Gulcev Makedonka D, Lucy Charles A
Department of Chemistry, University of Alberta, Gunning/Lemieux Chemistry Centre, Edmonton, Alberta T6G 2G2, Canada.
Anal Chem. 2008 Mar 1;80(5):1806-12. doi: 10.1021/ac702408u. Epub 2008 Jan 31.
Phospholipid bilayer coatings can prevent adsorption of cationic proteins on the surface of fused silica capillaries used in capillary electrophoresis. However, the performance of such bilayer coatings is strongly dependent on solution conditions. The factors affecting the rate of formation of phospholipid bilayer coatings were investigated using the double-chained zwitterionic 1,2-dimyristoyl-sn-glycero-phosphocholine (DMPC, C(14)) as a model phospholipid. The effectiveness of these coatings for CE separations of model cationic lysozyme, cytochrome c, ribonuclease A, and alpha-chymotrypsinogen A was also assessed. Increasing the ionic strength of a 0.1 mM DMPC solution reduced capillary coat times from >2 hours in 2.5 mM Tris (pH 7.4) buffer to 3.4 min in 40 mM Tris and dramatically improved separation performance such that > or =1.4 x 10(5) plates/m were observed in capillaries coated for 5 min with 0.1 mM DMPC in 20 mM Tris-HCl (pH 7.4). The presence of Ca(2+) in the coating solution also increases the rate of formation of the phospholipid bilayer coating. The type of vesicle strongly affects its adsorption rate onto the silica surface. The time required to coat the capillary was 7.2 min for small unilamellar vesicles (SUVs) and 22.5 min for large unilamellar vesicles and excessively long for multilamellar vesicles. Highest efficiency protein separations were achieved with bilayer coatings prepared from SUVs. The coating rate was enhanced by using greater DMPC concentrations and unaffected by pH. The type of buffer present in the DMPC coating solution affects the coating behavior, with HEPES buffer yielding a faster coat time than either Tris or phosphate buffers. Histone H1 was separated on a 0.1 mM DMPC-coated capillary.
磷脂双层涂层可以防止阳离子蛋白质吸附在毛细管电泳中使用的熔融石英毛细管表面。然而,这种双层涂层的性能强烈依赖于溶液条件。使用双链两性离子1,2-二肉豆蔻酰-sn-甘油-磷酸胆碱(DMPC,C(14))作为模型磷脂,研究了影响磷脂双层涂层形成速率的因素。还评估了这些涂层对模型阳离子溶菌酶、细胞色素c、核糖核酸酶A和α-胰凝乳蛋白酶原A进行毛细管电泳分离的有效性。将0.1 mM DMPC溶液的离子强度增加,可使毛细管涂层时间从在2.5 mM Tris(pH 7.4)缓冲液中>2小时减少至在40 mM Tris中3.4分钟,并显著改善分离性能,使得在用20 mM Tris-HCl(pH 7.4)中的0.1 mM DMPC涂覆5分钟的毛细管中观察到≥1.4×10(5) 块板/米。涂层溶液中Ca(2+)的存在也会增加磷脂双层涂层的形成速率。囊泡的类型强烈影响其在二氧化硅表面的吸附速率。涂覆毛细管所需的时间对于小单层囊泡(SUV)为7.2分钟,对于大单层囊泡为22.5分钟,对于多层囊泡则过长。使用由SUV制备的双层涂层可实现最高效率的蛋白质分离。通过使用更高的DMPC浓度可提高涂层速率,且不受pH影响。DMPC涂层溶液中存在的缓冲液类型会影响涂层行为,HEPES缓冲液产生的涂层时间比Tris或磷酸盐缓冲液更快。在0.1 mM DMPC涂覆的毛细管上分离了组蛋白H1。