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同时评估大鼠肝细胞的摄取和代谢:一个全面的机制模型。

Simultaneous assessment of uptake and metabolism in rat hepatocytes: a comprehensive mechanistic model.

机构信息

Centre for Applied Pharmacokinetic Research, School of Pharmacy and Pharmaceutical Sciences, University of Manchester, Manchester, United Kingdom.

出版信息

J Pharmacol Exp Ther. 2012 Apr;341(1):2-15. doi: 10.1124/jpet.111.187112. Epub 2011 Dec 21.

Abstract

Kinetic parameters describing hepatic uptake in hepatocytes are frequently estimated without appropriate incorporation of bidirectional passive diffusion, intracellular binding, and metabolism. A mechanistic two-compartment model was developed to describe all of the processes occurring during the in vitro uptake experiments performed in freshly isolated rat hepatocytes plated for 2 h. Uptake of rosuvastatin, pravastatin, pitavastatin, valsartan, bosentan, telmisartan, and repaglinide was investigated over a 0.1 to 300 μM concentration range at 37°C for 2 or 45-90 min; nonspecific binding was taken into account. All concentration-time points were analyzed simultaneously by using a mechanistic two-compartment model describing uptake kinetics [unbound affinity constant (K(m,u)), maximum uptake rate (V(max)), unbound active uptake clearance (CL(active,u))], passive diffusion [unbound passive diffusion clearance (P(diff,u))], and intracellular binding [intracellular unbound fraction (fu(cell))]. When required (telmisartan and repaglinide), the model was extended to account for the metabolism [unbound metabolic clearance (CL(met,u))]. The CL(active,u) ranged 8-fold, reflecting a 11-fold range in uptake K(m,u), with telmisartan and valsartan showing the highest affinity for uptake transporters (K(m,u) <10 μM). Both P(diff,u) and fu(cell) span over two orders of magnitude and reflected the lipophilicity of the drugs in the dataset. An extended incubation time allowed steady state to be reached between media and intracellular compartment concentrations and reduced the error in certain parameter estimates observed with shorter incubation times. Active transport accounted for >70% of total uptake for all drugs investigated and was 4- and 112-fold greater than CL(met,u) for telmisartan and repaglinide, respectively. Modeling of uptake kinetics in conjunction with metabolism improved the precision of the uptake parameter estimates for repaglinide and telmisartan. Recommendations are made for uptake experimental design and modeling strategies.

摘要

描述肝细胞中摄取的动力学参数经常在没有适当纳入双向被动扩散、细胞内结合和代谢的情况下进行估算。开发了一种机制两室模型来描述在新鲜分离的大鼠肝细胞中进行的体外摄取实验中发生的所有过程,这些细胞在培养 2 小时后进行铺板。在 37°C 下,研究了瑞舒伐他汀、普伐他汀、匹伐他汀、缬沙坦、波生坦、替米沙坦和瑞格列奈在 0.1 至 300μM 浓度范围内的摄取情况,时间范围为 2 或 45-90 分钟;考虑了非特异性结合。通过使用描述摄取动力学的机制两室模型(未结合亲和力常数(K(m,u))、最大摄取速率(V(max))、未结合主动摄取清除率(CL(active,u))),同时分析所有浓度-时间点),被动扩散[未结合的被动扩散清除率(P(diff,u))]和细胞内结合[细胞内未结合分数(fu(cell))]。在需要时(替米沙坦和瑞格列奈),模型扩展到考虑代谢[未结合的代谢清除率(CL(met,u))]。CL(active,u)的范围为 8 倍,反映了摄取 K(m,u)的 11 倍范围,其中替米沙坦和缬沙坦对摄取转运蛋白的亲和力最高(K(m,u)<10μM)。P(diff,u)和 fu(cell)跨越两个数量级,反映了药物在数据集中的脂溶性。延长孵育时间可以使介质和细胞内腔浓度之间达到稳态,并减少较短孵育时间观察到的某些参数估计的误差。对于所有研究的药物,主动转运占总摄取的>70%,替米沙坦和瑞格列奈的主动转运分别比 CL(met,u)高 4 倍和 112 倍。结合代谢对摄取动力学的建模提高了瑞格列奈和替米沙坦摄取参数估计的精度。提出了摄取实验设计和建模策略的建议。

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