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Multi-tissue interactions in an integrated three-tissue organ-on-a-chip platform

机译:集成的三组织单芯片器官平台中的多组织相互作用

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摘要

Many drugs have progressed through preclinical and clinical trials and have been available – for years in some cases – before being recalled by the FDA for unanticipated toxicity in humans. One reason for such poor translation from drug candidate to successful use is a lack of model systems that accurately recapitulate normal tissue function of human organs and their response to drug compounds. Moreover, tissues in the body do not exist in isolation, but reside in a highly integrated and dynamically interactive environment, in which actions in one tissue can affect other downstream tissues. Few engineered model systems, including the growing variety of organoid and organ-on-a-chip platforms, have so far reflected the interactive nature of the human body. To address this challenge, we have developed an assortment of bioengineered tissue organoids and tissue constructs that are integrated in a closed circulatory perfusion system, facilitating inter-organ responses. We describe a three-tissue organ-on-a-chip system, comprised of liver, heart, and lung, and highlight examples of inter-organ responses to drug administration. We observe drug responses that depend on inter-tissue interaction, illustrating the value of multiple tissue integration for in vitro study of both the efficacy of and side effects associated with candidate drugs.
机译:许多药物已经通过临床前和临床试验取得了进展,并且在某些情况下已经可用多年(在某些情况下),然后因对人体的意外毒性而被FDA召回。从候选药物到成功使用的翻译不佳的原因之一是缺少能够准确概括人体器官正常组织功能及其对药物化合物反应的模型系统。而且,人体中的组织并不是孤立存在的,而是存在于高度集成且动态交互的环境中,在该环境中,一个组织中的动作会影响其他下游组织。到目前为止,很少有工程模型系统能够反映出人体的交互特性,其中包括越来越多的类器官和芯片上的器官平台。为了应对这一挑战,我们开发了各种生物工程组织类器官和组织构建体,它们被集成在一个封闭的循环灌注系统中,以促进器官间的反应。我们描述了由肝脏,心脏和肺部组成的三片式器官单片系统,并着重介绍了器官对药物管理的反应。我们观察到依赖于组织间相互作用的药物反应,说明了多种组织整合对于候选药物的疗效和与之相关的副作用的体外研究的价值。

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