Domínguez-Vega Elena, Montealegre Cristina, Marina Maria Luisa
Division of BioAnalytical Chemistry, VU University Amsterdam, Amsterdam, The Netherlands.
Department of Chemistry, Aalen University, Aalen, Germany.
Electrophoresis. 2016 Jan;37(1):189-211. doi: 10.1002/elps.201500359. Epub 2015 Nov 17.
The widespread use of antibiotics in medicine and as growth-promoting agents has increased the demand for suitable analytical techniques for their analysis. Analytical methods based on CE or miniaturized CE systems have proved over the years their ability for the analysis of antibiotics. Since our last review (Electrophoresis 2014, 35, 28-49) several new CE methodologies have been reported for antibiotic analysis. This review presents an update of the literature published from June 2013 to June 2015 for the analysis of antibiotics by CE. UV continues being the most used detection system for antibiotics analysis by CE. Strategies to improve sensitivity as the use of sensitive detection systems and the application of preconcentration techniques appear to be the major developments. Furthermore, the use of portable and miniaturized devices for antibiotic analysis is presented in detail. Applications of the developed methodologies to the determination of residues of antibiotics in biological, food, and environmental samples are carefully described. Finally, new developments and applications of antibiotics as chiral selectors in CE are also included.
抗生素在医学领域以及作为生长促进剂的广泛使用,增加了对适用于其分析的检测技术的需求。多年来,基于毛细管电泳(CE)或微型化CE系统的分析方法已证明其具备分析抗生素的能力。自我们上次综述(《电泳》2014年,第35卷,28 - 49页)以来,已有数种用于抗生素分析的新型CE方法被报道。本综述呈现了2013年6月至2015年6月间发表的关于CE分析抗生素的文献的最新情况。紫外检测仍然是CE分析抗生素时最常用的检测系统。提高灵敏度的策略,如使用灵敏的检测系统和应用预浓缩技术,似乎是主要的发展方向。此外,还详细介绍了用于抗生素分析的便携式和微型化设备。已开发方法在生物、食品和环境样品中抗生素残留测定方面的应用也得到了详细描述。最后,还包括了抗生素作为CE手性选择剂的新进展和应用。