Department of Analytical Chemistry, University of Barcelona, Martí i Franquès 1-11, E-08028 Barcelona, Spain.
J Chromatogr B Analyt Technol Biomed Life Sci. 2013 May 15;927:3-21. doi: 10.1016/j.jchromb.2012.12.031. Epub 2013 Jan 11.
There is an increasing need of new bio-analytical methodologies with enough sensitivity, robustness and resolution to cope with the analysis of a large number of analytes in complex matrices in short analysis time. For this purpose, all steps included in any bio-analytical method (sampling, extraction, clean-up, chromatographic analysis and detection) must be taken into account to achieve good and reliable results with cost-effective methodologies. The purpose of this review is to describe the state-of-the-art of the most employed technologies in the period 2009-2012 to achieve fast analysis with liquid chromatography coupled to mass spectrometry (LC-MS) methodologies for bio-analytical applications. Current trends in fast liquid chromatography involve the use of several column technologies and this review will focus on the two most frequently applied: sub-2μm particle size packed columns to achieve ultra high pressure liquid chromatography (UHPLC) separations and porous-shell particle packed columns to attain high efficiency separations with reduced column back-pressures. Additionally, recent automated sample extraction and clean-up methodologies to reduce sample manipulation, variability and total analysis time in bio-analytical applications such as on-line solid phase extraction coupled to HPLC or UHPLC methods, or the use of other approaches such as molecularly imprinted polymers, restricted access materials, and turbulent flow chromatography will also be addressed. The use of mass spectrometry and high or even ultra-high resolution mass spectrometry to reduce sample manipulation and to solve ion suppression or ion enhancement and matrix effects will also be presented. The advantages and drawbacks of all these methodologies for fast and sensitive analysis of biological samples are going to be discussed by means of relevant applications.
目前,需要开发新的生物分析方法,以满足在短分析时间内分析复杂基质中大量分析物的需求,这些新方法需要具备足够的灵敏度、稳健性和分辨率。为此,必须考虑到任何生物分析方法(采样、提取、净化、色谱分析和检测)中包含的所有步骤,以实现具有成本效益的良好和可靠的方法。本文的目的是描述 2009-2012 年期间最常用技术的最新进展,以实现基于液相色谱-质谱联用(LC-MS)的生物分析应用的快速分析。快速液相色谱的当前趋势涉及使用几种柱技术,本文将重点介绍两种最常应用的技术:亚 2μm 粒径填充柱以实现超高效液相色谱(UHPLC)分离和多孔壳颗粒填充柱以实现高效分离并降低柱背压。此外,本文还将介绍最近用于减少生物分析应用中样品处理、变异性和总分析时间的自动化样品提取和净化方法,例如在线固相萃取与 HPLC 或 UHPLC 方法的联用,或使用分子印迹聚合物、限制进入材料和湍流色谱等其他方法。本文还将介绍使用质谱和高分辨率或甚至超高分辨率质谱来减少样品处理并解决离子抑制或离子增强以及基质效应的方法。通过相关应用,讨论了所有这些方法用于快速灵敏地分析生物样品的优缺点。