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Flow-Through Microfluidic Device for High-Efficiency Transfection of Mammalian Cells through Combined Microelectroporation and Sonoporation

机译:通过微电穿孔和超声操作结合高效流通的哺乳动物细胞的流通微流控设备。

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摘要

In this study we are presenting a proof-of-concept microfluidic device that simultaneously applies the conditions required for microelectroporation and micro-sonoporation in a flow-through fashion that allows for high throughput, high efficiency transfection of mammalian cells. During the design stage, we developed a low-cost, high-resolution polymer microfabrication technique termed laser stenciling. While few other electro-sonoporation protocols have been reported, to the best of our knowledge, we are the first to incorporate microelectroporation, which has been well established in literature to be advantageous to conventional electroporation, with flow-through micro-sonoporation. When comparing transfection efficiency for our electro-sonoporation method to that of sonoporation or microelectroporation alone, we observed single batch improvements up to 20 percent and 17 percent, respectively. The average improvement in efficiency was approximately 15 percent greater than achieved with sonoporation and 10 percent greater than that of electroporation. Importantly, there was little difference in short term cell viability between the three methods (maintained at > 90 percent). The average transfection efficiency for electro-sonoporation was 81.25 percent and cell viability was 91.56 percent. Overall, we have presented a device and electro-sonoporation method that meets or outperforms the transfection efficiency and cell viability standards for HeLa cells set by other reported electroporation and sonoporation methods.
机译:在这项研究中,我们提出了一种概念验证的微流体设备,该设备以流通方式同时应用微电穿孔和微超声操作所需的条件,从而可以实现哺乳动物细胞的高通量,高效转染。在设计阶段,我们开发了一种低成本,高分辨率的聚合物微加工技术,称为激光印模。尽管几乎没有其他电共声波协议的报道,但据我们所知,我们是第一个结合微电穿孔的技术,该技术已在文献中充分确立,对传统的电穿孔有利,并带有流通式微声波。当将我们的电声穿透法与单独的声穿孔法或微电穿孔法的转染效率进行比较时,我们发现单批次的转染效率分别提高了20%和17%。效率的平均提高比声波穿孔提高了约15%,比电穿孔提高了10%。重要的是,这三种方法之间的短期细胞生存力差异不大(维持在90%以上)。电穿孔的平均转染效率为81.25%,细胞活力为91.56%。总体而言,我们提出了一种设备和电超声方法,该方法可以达到或优于通过其他报道的电穿孔和声穿孔方法设置的HeLa细胞的转染效率和细胞活力标准。

著录项

  • 作者

    Longsine Whitney Leigh;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 en_US
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