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Evolution of Biochip Technology: A Review from Lab-on-a-Chip to Organ-on-a-Chip

机译:生物芯片技术的演变:从片上实验室到片上器官的回顾

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摘要

Following the advancements in microfluidics and lab-on-a-chip (LOC) technologies, a novel biomedical application for microfluidic based devices has emerged in recent years and microengineered cell culture platforms have been created. These micro-devices, known as organ-on-a-chip (OOC) platforms mimic the in vivo like microenvironment of living organs and offer more physiologically relevant in vitro models of human organs. Consequently, the concept of OOC has gained great attention from researchers in the field worldwide to offer powerful tools for biomedical researches including disease modeling, drug development, etc. This review highlights the background of biochip development. Herein, we focus on applications of LOC devices as a versatile tool for POC applications. We also review current progress in OOC platforms towards body-on-a-chip, and we provide concluding remarks and future perspectives for OOC platforms for POC applications.
机译:随着微流体技术和芯片实验室(LOC)技术的发展,近年来出现了基于微流体设备的新型生物医学应用,并创建了微工程细胞培养平台。这些称为微芯片器官(OOC)平台的微型设备像活体器官的微环境一样模仿体内,并提供了更多与生理相关的体外人体模型。因此,OOC的概念引起了全世界该领域研究人员的广泛关注,为包括疾病模型,药物开发等在内的生物医学研究提供了强大的工具。这篇综述着重介绍了生物芯片开发的背景。在此,我们将LOC设备的应用作为POC应用的多功能工具。我们还回顾了OOC平台朝着片上机体的最新进展,并提供了POC应用OOC平台的总结和未来观点。

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