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在微流控芯片上集成的渗透微泵用于灌注细胞培养。

An osmotic micro-pump integrated on a microfluidic chip for perfusion cell culture.

机构信息

Research Center for Analytical Sciences, Box 332, Northeastern University, Shenyang 110004, China.

出版信息

Talanta. 2010 Jan 15;80(3):1088-93. doi: 10.1016/j.talanta.2009.08.031.

Abstract

A novel microfluidic chip integrating an osmosis-based micro-pump was developed and used for perfusion cell culture. The micro-pump includes two sealed chambers, i.e., the inner osmotic reagent chamber and the outer water chamber, sandwiching a semi-permeable membrane. The water in the outer chamber was forced to flow through the membrane into the inner chamber via osmosis, facilitating continuous flow of fluidic zone in the channel. An average flow rate of 0.33microLmin(-1) was obtained within 50h along with a precision of 4.3% RSD (n=51) by using a 100mgmL(-1) polyvinylpyrrolidone (PVP) solution as the osmotic driving reagent and a flow passage area of 0.98cm(2) of the semi-permeable membrane. The power-free micro-pump has been demonstrated to be pulse-free offering stable flow rates during long-term operation. The present microfluidic chip has been successfully applied for the perfusion culture of human colorectal carcinoma cell by continuously refreshing the culture medium with the osmotic micro-pump. In addition, in situ cell immunostaining was also performed on the microchip by driving all the reagent zones with the integrated micro-pump.

摘要

一种新型的微流控芯片,集成了基于渗透作用的微泵,用于灌注细胞培养。微泵包括两个密封腔室,即内部渗透试剂腔室和外部水腔室,夹有一个半渗透膜。通过渗透作用,外部腔室中的水被迫穿过膜进入内部腔室,从而促进通道中流体区域的连续流动。使用 100mg/mL 的聚乙烯吡咯烷酮(PVP)溶液作为渗透驱动试剂和半渗透膜的 0.98cm²的流动通道面积,在 50 小时内获得了 0.33μL/min 的平均流速,精度为 4.3%RSD(n=51)。这种无动力微泵实现了无脉冲,在长期运行中提供稳定的流速。该微流控芯片已成功应用于渗透培养人结直肠癌细胞,通过渗透微泵持续更新培养基。此外,还通过集成微泵驱动所有试剂区域,在微芯片上进行了原位细胞免疫染色。

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