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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >A Reconfigurable In Vitro Model for Studying the Blood-Brain Barrier
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A Reconfigurable In Vitro Model for Studying the Blood-Brain Barrier

机译:一种研究血脑屏障的可重构体外模型

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Much of what is currently known about the role of the blood-brain barrier (BBB) in regulating the passage of chemicals from the blood stream to the central nervous system (CNS) comes from animal in vivo models (requiring extrapolation to human relevance) and 2D static in vitro systems, which fail to capture the rich cell-cell and cell-matrix interactions of the dynamic 3D in vivo tissue microenvironment. In this work we have developed a BBB platform that allows for a high degree of customization in cellular composition, cellular orientation, and physiologically-relevant fluid dynamics. The system characterized and presented in this study reproduces key characteristics of a BBB model (e.g. tight junctions, efflux pumps) allowing for the formation of a selective and functional barrier. We demonstrate that our in vitro BBB is responsive to both biochemical and mechanical cues. This model further allows for culture of a CNS-like space around the BBB. The design of this platform is a valuable tool for studying BBB function as well as for screening of novel therapeutics.
机译:目前关于血脑屏障(BBB)在将化学物质从血液中传递到中枢神经系统(CNS)的作用中所知的大部分内容来自体内模型的动物(要求推断为人类相关性)和2D静态体外体系,该系统未能捕获体内组织微环境中动态3D的富含细胞细胞和细胞 - 基质相互作用。在这项工作中,我们开发了一个BBB平台,允许在细胞组成,细胞取向和生理相关的流体动力学中高度定制。本研究表征和呈现的系统可再现BBB模型的关键特性(例如紧密结,流出泵),允许形成选择性和功能屏障。我们证明我们的体外BBB对生物化学和机械线索的敏感性。该模型还允许围绕BBB围绕BBB的CNS样空间的培养。该平台的设计是研究BBB功能的有价值的工具,以及筛选新的治疗方法。

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