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用于通过电穿孔进行细胞裂解的三维电极阵列。

Three dimensional electrode array for cell lysis via electroporation.

作者信息

Lu Kuan-Ying, Wo Andrew M, Lo Ying-Jie, Chen Ken-Chao, Lin Cheng-Ming, Yang Chii-Rong

机构信息

Institute of Applied Mechanics, National Taiwan University, Taipei 106, Taiwan.

出版信息

Biosens Bioelectron. 2006 Oct 15;22(4):568-74. doi: 10.1016/j.bios.2006.08.009. Epub 2006 Sep 25.

DOI:10.1016/j.bios.2006.08.009
PMID:16997544
Abstract

Microfabricated devices for cell lysis have demonstrated many advantages over conventional approaches. Among various design of microdevices that employ electroporation for cytolysis, most utilize Ag/AgCl wires or 2D planar electrodes. Although, simple in fabrication the electric field generated by 2D electrodes decays exponentially, resulting in rather non-uniform forcing on the cell membrane. This paper investigates the effect of electric field generated by 3D cylindrical electrodes to perform cell lysis via electroporation in a microfluidic platform, and compared with that by 2D design. Computational results of the electric field for both 2D and 3D electrode geometries showed that the 3D configuration demonstrated a significantly higher effective volume ratio-volume which electric field is sufficient for cell lysis to that of net throughflow volume. Hence, the efficacy of performing cell lysis is substantially greater for cells passing through 3D than 2D electrodes. Experimentally, simultaneous multi-pores were observed on leukocytes lysed with 3D electrodes, which is indicative of enhanced uniformity of the electric field generated by 3D design. Additionally, a single row of 3D electrode demonstrated a substantially higher lysing percentage (30%) than that of 2D (8%) under that same flow condition. This work should aid in the design of electrodes in performing cell lysis via electroporation.

摘要

用于细胞裂解的微制造设备已显示出比传统方法具有许多优势。在采用电穿孔进行细胞溶解的各种微设备设计中,大多数使用Ag/AgCl线或二维平面电极。尽管二维电极制造简单,但其产生的电场呈指数衰减,导致对细胞膜的作用力相当不均匀。本文研究了三维圆柱形电极在微流体平台中通过电穿孔进行细胞裂解时产生的电场的影响,并与二维设计的电场进行了比较。二维和三维电极几何形状的电场计算结果表明,三维配置的有效体积比(即电场足以进行细胞裂解的体积与净通流体积之比)显著更高。因此,对于通过三维电极的细胞,进行细胞裂解的效率比通过二维电极的细胞要高得多。在实验中,在用三维电极裂解的白细胞上观察到同时出现多个孔,这表明三维设计产生的电场均匀性增强。此外,在相同流动条件下,单排三维电极的裂解百分比(30%)比二维电极(8%)高得多。这项工作应有助于设计通过电穿孔进行细胞裂解的电极。

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