Horikiri Y, Suzuki T, Mizobe M
Pharmaceutics Research Laboratory, Tanabe Seiyaku Co., Ltd, Osaka, Japan.
Life Sci. 1998;63(13):1097-108. doi: 10.1016/s0024-3205(98)00371-3.
To clarify the mechanism of the species difference in the metabolism of bisoprolol enantiomers, in vitro metabolic studies were performed using dog liver microsomes and human cytochrome P450 (CYP) isoforms. The O-deisopropylation of bisoprolol enantiomers showed biphasic kinetics in dog liver microsomes. The intrinsic clearance (Vmax/Km) for O-deisopropylation of R(+)-bisoprolol was higher than S(-)-isomer in both high-affinity and low-affinity components. The R/S ratio of the intrinsic clearance in high- and low-affinity components was 1.34 and 1.65, respectively. The inhibition studies in dog liver microsomes using CYP isoform-selective inhibitors indicated that the O-deisopropylation of both bisoprolol enantiomers was mediated via the CYP2D and CYP3A subfamily, and suggested that high-affinity oxidation was dependent on CYP2D. The kinds of CYP subfamilies in dogs, which contribute to the metabolism of bisoprolol enantiomers, were the same as those in humans. The intrinsic clearance for O-deisopropylation of R(+)bisoprolol by human recombinant CYP2D6 was also different from that of S(-)-enantiomers (R/S:1.50). However, unlike the dog microsomes, the intrinsic clearance by the human recombinant CYP3A4 did not show a stereoselective difference. Therefore, the species difference in the R/S ratio of metabolic clearance for the oxidation of bisoprolol enantiomers (dog > human) is mainly due to the species difference in the stereoselectivity of one of the cytochrome P450 subfamilies (CYP3A).
为阐明比索洛尔对映体代谢的种属差异机制,使用犬肝微粒体和人细胞色素P450(CYP)同工酶进行了体外代谢研究。比索洛尔对映体的O-去异丙基化在犬肝微粒体中呈现双相动力学。在高亲和力和低亲和力组分中,R(+)-比索洛尔O-去异丙基化的内在清除率(Vmax/Km)均高于S(-)-异构体。高亲和力和低亲和力组分中内在清除率的R/S比值分别为1.34和1.65。使用CYP同工酶选择性抑制剂对犬肝微粒体进行的抑制研究表明,两种比索洛尔对映体的O-去异丙基化均通过CYP2D和CYP3A亚家族介导,并提示高亲和力氧化依赖于CYP2D。犬体内参与比索洛尔对映体代谢的CYP亚家族种类与人类相同。人重组CYP2D6催化R(+)比索洛尔O-去异丙基化的内在清除率也与S(-)-对映体不同(R/S:1.50)。然而,与犬微粒体不同,人重组CYP3A4的内在清除率未表现出立体选择性差异。因此,比索洛尔对映体氧化代谢清除率的R/S比值的种属差异(犬>人)主要是由于细胞色素P450亚家族之一(CYP3A)立体选择性的种属差异所致。