Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, United States.
Anal Chem. 2010 Dec 15;82(24):10216-21. doi: 10.1021/ac102438w. Epub 2010 Nov 24.
Silica colloidal crystals formed from 330 nm nonporous silica spheres inside of 75 μm i.d. fused silica capillaries were evaluated for the efficiency of capillary electrochromatography of proteins. Three proteins, ribonuclease A, cytochrome C, and lysozyme, each covalently labeled with fluorophor, were well separated over a distance of 1 cm by isocratic electromigration, using 40:60 acetonitrile/water with 0.1% formic acid. A van Deemter plot showed that the plate height for lysozyme, which was the purest of the three proteins, was diffusion-limited for electric fields ranging from 400 to 1400 V/cm. The plate height for lysozyme was below 50 nm at almost all of the migration velocities, and it approached 10 nm at the highest velocity. Eddy diffusion was negligible. Lysozyme migrated over a 12 mm separation length with more than 10(6) plates in 1.5 min. These results indicate that silica colloidal crystals are well suited for electrically driven separations of large, highly charged analytes such as proteins. The 10(6) plates observed for a separation length of barely more than a centimeter means they are potentially valuable for miniaturized separations in microchip and lab-on-a-chip devices.
在 75μm 内径的熔融二氧化硅毛细管内的 330nm 无孔二氧化硅球中形成的硅溶胶晶体,用于评估蛋白质的毛细管电泳色谱效率。三种蛋白质(核糖核酸酶 A、细胞色素 C 和溶菌酶),每种都用荧光团共价标记,通过等度电迁移在 1cm 的距离上得到了很好的分离,使用的是 40:60 的乙腈/水和 0.1%的甲酸。Van Deemter 图表明,对于三种蛋白质中最纯的溶菌酶,在 400 到 1400V/cm 的电场范围内,板高是扩散限制的。在几乎所有的迁移速度下,溶菌酶的板高都低于 50nm,在最高速度下接近 10nm。涡流扩散可以忽略不计。溶菌酶在 1.5 分钟内迁移了 12mm 的分离长度,超过了 10^6 个板。这些结果表明,硅溶胶晶体非常适合于大分子量、高电荷分析物(如蛋白质)的电动分离。对于分离长度仅略多于一厘米,观察到的 10^6 个板意味着它们在微芯片和芯片上实验室设备的小型化分离中具有潜在的价值。