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高通量介电泳微/纳平台的设计、功能及生物医学应用综述

On the design, functions, and biomedical applications of high-throughput dielectrophoretic micro-/nanoplatforms: a review.

作者信息

Li Yalin, Wang Yan, Wan Keming, Wu Mingxue, Guo Lei, Liu Xiaomin, Wei Gang

机构信息

College of Chemistry and Chemical Engineering, Qingdao University, 266071 Qingdao, PR China.

Research Center for High-Value Utilization of Waste Biomass, College of Life Science, College of Life Science, Qingdao University, 266071 Qingdao, PR China.

出版信息

Nanoscale. 2021 Mar 4;13(8):4330-4358. doi: 10.1039/d0nr08892g.

Abstract

As an efficient, rapid and label-free micro-/nanoparticle separation technique, dielectrophoresis (DEP) has attracted widespread attention in recent years, especially in the field of biomedicine, which exhibits huge potential in biomedically relevant applications such as disease diagnosis, cancer cell screening, biosensing, and others. DEP technology has been greatly developed recently from the low-flux laboratory level to high-throughput practical applications. In this review, we summarize the recent progress of DEP technology in biomedical applications, including firstly the design of various types and materials of DEP electrode and flow channel, design of input signals, and other improved designs. Then, functional tailoring of DEP systems with endowed specific functions including separation, purification, capture, enrichment and connection of biosamples, as well as the integration of multifunctions, are demonstrated. After that, representative DEP biomedical application examples in aspects of disease detection, drug synthesis and screening, biosensing and cell positioning are presented. Finally, limitations of existing DEP platforms on biomedical application are discussed, in which emphasis is given to the impact of other electrodynamic effects such as electrophoresis (EP), electroosmosis (EO) and electrothermal (ET) effects on DEP efficiency. This article aims to provide new ideas for the design of novel DEP micro-/nanoplatforms with desirable high throughput toward application in the biomedical community.

摘要

作为一种高效、快速且无标记的微/纳米颗粒分离技术,介电电泳(DEP)近年来受到了广泛关注,尤其是在生物医学领域,其在疾病诊断、癌细胞筛选、生物传感等生物医学相关应用中展现出巨大潜力。DEP技术近年来已从低通量的实验室水平大幅发展至高通量的实际应用。在本综述中,我们总结了DEP技术在生物医学应用中的最新进展,首先包括各种类型和材料的DEP电极及流道设计、输入信号设计以及其他改进设计。然后,展示了对DEP系统进行功能定制,赋予其包括生物样品的分离、纯化、捕获、富集和连接等特定功能,以及多功能集成。之后,介绍了在疾病检测、药物合成与筛选、生物传感和细胞定位等方面具有代表性的DEP生物医学应用实例。最后,讨论了现有DEP平台在生物医学应用中的局限性,其中重点阐述了诸如电泳(EP)、电渗(EO)和电热(ET)效应等其他电动力学效应对DEP效率的影响。本文旨在为设计具有理想高通量的新型DEP微/纳米平台以应用于生物医学领域提供新思路。

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