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纳秒级脉冲电场引起细胞表面电荷密度的变化。

Nanosecond pulsed electric field induced changes in cell surface charge density.

作者信息

Dutta Diganta, Palmer Xavier-Lewis, Asmar Anthony, Stacey Michael, Qian Shizhi

机构信息

Physics and Astronomy, University of Nebraska at Kearney, NE, USA.

Biomedical Engineering Institute, Old Dominion University, Norfolk, VA, USA.

出版信息

Micron. 2017 Sep;100:45-49. doi: 10.1016/j.micron.2017.04.009. Epub 2017 May 2.

Abstract

This study reports that the surface charge density changes in Jurkat cells with the application of single 60 nanosecond pulse electric fields, using atomic force microscopy. Using an atomic force microscope tip and Jurkat cells on silica in a 0.01M KCl ionic concentration, we were able to measure the interfacial forces, while also predicting surface charge densities of both Jurkat cell and silica surfaces. The most important finding is that the pulsing conditions varyingly reduced the cells' surface charge density. This offers a novel way in which to examine cellular effects of pulsed electric fields that may lead to the identification of unique mechanical responses. Compared to a single low field strength NsPEF (15kV/cm) application, exposure of Jurkat cells to a single high field strength NsPEF (60kV/cm) resulted in a further reduction in charge density and major morphological changes. The structural, physical, and chemical properties of biological cells immensely influence their electrostatic force; we were able to investigate this through the use of atomic force microscopy by measuring the surface forces between the AFM's tip and the Jurkat cells under different pulsing conditions as well as the interfacial forces in ionic concentrations.

摘要

本研究报告称,利用原子力显微镜,在施加单个60纳秒脉冲电场时,Jurkat细胞的表面电荷密度会发生变化。在0.01M KCl离子浓度下,使用原子力显微镜探针和二氧化硅上的Jurkat细胞,我们能够测量界面力,同时预测Jurkat细胞和二氧化硅表面的表面电荷密度。最重要的发现是,脉冲条件会不同程度地降低细胞的表面电荷密度。这提供了一种新方法,可用于研究脉冲电场的细胞效应,这可能会导致识别独特的机械反应。与单次施加低场强纳秒脉冲电场(15kV/cm)相比,将Jurkat细胞暴露于单次高场强纳秒脉冲电场(60kV/cm)会导致电荷密度进一步降低和主要形态变化。生物细胞的结构、物理和化学性质极大地影响其静电力;我们能够通过原子力显微镜,在不同脉冲条件下测量原子力显微镜探针与Jurkat细胞之间的表面力以及离子浓度下的界面力,来对此进行研究。

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