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Integration concepts for multi-organ chips: how to maintain flexibility?!

机译:多器官芯片的集成概念:如何保持灵活性?

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摘要

Multi-organ platforms have an enormous potential to lead to a paradigm shift in a multitude of research domains including drug development, toxicological screening, personalized medicine as well as disease modeling. Integrating multiple organ–tissues into one microfluidic circulation merges the advantages of cell lines (human genetic background) and animal models (complex physiology) and enables the creation of more in vivo-like in vitro models. In recent years, a variety of design concepts for multi-organ platforms have been introduced, categorizable into static, semistatic and flexible systems. The most promising approach seems to be flexible interconnection of single-organ platforms to application-specific multi-organ systems. This perspective elucidates the concept of ‘mix-and-match’ toolboxes and discusses the numerous advantages compared with static/semistatic platforms as well as remaining challenges.
机译:多器官平台具有巨大的潜力,可导致许多研究领域的模式转变,包括药物开发,毒理学筛查,个性化医学以及疾病建模。将多个器官组织整合到一个微流体循环中,可以融合细胞系(人类遗传背景)和动物模型(复杂的生理学)的优势,并可以创建更多类似于体内的体外模型。近年来,已经引入了多种用于多器官平台的设计概念,可分为静态,半静态和灵活的系统。最有前途的方法似乎是单器官平台与特定于应用程序的多器官系统的灵活互连。这种观点阐明了“混合搭配”工具箱的概念,并讨论了与静态/半静态平台相比的众多优势以及尚待解决的挑战。

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