Université Paris-Saclay, CNRS, Institut Galien Paris-Saclay, 92296, Châtenay-Malabry, France.
Université Paris-Saclay, CNRS, Institut Galien Paris-Saclay, 92296, Châtenay-Malabry, France; Institut Universitaire de France, France.
Anal Chim Acta. 2021 Jan 25;1143:281-297. doi: 10.1016/j.aca.2020.09.008. Epub 2020 Sep 10.
In this study, for the first time we report on a comprehensive overview of different strategies to hyphenate droplet-based sample handling and preparation with electrophoretic separation in different formats (i.e. microchip and capillary electrophoresis). Droplet-interfaced electrophoresis is an emerging technique in which micro/nanometric droplets are used as a bridge and carrier of target analytes between sample treatment and electrokinetic separation steps, thus being expected to overcome the challenges of working dimension mismatch and low degree of module integration. This review covers all works on this topic from 2006 (the year of the first communication) up to 2020, with focus being given to three principal interfacing strategies, including droplets in immiscible phases, digital microfluidics with electrowetting-on-dielectric principle and inkjet droplet generation. Different instrumental developments for such purpose, the viewpoints on pros and cons of these designs as well as application demonstrations of droplet-interfaced electrokinetic strategies are discussed.
在这项研究中,我们首次全面概述了不同的策略,即将基于液滴的样品处理和准备与不同形式(即微芯片和毛细管电泳)的电泳分离相结合。液滴界面电泳是一种新兴技术,其中使用微/纳米级液滴作为目标分析物在样品处理和电动分离步骤之间的桥梁和载体,从而有望克服工作尺寸不匹配和模块集成度低的挑战。本综述涵盖了 2006 年(第一篇通讯的年份)至 2020 年期间关于该主题的所有工作,重点介绍了三种主要的界面策略,包括不混相的液滴、基于电润湿的数字微流控和喷墨液滴生成。为此目的的不同仪器开发,对这些设计的优缺点的看法以及液滴界面电动策略的应用实例都进行了讨论。