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Microextraction techniques combined with capillary electrophoresis in bioanalysis

机译:微萃取技术结合毛细管电泳进行生物分析

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Over the past two decades, many environmentally sustainable sample-preparation techniques have been proposed, with the objective of reducing the use of toxic organic solvents or substituting these with environmentally friendly alternatives. Microextraction techniques (MEs), in which only a small amount of organic solvent is used, have several advantages, including reduced sample volume, analysis time, and operating costs. Thus, MEs are well adapted in bioanalysis, in which sample preparation is mandatory because of the complexity of a sample that is available in small quantities (mL or even μL only). Capillary electrophoresis (CE) is a powerful and efficient separation technique in which no organic solvents are required for analysis. Combination of CE with MEs is regarded as a very attractive environmentally sustainable analytical tool, and numerous applications have been reported over the last few decades for bioanalysis of low-molecular-weight compounds or for peptide analysis. In this paper we review the use of MEs combined with CE in bioanalysis. The review is divided into two sections: liquid and solid-based MEs. A brief practical and theoretical description of each ME is given, and the techniques are illustrated by relevant applications.
机译:在过去的二十年中,已经提出了许多环境可持续的样品制备技术,目的是减少有毒有机溶剂的使用或用环保的替代品替代这些有机溶剂。仅使用少量有机溶剂的微萃取技术(MEs)具有许多优势,包括减少了样品量,缩短了分析时间并降低了操作成本。因此,MEs非常适合于生物分析,在该分析中,由于少量可用样品的复杂性(仅mL甚至μL),必须进行样品制备。毛细管电泳(CE)是一种功能强大且高效的分离技术,其中不需要有机溶剂即可进行分析。 CE与ME的结合被认为是一种非常有吸引力的环境可持续性分析工具,并且在过去的几十年中,已经报道了许多用于低分子量化合物的生物分析或肽分析的应用。在本文中,我们综述了ME与CE结合在生物分析中的应用。该评论分为两个部分:基于液体和基于固体的ME。给出了每个ME的简要实践和理论描述,并通过相关应用说明了这些技术。

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