首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >A review of the application of hollow-fiber liquid-phase microextraction in bioanalytical methods - A systematic approach with focus on forensic toxicology
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A review of the application of hollow-fiber liquid-phase microextraction in bioanalytical methods - A systematic approach with focus on forensic toxicology

机译:中空纤维液相微萃取在生物分析方法中的应用综述 - 一种重点对法医毒理学的系统方法

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摘要

Over the past three decades, many studies employing hollow-fiber liquid-phase microextraction (HF-LPME) bioanalytical methods have been published. The basic mechanism of extraction relies on the migration of the analytes through a liquid membrane sustained in the pores of the walls of a porous hollow fiber, and from there into an acceptor phase present in the lumen of the fiber. The mass transfer occurs by passive diffusion and it can be enhanced by using a carrier or applying an electrical potential across the phases. This type of extraction method presents many advantages over classical techniques, such as high preconcentration factor, clean extracts, and a green chemistry approach. Due to its advantages, and considering that no study systematically compiled the characteristics of the published methods in one single accessible source of information, the aim of this systematic review is to assess the data regarding bioanalytical methods, compile, and analyse the studies published until up to October of 2017. The data source used for the systematic review were Pubmed, Web of Science, and Science Direct, and 171 studies were included in the final review by two independent reviewers, resulting in a reliable and accessible source of information about bioanalytical methods employing HF-LPME.
机译:在过去的三十年中,已经公布了使用空心纤维液相微萃取(HF-LPME)生物分析方法的许多研究。萃取的基本机制依赖于通过在多孔中空纤维的壁的孔中持续的液体膜迁移,从而从存在于纤维内腔中存在的受体相。通过被动扩散发生传质,并且可以通过使用载体或在各相中施加电势来增强。这种类型的萃取方法呈现出古典技术的许多优点,例如高预浓度,清洁提取物和绿色化学方法。由于其优点,并考虑到没有学习在一个单一可访问的信息源中系统地编译公布的方法的特征,这一系统审查的目的是评估生物分析方法,编译和分析出版的研究的数据到2017年10月。用于系统审查的数据源是Pubmed,科学网站和科学网络直接,并通过两个独立审稿人的最终审查中包含171项研究,导致有关生物分析方法的可靠和可访问的信息来源雇用HF-LPME。

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