粒子和细胞的非线性电动力学方法。

Blanca H Lapizco-Encinas
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引用次数: 0

摘要

非线性电动现象为颗粒和细胞评估提供了无标记、便携、稳健的方法,包括选择性富集、分离、分选和表征。自 20 世纪 30 年代 Arne Tiselius 发表第一份分离报告以来,电动力学领域已取得了长足的发展。上个世纪,人们对弱电场理论的理解取得了重大进展,这支持了线性电泳技术的发展,并将其作为一种常规分析技术。最近,随着对强场理论理解的加深,电浮、介电泳和非线性电泳等非线性电动力学技术得以发展。这篇综述讨论了这三种非线性电动现象的工作原理和最近在分析和操纵粒子和细胞方面的应用,并概述了非线性电动力学领域的一些最新进展。分析化学年刊》第 17 卷的最终在线出版日期预计为 2024 年 5 月。修订后的预计日期请参见 http://www.annualreviews.org/page/journal/pubdates。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear Electrokinetic Methods of Particles and Cells.

Nonlinear electrokinetic phenomena offer label-free, portable, and robust approaches for particle and cell assessment, including selective enrichment, separation, sorting, and characterization. The field of electrokinetics has evolved substantially since the first separation reports by Arne Tiselius in the 1930s. The last century witnessed major advances in the understanding of the weak-field theory, which supported developments in the use of linear electrophoresis and its adoption as a routine analytical technique. More recently, an improved understanding of the strong-field theory enabled the development of nonlinear electrokinetic techniques such as electrorotation, dielectrophoresis, and nonlinear electrophoresis. This review discusses the operating principles and recent applications of these three nonlinear electrokinetic phenomena for the analysis and manipulation of particles and cells and provides an overview of some of the latest developments in the field of nonlinear electrokinetics.

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