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High Throughput Assay of Diffusion through Cx43 Gap Junction Channels with a Microfluidic Chip

机译:通过微流体芯片通过Cx43间隙连接通道扩散的高通量分析

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This paper describes a microfluidic-based assay capable of measuring gap-junction mediated dye diffusion in cultured cells. The technique exploits multistream laminar flow to selectively expose cells to different environments, enabling continuous loading of cells in one compartment while monitoring, in real time, dye diffusion into cells of a neighboring compartment. A simple one-dimensional diffusion model fit to the data extracted the diffusion coefficient of four different dyes, 5-(6)-carboxyfluorescein, 5-chloromethylfluorescein, Oregon green 488 carboxylic acid, and calcein. Different inhibitors were assayed for their ability to reduce dye coupling. The chip can screen multiple inhibitors in parallel in the same cell preparation, demonstrating its potential for high throughput. The technique provides a convenient method to measure gap junction mediated diffusion and a screen for drugs that affect gap junction communication.
机译:本文介绍了一种基于微流体的测定方法,该方法能够测量间隙连接介导的染料在培养细胞中的扩散。该技术利用多流层流将细胞选择性暴露在不同的环境中,从而能够在一个隔室中连续加载细胞,同时实时监控染料向相邻隔室中细胞的扩散情况。一个简单的一维扩散模型适合数据提取了四种不同染料(5-(6)-羧基荧光素,5-氯甲基荧光素,俄勒冈绿488羧酸和钙黄绿素)的扩散系数。分析了不同抑制剂减少染料偶联的能力。该芯片可以在同一细胞制备中并行筛选多种抑制剂,证明了其高通量的潜力。该技术提供了一种方便的方法来测量间隙连接介导的扩散,并提供了影响间隙连接通讯的药物筛选方法。

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