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用于吸收和代谢研究的模拟人肠道上皮的体外模型:系统评价。

In vitro models replicating the human intestinal epithelium for absorption and metabolism studies: A systematic review.

机构信息

Department of Computer Science, Bioengineering, Robotics and Systems Engineering, University of Genoa, 16126 Genoa, Italy; National Research Council of Italy, Institute of Electronics, Computer and Telecommunications (IEIIT) Institute, 16149 Genoa, Italy.

National Research Council of Italy, Institute of Electronics, Computer and Telecommunications (IEIIT) Institute, 16149 Genoa, Italy.

出版信息

J Control Release. 2021 Jul 10;335:247-268. doi: 10.1016/j.jconrel.2021.05.028. Epub 2021 May 24.

Abstract

Absorption, distribution, metabolism and excretion (ADME) studies represent a fundamental step in the early stages of drug discovery. In particular, the absorption of orally administered drugs, which occurs at the intestinal level, has gained attention since poor oral bioavailability often led to failures for new drug approval. In this context, several in vitro preclinical models have been recently developed and optimized to better resemble human physiology in the lab and serve as an animal alternative to accomplish the 3Rs principles. However, numerous models are ineffective in recapitulating the key features of the human small intestine epithelium and lack of prediction potential for drug absorption and metabolism during the preclinical stage. In this review, we provide an overview of in vitro models aimed at mimicking the intestinal barrier for pharmaceutical screening. After briefly describing how the human small intestine works, we present i) conventional 2D synthetic and cell-based systems, ii) 3D models replicating the main features of the intestinal architecture, iii) micro-physiological systems (MPSs) reproducing the dynamic stimuli to which cells are exposed in the native microenvironment. In this review, we will highlight the benefits and drawbacks of the leading intestinal models used for drug absorption and metabolism studies.

摘要

吸收、分布、代谢和排泄(ADME)研究是药物发现早期阶段的基本步骤。特别是口服给药的药物吸收,发生在肠道水平,由于口服生物利用度差常常导致新药批准失败,因此引起了关注。在这方面,最近已经开发和优化了几种体外临床前模型,以更好地在实验室中模拟人体生理学,并作为替代动物的方法来实现 3R 原则。然而,许多模型在再现人类小肠上皮的关键特征方面效果不佳,并且在临床前阶段缺乏对药物吸收和代谢的预测能力。在这篇综述中,我们提供了旨在模拟药物筛选的肠道屏障的体外模型概述。在简要描述了人类小肠的工作原理之后,我们介绍了 i)常规的 2D 合成和基于细胞的系统,ii)再现肠道结构主要特征的 3D 模型,iii)微生理系统(MPS)再现细胞在天然微环境中暴露的动态刺激。在这篇综述中,我们将重点介绍用于药物吸收和代谢研究的主要肠道模型的优点和缺点。

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