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微型化自由流动电泳——批判性综述。

Miniaturizing free-flow electrophoresis - a critical review.

作者信息

Kohlheyer Dietrich, Eijkel Jan C T, van den Berg Albert, Schasfoort Richard B M

机构信息

Institute for Nanotechnology, University of Twente, Enschede, The Netherlands.

出版信息

Electrophoresis. 2008 Mar;29(5):977-93. doi: 10.1002/elps.200700725.

Abstract

Free-flow electrophoresis (FFE) separation methods have been developed and investigated for around 50 years and have been applied not only to many types of analytes for various biomedical applications, but also for the separation of inorganic and organic substances. Its continuous sample preparation and mild separation conditions make it also interesting for online monitoring and detection applications. Since 1994 several microfluidic, miniaturized FFE devices were developed and experimentally characterized. In contrast to their large-scale counterparts microfluidic FFE (mu-FFE) devices offer new possibilities due to the very rapid separations within several seconds or below and the requirement for sample volumes in the microliter range. Eventually, these mu-FFE systems might find application in so-called lab-on-a-chip devices for real-time monitoring and separation applications. This review gives detailed information on the results so far published on mu-FFE chips, comprising its four main modes, namely free-flow zone electrophoresis (FFZE), free-flow IEF (FFIEF), free-flow ITP (FFITP), and free-flow field-step electrophoresis (FFFSE). The principles of the different FFE modes and the basic underlying theory are given and discussed with special emphasis on miniaturization. Different designs as well as fabrication methods and applied materials are discussed and evaluated. Furthermore, the separation results shown indicate that similar separation quality with respect to conventional FFE systems, as defined by the resolution and peak capacity, can be achieved with mu-FFE separations when applying much lower electrical voltages. Furthermore, innovations still occur and several approaches for hyphenated, more integrated systems have been proposed so far, some of which are discussed here. This review is intended as an introduction and early compendium for research and development within this field.

摘要

自由流动电泳(FFE)分离方法已经开发和研究了约50年,不仅已应用于多种生物医学应用中的各类分析物,还用于无机和有机物质的分离。其连续的样品制备和温和的分离条件使其在在线监测和检测应用中也颇具吸引力。自1994年以来,已开发出几种微流控、小型化的FFE装置并进行了实验表征。与大型同类装置相比,微流控FFE(μ-FFE)装置具有新的可能性,因为其能在几秒或更短时间内实现非常快速的分离,且所需样品体积在微升范围内。最终,这些μ-FFE系统可能会在所谓的芯片实验室装置中用于实时监测和分离应用。本综述详细介绍了迄今为止在μ-FFE芯片上发表的结果,包括其四种主要模式,即自由流动区带电泳(FFZE)、自由流动等电聚焦(FFIEF)、自由流动等速电泳(FFITP)和自由流动场阶梯电泳(FFFSE)。给出并讨论了不同FFE模式的原理以及基本的基础理论,特别强调了小型化。讨论并评估了不同的设计以及制造方法和应用材料。此外,所示的分离结果表明,在施加低得多的电压时,μ-FFE分离能够实现与传统FFE系统在分辨率和峰容量方面所定义的相似分离质量。此外,创新仍在出现,迄今为止已经提出了几种用于联用、更集成系统的方法,本文将对其中一些进行讨论。本综述旨在作为该领域研发的入门介绍和早期概要。

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