Wei Wei, Ju Huangxian
Key Laboratory of Analytical Chemistry for Life Science, Education Ministry of China, Department of Chemistry, Nanjing University, Nanjing, P.R. China.
Electrophoresis. 2005 Feb;26(3):586-92. doi: 10.1002/elps.200410273.
A zwitterionic surfactant, dodecyldimethyl (2-hydroxy-3-sulfopropyl) ammonium (C12H25N+(CH3)2CH2CHOHCH2SO3-), named dodecyl sulfobetaine (DSB), was used as a novel modifier to coat dynamically capillary walls for capillary electrophoresis separation of basic proteins. The DSB coating suppressed the electroosmotic flow (EOF) in the pH range of 3-12. At high DSB concentration, the EOF was suppressed by more than 8.8 times. The DSB coating also prevented successfully the adsorption of cationic proteins on the capillary wall. Anions, such as Cl-, Br-, I-, SO4(2-), CO3(2-), and ClO4-, could be used as running buffer modifiers to adjust the EOF for better separation of analytes. Using this dynamically coated capillary, a mixture of eight inorganic anions achieved complete separation within 4.2 min with the efficiencies from 24,000 to 1,310,000 plates/m. In the presence of ClO4- as EOF adjustor, the separation of a mixture containing four basic proteins (lysozyme, cytochrome c, alpha-chymotrypsinogen A, and myoglobin) yielded efficiencies of 204,000-896,000 plates/m and recoveries of 88%-98%. Migration time reproducibility of these proteins was less than 0.5% relative standard deviation (RSD) from run to run and less than 3.1% RSD from day to day, showing promising application of this novel modifier in protein separation.
一种两性离子表面活性剂,十二烷基二甲基(2-羟基-3-磺丙基)铵(C12H25N+(CH3)2CH2CHOHCH2SO3-),名为十二烷基磺基甜菜碱(DSB),被用作一种新型改性剂,用于动态涂覆毛细管内壁,以实现碱性蛋白质的毛细管电泳分离。DSB涂层在pH值为3至12的范围内抑制了电渗流(EOF)。在高DSB浓度下,EOF被抑制了8.8倍以上。DSB涂层还成功地防止了阳离子蛋白质在毛细管内壁上的吸附。阴离子,如Cl-、Br-、I-、SO4(2-)、CO3(2-)和ClO4-,可用作运行缓冲液改性剂来调节EOF,以更好地分离分析物。使用这种动态涂覆的毛细管,八种无机阴离子的混合物在4.2分钟内实现了完全分离,柱效为24,000至1,310,000塔板/米。在使用ClO4-作为EOF调节剂的情况下,对含有四种碱性蛋白质(溶菌酶、细胞色素c、α-胰凝乳蛋白酶原A和肌红蛋白)的混合物进行分离,柱效为204,000至896,000塔板/米,回收率为88%至98%。这些蛋白质的迁移时间重现性在每次运行之间的相对标准偏差(RSD)小于0.5%,在每天之间的RSD小于3.1%,表明这种新型改性剂在蛋白质分离中具有良好的应用前景。