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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Integrated microfluidics platforms for investigating injury and regeneration of CNS axons
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Integrated microfluidics platforms for investigating injury and regeneration of CNS axons

机译:集成的微流体平台,用于研究中枢神经系统轴突的损伤和再生

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摘要

We describe the development of experimental platforms to quantify the regeneration of injured central nervous system (CNS) neurons by combining engineering technologies and primary neuronal cultures. Although the regeneration of CNS neurons is an important area of research, there are no currently available methods to screen for drugs. Conventional tissue culture based on Petri dish does not provide controlled microenvironment for the neurons and only provide qualitative information. In this review, we introduced the recent advances to generate in vitro model system that is capable of mimicking the niche of CNS injury and regeneration and also of testing candidate drugs. We reconstructed the microenvironment of the regeneration of CNS neurons after injury to provide as in vivo like model system where the soluble and surface bounded inhibitors for regeneration are presented in physiologically relevant manner using microfluidics and surface patterning methods. The ability to control factors and also to monitor them using live cell imaging allowed us to develop quantitative assays that can be used to compare various drug candidates and also to understand the basic mechanism behind nerve regeneration after injury.
机译:我们描述了通过结合工程技术和原代神经元文化来量化受伤的中枢神经系统(CNS)神经元再生的实验平台的发展。尽管中枢神经系统神经元的再生是一个重要的研究领域,但目前尚无筛选药物的方法。基于陪替氏培养皿的常规组织培养不能为神经元提供受控的微环境,而仅提供定性信息。在这篇综述中,我们介绍了生成体外模型系统的最新进展,该系统能够模拟中枢神经系统损伤和再生的利基市场,并且还能够测试候选药物。我们重建了损伤后CNS神经元再生的微环境,以提供像体内一样的模型系统,其中使用微流控和表面图案化方法以生理相关的方式呈现了再生的可溶性和表面结合抑制剂。控制因子并使用活细胞成像监测因子的能力使我们能够开发定量分析,可用于比较各种候选药物,并了解损伤后神经再生的基本机制。

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