Microengineered cell and tissue systems for drug screening and toxicology applications: Evolution of in-vitro liver technologies.

O B Usta, W J McCarty, S Bale, M Hegde, R Jindal, A Bhushan, I Golberg, M L Yarmush
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Abstract

The liver performs many key functions, the most prominent of which is serving as the metabolic hub of the body. For this reason, the liver is the focal point of many investigations aimed at understanding an organism's toxicological response to endogenous and exogenous challenges. Because so many drug failures have involved direct liver toxicity or other organ toxicity from liver generated metabolites, the pharmaceutical industry has constantly sought superior, predictive in-vitro models that can more quickly and efficiently identify problematic drug candidates before they incur major development costs, and certainly before they are released to the public. In this broad review, we present a survey and critical comparison of in-vitro liver technologies along a broad spectrum, but focus on the current renewed push to develop "organs-on-a-chip". One prominent set of conclusions from this review is that while a large body of recent work has steered the field towards an ever more comprehensive understanding of what is needed, the field remains in great need of several key advances, including establishment of standard characterization methods, enhanced technologies that mimic the in-vivo cellular environment, and better computational approaches to bridge the gap between the in-vitro and in-vivo results.

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用于药物筛选和毒理学应用的微工程细胞和组织系统:体外肝脏技术的发展。
肝脏有许多重要功能,其中最突出的是作为人体的代谢枢纽。因此,肝脏是许多旨在了解生物体对内源性和外源性挑战的毒性反应的研究的焦点。由于许多药物的失败都与肝脏产生的代谢物导致的直接肝脏毒性或其他器官毒性有关,因此制药业一直在寻求卓越的预测性体外模型,以便在候选药物产生重大研发成本之前,当然也是在其向公众发布之前,更快速、更有效地识别有问题的候选药物。在这篇广泛的综述中,我们对体外肝脏技术进行了广泛的调查和批判性比较,但重点放在当前重新推动的 "芯片上器官 "的开发上。本综述得出的一个重要结论是,虽然近期的大量工作已引导该领域对所需内容有了更全面的了解,但该领域仍亟需取得几项关键进展,包括建立标准的表征方法、增强模拟体内细胞环境的技术,以及更好的计算方法来弥合体外和体内结果之间的差距。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
TECHNOLOGY
TECHNOLOGY ENGINEERING, MULTIDISCIPLINARY-
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