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Electro-osmotic flow control for living cell analysis in microfluidic PDMS chips

机译:电渗流控制,用于微流PDMS芯片中的活细胞分析

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摘要

This study presents a microfluidic PDMS platform for multiplex cell culture applications. This platform includes two cell culture lines each of which consists of an integrated electro-osmotic pump, a cell culture chamber and a series of microchannels and reservoirs. Each integrated electro-osmotic pump consists of 70 parallel channels of 50 mu m wide x 2.7 mu m high, two electrode reservoirs and two gel salt bridges separating the electrode reservoirs and the parallel microchannels. In this design, efforts were made to address the problems associated with the use of high electric fields required for operating electro-osmotic pumps in living cell analysis. In particular, electroporation of cell membranes, joule heating, electrolysis, bubbles and induced pressure disturbance were carefully considered through the design of the platform. The integrated electro-osmotic pumps allow the platform to be operated in three differential modes aiming to achieve flexible flow rate control and accurate injection of a small amount of reagent both of which are important for dynamic studies of cells.
机译:这项研究提出了一种用于多重细胞培养应用的微流体PDMS平台。该平台包括两条细胞培养线,每条细胞培养线均由一个集成的电渗泵,一个细胞培养室以及一系列微通道和储槽组成。每个集成电渗泵由70个平行通道组成,分别为50微米宽x 2.7微米高,两个电极池和两个凝胶盐桥将电极池和平行微通道分隔开。在此设计中,已努力解决与活细胞分析中操作电渗泵所需的高电场相关的问题。特别是,通过平台的设计,仔细考虑了细胞膜的电穿孔,焦耳加热,电解,气泡和引起的压力干扰。集成的电渗泵允许平台在三种差分模式下运行,旨在实现灵活的流量控制和少量试剂的精确注入,这对于细胞的动态研究都很重要。

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