Bao Ning, Wang Jun, Lu Chang
Department of Agricultural and Biological Engineering, Bindley Bioscience Center, Birck Nanotechnology Center, Purdue University, West Lafayette, IN 47907, USA.
Electrophoresis. 2008 Jul;29(14):2939-44. doi: 10.1002/elps.200700856.
Analysis of intracellular materials at the single-cell level presents opportunities for probing the heterogeneity of a cell population. Lysis by electroporation has been gaining popularity as a rapid method for disruption of the cell membrane and release of intracellular contents. In this report, we selectively released specific intracellular molecules for interrogation at the single-cell level by tuning the parameters of electroporation. We examined the release of a small molecule, calcein (MW approximately 600), and a 72-kDa protein kinase, Syk, tagged by enhanced green fluorescent protein (EGFP) from chicken B cells during electroporation at the single-cell level. We studied the effects of the field intensity and the field duration on the release of the two molecules. We found that calcein in general was released at lower field intensities and shorter durations than did SykEGFP. By tuning the electrical parameters, we were able to deplete calcein from the cells before SykEGFP started to release. This approach potentially provides a high-throughput alternative for probing different intracellular molecules at the single-cell level compared to chemical cytometry by eliminating complete disruption of the cell membrane.
在单细胞水平上分析细胞内物质为探究细胞群体的异质性提供了机会。通过电穿孔进行细胞裂解作为一种快速破坏细胞膜并释放细胞内物质的方法,越来越受到欢迎。在本报告中,我们通过调整电穿孔参数,在单细胞水平上选择性释放特定的细胞内分子以进行检测。我们在单细胞水平上研究了电穿孔过程中,小分子钙黄绿素(分子量约600)和由增强型绿色荧光蛋白(EGFP)标记的72 kDa蛋白激酶Syk从鸡B细胞中的释放情况。我们研究了场强和场持续时间对这两种分子释放的影响。我们发现,一般来说,钙黄绿素比SykEGFP在更低的场强和更短的持续时间下释放。通过调整电参数,我们能够在SykEGFP开始释放之前耗尽细胞内的钙黄绿素。与化学细胞术相比,这种方法通过避免细胞膜的完全破坏,有可能为在单细胞水平上探测不同的细胞内分子提供一种高通量的替代方法。