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用于微尺度细胞操控的电力。

Electrical forces for microscale cell manipulation.

作者信息

Voldman Joel

机构信息

Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Annu Rev Biomed Eng. 2006;8:425-54. doi: 10.1146/annurev.bioeng.8.061505.095739.

Abstract

Electrical forces for manipulating cells at the microscale include electrophoresis and dielectrophoresis. Electrophoretic forces arise from the interaction of a cell's charge and an electric field, whereas dielectrophoresis arises from a cell's polarizability. Both forces can be used to create microsystems that separate cell mixtures into its component cell types or act as electrical "handles" to transport cells or place them in specific locations. This review explores the use of these two forces for microscale cell manipulation. We first examine the forces and electrodes used to create them, then address potential impacts on cell health, followed by examples of devices for both separating cells and handling them.

摘要

在微尺度下用于操控细胞的电力包括电泳和介电泳。电泳力源于细胞电荷与电场的相互作用,而介电泳则源于细胞的极化率。这两种力都可用于创建微系统,将细胞混合物分离成其组成细胞类型,或充当电“手柄”来运输细胞或将它们放置在特定位置。本综述探讨了利用这两种力进行微尺度细胞操控的情况。我们首先研究用于产生这些力的力和电极,然后讨论对细胞健康的潜在影响,接着给出细胞分离和处理设备的示例。

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