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种属差异:食蟹猴与人类肠道细胞色素 P450 同工酶代谢活性的比较。

Species differences in intestinal metabolic activities of cytochrome P450 isoforms between cynomolgus monkeys and humans.

机构信息

Pharmacokinetics Research Laboratory, Dainippon Sumitomo Pharma Co., Ltd., Suita, Japan.

出版信息

Drug Metab Pharmacokinet. 2011 Jun;26(3):300-6. doi: 10.2133/dmpk.DMPK-10-SH-119. Epub 2011 Mar 4.

Abstract

The oral bioavailability of some drugs is markedly lower in cynomolgus monkeys than in humans. One of the reasons for the low bioavailability in cynomolgus monkeys may be the higher metabolic activity of intestinal CYP3A; however, the species differences in intestinal metabolic activities of other CYP isoforms between cynomolgus monkeys and humans are not well known. In the present study, we investigated the intrinsic clearance (CL(int)) values in pooled intestinal microsomes from cynomolgus monkeys and humans using 25 substrates of human CYP1A2, CYP2J2, CYP2C, and CYP2D6. As in humans, intestinal CL(int) values of human CYP1A2 and CYP2D6 substrates in cynomolgus monkeys were low. On the other hand, intestinal CL(int) values of human CYP2J2 and CYP2C substrates in cynomolgus monkeys were greatly higher than those in humans. Using immunoinhibitory antibodies and chemical inhibitors, we showed that the higher intestinal CL(int) values of the human CYP2J2 and CYP2C substrates in cynomolgus monkeys might be caused by monkey CYP4F and CYP2C subfamily members, respectively. In conclusion, there is a possibility that the greatly higher metabolic activity of CYP2C and CYP4F in cynomolgus monkey intestine is one of the causes of the species difference of intestinal first-pass metabolism between cynomolgus monkeys and humans.

摘要

一些药物在食蟹猴中的口服生物利用度明显低于人类。食蟹猴中生物利用度低的原因之一可能是肠道 CYP3A 的代谢活性较高;然而,食蟹猴和人类肠道中其他 CYP 同工酶的代谢活性的种间差异尚不清楚。在本研究中,我们使用了人 CYP1A2、CYP2J2、CYP2C 和 CYP2D6 的 25 种底物,研究了食蟹猴和人混合肠微粒体中的内在清除率 (CL(int)) 值。与人类一样,食蟹猴中人类 CYP1A2 和 CYP2D6 底物的肠道 CL(int) 值较低。另一方面,食蟹猴中人类 CYP2J2 和 CYP2C 底物的肠道 CL(int) 值明显高于人类。使用免疫抑制抗体和化学抑制剂,我们表明食蟹猴 CYP4F 和 CYP2C 亚家族成员可能分别导致了食蟹猴中人类 CYP2J2 和 CYP2C 底物的更高肠道 CL(int) 值。总之,食蟹猴肠道中 CYP2C 和 CYP4F 的代谢活性较高可能是食蟹猴和人类肠道首过代谢种间差异的原因之一。

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