首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Continuous flow microfluidic cell inactivation with the use of insulating micropillars for multiple electroporation zones
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Continuous flow microfluidic cell inactivation with the use of insulating micropillars for multiple electroporation zones

机译:连续流体微流体细胞灭活使用绝缘微粒用于多个电穿孔区

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摘要

Abstract Electroporation is a powerful tool for inactivating cells and transfecting biological cells and has applications in biology, genetic engineering, medicine, environment, and many others. We report a new continuous flow device embedded with insulating micropillars to achieve better performance of cell inactivation. The use of micropillars creates multiple electroporation zones with enhanced local electric field strengths. Using a model solution of Saccharomyces cerevisiae , we examined the inactivation performance of the device under various applied electric voltages and flow rates. Results from the numerical simulations and experiments showed that even with an induced transmembrane potential of 0.58?V, close to 63% of cell inactivation was achieved at a flow rate of 2.5?mL/h. This was higher than the 24% cell inactivation observed for a reference device without micropillars that was subjected to the same conditions.
机译:摘要电穿孔是灭活细胞和转染生物细胞的强大工具,并在生物学,基因工程,医学,环境和许多其他中具有应用。 我们报告了一种新的连续流量装置,嵌入着绝缘微米,以实现细胞失活的更好性能。 Micropillars的使用产生具有增强的局部电场强度的多个电穿孔区域。 使用Saccharomyces Cerevisiae的模型解决方案,我们在各种施加的电压和流速下检查了器件的灭活性能。 数值模拟和实验结果表明,即使具有0.58Ωv的诱导跨膜电位,近63%的细胞失活于2.5μm/ h的流速实现。 这高于24%的用于参考装置的细胞灭活,没有微毛虫经受相同的条件。

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