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Characterization of human cytochrome P450 enzymes involved in the in vitro metabolism of perospirone.

机译:人类细胞色素P450酶的特征涉及培洛酮的体外代谢。

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摘要

In vitro studies were carried out to identify the major contribution of CYP2C8, CYP2D6 and CYP3A4 to the metabolism of perospirone (cis-N-[4-[4-(1,2-benzisothiazol-3-yl)-1-piperazinyl]butyl]cyclohexane-1,2 -dicarboximide monohydrochloride dehydrate), a novel antipsychotic agent, using human liver microsomes and expressed P450 isoforms. Quinidine (a specific inhibitor of CYP2D6) did not markedly affect the metabolism of perospirone, whereas quercetin (an inhibitor of CYP2C8) and ketoconazole (an inhibitor of CYP3A4) caused a decrease in the metabolism with human liver microsomes in a concentration dependent fashion. With 10 microM quercetin, the metabolism of perospirone was inhibited by 60.0% and with 1 microM ketoconazole almost complete inhibition was apparent. Anti-CYP2C8 and anti-CYP2D6 antisera did not exert marked effects, whereas anti-CYP3A4 antiserum caused almost complete inhibition. With expressed P450s, K(m) and V(max) values were 1.09 microM and 1.93 pmol/min/pmol P450 for CYP2C8, 1.38 microM and 5.73 pmol/min/pmol P450 for CYP2D6, and 0.245 microM and 61.3 pmol/min/pmol P450 for CYP3A4, respectively. These results indicated that the metabolism of perospirone in human liver was mainly catalysed by CYP3A4, and to a lesser extent CYP2C8 and CYP2D6 were responsible because kinetic data (K(m) and V(max)) of CYP2C8 and CYP2D6 suggested catalytic potential.
机译:进行了体外研究,以确定CYP2C8,CYP2D6和CYP3A4对Perospirone(顺式-N- [4- [4-(1,2-苯并噻唑-3-基)-1-哌嗪基]丁基]代谢的主要贡献一种新型抗精神病药,使用人肝微粒体并表达了P450亚型。奎尼丁(一种CYP2D6的特异性抑制剂)并没有显着影响过螺环酮的代谢,而槲皮素(一种CYP2C8的抑制剂)和酮康唑(一种CYP3A4的抑制剂)导致人肝微粒体的代谢降低,且浓度依赖性。用10 microM槲皮素,哌洛酮的代谢被抑制60.0%,而使用1 microM酮康唑则几乎完全被抑制。抗CYP2C8和抗CYP2D6抗血清没有显着作用,而抗CYP3A4抗血清几乎完全抑制了该作用。对于表达的P450,对于CYP2C8,K(m)和V(max)值为1.09 microM和1.93 pmol / min / pmol P450,对于CYP2D6为1.38 microM和5.73 pmol / min / pmol P450,以及0.245 microM和61.3 pmol / min / CYP3A4的pmol P450。这些结果表明,人肝中Perospirone的代谢主要由CYP3A4催化,而在较小程度上CYP2C8和CYP2D6负责,因为CYP2C8和CYP2D6的动力学数据(K(m)和V(max))表明具有催化潜力。

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