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Sequential multi-molecule delivery using vortex-assisted electroporation

机译:使用涡流辅助电穿孔的顺序多分子递送

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摘要

We developed an on-chip microscale electroporation system that enables sequential delivery of multiple molecules with precise and independent dosage controllability into pre-selected identical populations of target cells. The ability to trap cells with uniform size distribution contributed to enhanced molecular delivery efficiency and cell viability. Additionally, the system provides real-time monitoring ability of the entire delivery process, allowing timely and independent modification of cell- and molecule-specific electroporation parameters. The precisely controlled amount of inherently membrane-impermeant molecules was transferred into human cancer cells by varying electric field strengths and molecule injection durations. The proposed microfluidic electroporation system's improved viability and comparable gene transfection efficiency to that of commercial systems suggest that the current system has great potential to expand the research fields that on-chip electroporation techniques can be used in.
机译:我们开发了一种片上微型电穿孔系统,该系统可将具有精确和独立剂量可控性的多个分子顺序输送到预先选择的相同靶细胞群中。捕获具有均匀大小分布的细胞的能力有助于提高分子递送效率和细胞活力。此外,该系统提供了整个输送过程的实时监控功能,允许及时且独立地修改细胞和分子特异性电穿孔参数。通过改变电场强度和分子注入时间,将精确控制量的固有膜不渗透分子转移到人癌细胞中。拟议中的微流控电穿孔系统具有提高的生存能力,并且基因转染效率可与商业系统相媲美,这表明当前的系统具有巨大的潜力,可以扩展芯片上电穿孔技术的研究领域。

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