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探索体外-体内外推的边界:共培养中分离的大鼠肝细胞的应用以及白蛋白结合特性对各类药物清除率预测的影响

Exploring the Boundaries for In Vitro-In Vivo Extrapolation: Use of Isolated Rat Hepatocytes in Co-culture and Impact of Albumin Binding Properties in the Prediction of Clearance of Various Drug Types.

作者信息

Francis Laura, Ogungbenro Kayode, De Bruyn Tom, Houston J Brian, Hallifax David

机构信息

1Centre of Applied Pharmacokinetic Research, Division of Pharmacy and Optometry, School of Health Sciences, Faculty of Biology, Medicine and Health, University of Manchester, Manchester Academic Health Science Centre, Manchester, United Kingdom (L.F., K.O., J.B.H., D.H.) and Genentech, Inc., South San Francisco, California (T.D.B.)

1Centre of Applied Pharmacokinetic Research, Division of Pharmacy and Optometry, School of Health Sciences, Faculty of Biology, Medicine and Health, University of Manchester, Manchester Academic Health Science Centre, Manchester, United Kingdom (L.F., K.O., J.B.H., D.H.) and Genentech, Inc., South San Francisco, California (T.D.B.).

出版信息

Drug Metab Dispos. 2023 Nov;51(11):1463-1473. doi: 10.1124/dmd.123.001309. Epub 2023 Aug 14.

Abstract

Prediction of hepatic clearance of drugs (via uptake or metabolism) from in vitro systems continues to be problematic, particularly when plasma protein binding is high. The following work explores simultaneous assessment of both clearance processes, focusing on a commercial hepatocyte-fibroblast co-culture system (HREL) over a 24-hour period using six probe drugs (ranging in metabolic and transporter clearance and low-to-high plasma protein binding). A rat hepatocyte co-culture assay was established using drug depletion (measuring both medium and total concentrations) and cell uptake kinetic analysis, both in the presence and absence of plasma protein (1% bovine serum albumin). Secretion of endogenous albumin was monitored as a marker of viability, and this reached 0.004% in incubations (at a rate similar to in vivo synthesis). Binding to stromal cells was substantial and required appropriate correction factors. Drug concentration-time courses were analyzed both by conventional methods and a mechanistic cell model prior to in vivo extrapolation. Clearance assayed by drug depletion in conventional suspended rat hepatocytes provided a benchmark to evaluate co-culture value. Addition of albumin appeared to improve predictions for some compounds (where fraction unbound in the medium is less than 0.1); however, for high-binding drugs, albumin significantly limited quantification and thus predictions. Overall, these results highlight ongoing challenges concerning in vitro hepatocyte system complexity and limitations of practical expediency. Considering this, more reliable measurement of hepatically cleared compounds seems possible through judicious use of available hepatocyte systems, including co-culture systems, as described herein; this would include those compounds with low metabolic turnover but high active uptake clearance. SIGNIFICANCE STATEMENT: Co-culture systems offer a more advanced tool than standard hepatocytes, with the ability to be cultured for longer periods of time, yet their potential as an in vitro tool has not been extensively assessed. We evaluate the strengths and limitations of the HREL system using six drugs representing various metabolic and transporter-mediated clearance pathways with various degrees of albumin binding. Studies in the presence/absence of albumin allow in vitro-in vivo extrapolation and a framework to maximize their utility.

摘要

利用体外系统预测药物的肝脏清除率(通过摄取或代谢)仍然存在问题,尤其是当血浆蛋白结合率较高时。以下工作探索了对两种清除过程的同时评估,重点研究了一种商业化的肝细胞 - 成纤维细胞共培养系统(HREL)在24小时内使用六种探针药物(代谢和转运体清除率各异,血浆蛋白结合率从低到高)的情况。使用药物耗竭法(测量培养基和总浓度)和细胞摄取动力学分析建立了大鼠肝细胞共培养测定法,分别在有和没有血浆蛋白(1%牛血清白蛋白)的情况下进行。监测内源性白蛋白的分泌作为活力标志物,其在孵育中达到0.004%(速率与体内合成相似)。与基质细胞的结合很显著,需要适当的校正因子。在进行体内外推之前,通过传统方法和机械细胞模型分析药物浓度 - 时间过程。通过传统悬浮大鼠肝细胞中的药物耗竭法测定的清除率为评估共培养的价值提供了一个基准。添加白蛋白似乎改善了对某些化合物的预测(培养基中未结合分数小于0.1的情况);然而,对于高结合药物,白蛋白显著限制了定量,从而限制了预测。总体而言,这些结果凸显了体外肝细胞系统复杂性以及实际便利性局限性方面持续存在的挑战。考虑到这一点,通过明智地使用现有的肝细胞系统,包括本文所述的共培养系统,似乎有可能更可靠地测量肝脏清除的化合物;这将包括那些代谢周转率低但主动摄取清除率高的化合物。意义声明:共培养系统提供了一种比标准肝细胞更先进的工具,能够培养更长时间,但其作为体外工具的潜力尚未得到广泛评估。我们使用六种代表各种代谢和转运体介导清除途径且具有不同程度白蛋白结合的药物评估了HREL系统的优势和局限性。在有/无白蛋白的情况下进行的研究允许进行体外 - 体内外推,并提供了一个框架以最大限度地发挥其效用。

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