Iacob Bogdan-Cezar, Bodoki Ede, Oprean Radu
Analytical Chemistry Department, "Iuliu Hatieganu" University of Medicine and Pharmacy, Cluj-Napoca, Romania.
Electrophoresis. 2014 Oct;35(19):2722-32. doi: 10.1002/elps.201400253. Epub 2014 Aug 22.
There is an increased and continuous need for developing new methods for the separation and quantification of an increasing number of analytes in the environmental, pharmaceutical, pharmacological, and toxicological sciences. CEC is still withholding its popularity, representing a viable alternative to the more conventional techniques (HPLC, GC) due to the numerous advantages, such as, low sample/reagent volumes, high separation efficiencies, hybrid separation principle, etc. One particular promising direction in CEC is the use of molecularly imprinted polymers (MIPs) as stationary phases. They are usually immobilized in the capillary column as a continuous polymeric monolith or as a thin polymer coating attached to the capillary's inner wall. Another emerging trend is the use of MIPs in the form of nanoparticles as a pseudostationary phase. This review discusses the recent developments (2011-2013) in finding the optimal polymerization mixture and the suitable MIP format that should be employed in CEC separations. The most important applications of MIPs in CEC technique are also highlighted.
在环境科学、制药学、药理学和毒理学领域,开发用于分离和定量越来越多分析物的新方法的需求日益增加且持续存在。毛细管电色谱(CEC)仍未广受欢迎,由于其众多优点,如低样品/试剂用量、高分离效率、混合分离原理等,它是更传统技术(高效液相色谱法、气相色谱法)的可行替代方法。CEC中一个特别有前景的方向是使用分子印迹聚合物(MIP)作为固定相。它们通常以连续聚合物整体柱的形式固定在毛细管柱中,或者作为附着在毛细管内壁的薄聚合物涂层。另一个新兴趋势是使用纳米颗粒形式的MIP作为假固定相。本综述讨论了在寻找用于CEC分离的最佳聚合混合物和合适的MIP形式方面的最新进展(2011 - 2013年)。还强调了MIP在CEC技术中的最重要应用。