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分散液液微萃取的制药与生物医学应用

Pharmaceutical and biomedical applications of dispersive liquid-liquid microextraction.

作者信息

Mansour Fotouh R, Khairy Mostafa A

机构信息

Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, the Medical Campus, Tanta University, El-Geish Street, 31111, Egypt.

Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, the Medical Campus, Tanta University, El-Geish Street, 31111, Egypt.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2017 Sep 1;1061-1062:382-391. doi: 10.1016/j.jchromb.2017.07.055. Epub 2017 Aug 1.

Abstract

Sample treatment is so crucial in pharmaceutical and biomedical analysis. Proper sample preparation protects the analytical instrument, increases the sensitivity, and enhances the selectivity by removing probable interfering substances. Dispersive liquid-liquid microextraction (DLLME) is one of the most important approaches in sample treatment. In normal DLLME, the organic droplet of the extractant is mixed with a dispersing solvent before being injected into the sample. After manual or mechanical shaking, the cloudy solution is centrifuged to break the formed emulsion. The organic phase is then separated and transferred to the analytical instrument. The dispersion process employed in DLLME dramatically increases the contact surface between the extractant and the sample, which enhances the extraction kinetics and efficiency. DLLME can be classified based on the dispersion technique or the density of the extractant. Accordingly, different modes of DLLME have evolved and been applied for drug analysis in biological fluids. This review discusses the principle of DLLME, the requirements of organic solvents used as extractants in each mode and the different factors affecting the extraction efficiency. Selected applications of the different DLLME modes in bio-pharmaceutical analysis have also been presented.

摘要

样品前处理在药物分析和生物医学分析中至关重要。恰当的样品制备可保护分析仪器、提高灵敏度,并通过去除可能的干扰物质增强选择性。分散液液微萃取(DLLME)是样品前处理中最重要的方法之一。在常规DLLME中,萃取剂的有机液滴在注入样品之前先与分散溶剂混合。经过手动或机械振荡后,将浑浊溶液离心以破坏形成的乳液。然后分离有机相并转移至分析仪器。DLLME中采用的分散过程极大地增加了萃取剂与样品之间的接触面积,从而提高了萃取动力学和效率。DLLME可根据分散技术或萃取剂的密度进行分类。相应地,已发展出不同模式的DLLME并应用于生物流体中的药物分析。本文综述了DLLME的原理、每种模式下用作萃取剂的有机溶剂的要求以及影响萃取效率的不同因素。还介绍了不同DLLME模式在生物药物分析中的选定应用。

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