Department of Agricultural and Biological Engineering, Purdue University, West Lafayette, IN 47907, USA.
Lab Chip. 2013 Oct 7;13(19):3803-21. doi: 10.1039/c3lc50566a.
Electroporation is a simple yet powerful technique for breaching the cell membrane barrier. The applications of electroporation can be generally divided into two categories: the release of intracellular proteins, nucleic acids and other metabolites for analysis and the delivery of exogenous reagents such as genes, drugs and nanoparticles with therapeutic purposes or for cellular manipulation. In this review, we go over the basic physics associated with cell electroporation and highlight recent technological advances on microfluidic platforms for conducting electroporation. Within the context of its working mechanism, we summarize the accumulated knowledge on how the parameters of electroporation affect its performance for various tasks. We discuss various strategies and designs for conducting electroporation at the microscale and then focus on analysis of intracellular contents and delivery of exogenous agents as two major applications of the technique. Finally, an outlook for future applications of microfluidic electroporation in increasingly diverse utilities is presented.
电穿孔是一种简单而强大的技术,可破坏细胞膜屏障。电穿孔的应用通常可以分为两类:释放细胞内的蛋白质、核酸和其他代谢物进行分析,以及输送具有治疗目的或用于细胞操作的外源试剂,如基因、药物和纳米颗粒。在这篇综述中,我们回顾了与细胞电穿孔相关的基本物理知识,并强调了微流控平台在电穿孔方面的最新技术进展。在其工作机制的背景下,我们总结了关于电穿孔参数如何影响其各种任务性能的累积知识。我们讨论了在微尺度下进行电穿孔的各种策略和设计,然后重点分析了细胞内内容物的传递和外源试剂的输送这两个技术的主要应用。最后,提出了微流控电穿孔在日益多样化的应用中的未来展望。