically polymorphic CYP3A5 in the metabolism of CYP3A substrates is unclear. We investigated the contributions of the CYP3A4 and CYP3A5 isoforms to the metabolism of the phosphodiesterase type 5 inhibitors (PDE5Is) sildenafil, udenafil, and vardenafil. In vitro incubation studies of sildenafil N-demethylation, udenafil N-dealkylation, and vardenafil N-deethylation were conducted using recombinant CYP3A enzymes and 15 human liver microsome (HLM) preparations with predetermined CYP3A5 genotypes. Recombinant CYP3A4 and CYP3A5 both produced N-desalkyl metabolites of sildenafil, udenafil, and vardenafil. The catalytic efficiency (Cl(int) = V(max)/apparent K(m)) of the rCYP3A5 isoform for vardenafil N-deethylation was about 3.2-fold that of rCYP3A4, whereas the intrinsic clearance rates for N-dealkylation of both sildenafil and udenafil were similar between rCYP3A5 and rCYP3A4. The metabolite formation activity was higher in HLMs heterozygous for the CYP3A53 allele (n = 9) than in HLMs homozygous for CYP3A53 (n = 6). These findings suggest that CYP3A5 and CYP3A4 play a significant role in the metabolism of PDE5Is. The genetic polymorphism of CYP3A5 may contribute to interindividual variability in the disposition of PDE5Is, especially vardenafil. Further in vivo studies are needed to confirm the effects of CYP3A5 genotypes on the pharmacokinetics of PDE5Is.
基因多态性的细胞色素P450 3A5(CYP3A5)在CYP3A底物代谢中的作用尚不清楚。我们研究了细胞色素P450 3A4(CYP3A4)和CYP3A5同工型对5型磷酸二酯酶抑制剂(PDE5Is)西地那非、乌地那非和伐地那非代谢的贡献。使用重组CYP3A酶和15份具有预先确定CYP3A5基因型的人肝微粒体(HLM)制剂,进行了西地那非N-去甲基化、乌地那非N-脱烷基化和伐地那非N-脱乙基化的体外孵育研究。重组CYP3A4和CYP3A5均产生西地那非、乌地那非和伐地那非的N-去烷基代谢物。重组CYP3A5同工型对伐地那非N-脱乙基化的催化效率(Cl(int)=V(max)/表观K(m))约为重组CYP3A4的3.2倍,而重组CYP3A5和重组CYP3A4之间西地那非和乌地那非N-脱烷基化的内在清除率相似。CYP3A53等位基因杂合的HLM(n = 9)中的代谢物形成活性高于CYP3A53纯合的HLM(n = 6)。这些发现表明CYP3A5和CYP3A4在PDE5Is的代谢中起重要作用。CYP3A5的基因多态性可能导致PDE5Is处置的个体间差异,尤其是伐地那非。需要进一步的体内研究来证实CYP3A5基因型对PDE5Is药代动力学的影响。