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微流控设备中细胞的电穿孔:综述

Electroporation of cells in microfluidic devices: a review.

作者信息

Fox M B, Esveld D C, Valero A, Luttge R, Mastwijk H C, Bartels P V, van den Berg A, Boom R M

机构信息

Food Process Engineering, Wageningen University, Bomenweg 2, Wageningen, Netherlands,

出版信息

Anal Bioanal Chem. 2006 Jun;385(3):474-85. doi: 10.1007/s00216-006-0327-3. Epub 2006 Mar 14.

Abstract

In recent years, several publications on microfluidic devices have focused on the process of electroporation, which results in the poration of the biological cell membrane. The devices involved are designed for cell analysis, transfection or pasteurization. The high electric field strengths needed are induced by placing the electrodes in close proximity or by creating a constriction between the electrodes, which focuses the electric field. Detection is usually achieved through fluorescent labeling or by measuring impedance. So far, most of these devices have only concerned themselves solely with the electroporation process, but integration with separation and detection processes is expected in the near future. In particular, single-cell content analysis is expected to add further value to the concept of the microfluidic chip. Furthermore, if advanced pulse schemes are employed, such microdevices can also enhance research into intracellular electroporation.

摘要

近年来,关于微流控装置的若干出版物聚焦于电穿孔过程,该过程会导致生物细胞膜形成孔隙。所涉及的装置是为细胞分析、转染或巴氏杀菌而设计的。所需的高电场强度是通过将电极放置得很近或在电极之间形成收缩来诱导的,这会使电场聚焦。检测通常通过荧光标记或测量阻抗来实现。到目前为止,这些装置大多仅关注电穿孔过程,但预计在不久的将来会与分离和检测过程集成。特别是,单细胞内容物分析有望为微流控芯片的概念增添更多价值。此外,如果采用先进的脉冲方案,此类微型装置还可以加强对细胞内电穿孔的研究。

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