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细胞介电泳:在细胞的表征、操作、分离和图案化中的应用。

Cellular dielectrophoresis: applications to the characterization, manipulation, separation and patterning of cells.

机构信息

Department of Chemical and Biomolecular Engineering, Johns Hopkins University, Baltimore, MD 21218, USA.

出版信息

Electrophoresis. 2011 Sep;32(18):2466-87. doi: 10.1002/elps.201100060. Epub 2011 Aug 26.

Abstract

Over the past decade, dielectrophoresis (DEP) has evolved into a powerful, robust and flexible method for cellular characterization, manipulation, separation and cell patterning. It is a field with widely varying disciplines, as it is quite common to see DEP integrated with a host of applications including microfluidics, impedance spectroscopy, tissue engineering, real-time PCR, immunoassays, stem-cell characterization, gene transfection and electroporation, just to name a few. The field is finally at the point where analytical and numerical polarization models can be used to adequately describe and characterize the dielectrophoretic behavior of cells, and there is ever increasing evidence demonstrating that electric fields can safely be used to manipulate cells without harm. As such, DEP is slowly making its way into the biological sciences. Today, DEP is being used to manipulate individual cells to specific regions of space for single-cell assays. DEP is able to separate rare cells from a heterogeneous cell suspension, where isolated cells can then be characterized and dynamically studied using nothing more than electric fields. However, there is need for a critical report to integrate the many new features of DEP for cellular applications. Here, a review of the basic theory and current applications of DEP, specifically for cells, is presented.

摘要

在过去的十年中,介电泳(DEP)已经发展成为一种强大、稳健和灵活的细胞特性分析、操作、分离和细胞图案化方法。这是一个涉及广泛学科的领域,因为很常见的情况是将 DEP 与许多应用集成在一起,包括微流控、阻抗谱、组织工程、实时 PCR、免疫分析、干细胞特性分析、基因转染和电穿孔等,仅举几例。该领域终于到了可以使用分析和数值极化模型来充分描述和表征细胞的介电泳行为的地步,并且越来越多的证据表明,电场可以安全地用于操纵细胞而不会造成伤害。因此,DEP 正在缓慢地进入生物科学领域。如今,DEP 正被用于将单个细胞操纵到特定的空间区域进行单细胞分析。DEP 能够将稀有细胞从异质细胞悬浮液中分离出来,然后可以使用电场对分离出的细胞进行特性分析和动态研究。然而,需要有一份批判性的报告来整合 DEP 在细胞应用方面的许多新特点。在这里,我们对 DEP 的基本理论和当前应用进行了综述,特别是针对细胞的应用。

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