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Capillary modification by noncovalent polycation adsorption: Effects of polymer molecular weight and adsorption ionic strength

机译:非共价聚阳离子吸附对毛细管的改性:聚合物分子量和吸附离子强度的影响

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The strong polycation poly(dimethyldiallylammonium chloride) (PDADMAC) was noncovalently immobilized on fused-silica capillaries. The stability and efficiency of the adsorbed coating was studied as a function of polymer molecular weight and coating ionic strength. By monitoring the electroosmotic flow on PDADMAC-coated capillaries, we found that optimal surface coverage is achieved using high molecular weight polycations at high ionic strength. Such capillaries can be used to elute positively charged proteins. In this study, true protein mobilities were obtained by (1) extrapolation of effective mobility to desired conditions and (2) theoretical calculation from the Henry function. By comparing apparent protein mobility with true protein mobility, we demonstrated that the protein-polycationic capillary surface interaction could enhance the selectivity of the silica capillary for separation of BSA and beta-lactoglobulin. [References: 41]
机译:强聚阳离子聚(二甲基二烯丙基氯化铵)(PDADMAC)非共价固定在熔融石英毛细管上。研究了吸附涂层的稳定性和效率随聚合物分子量和涂层离子强度的变化。通过监测PDADMAC涂层毛细管上的电渗流,我们发现使用高离子强度的高分子量聚阳离子可实现最佳的表面覆盖率。此类毛细管可用于洗脱带正电的蛋白质。在这项研究中,通过(1)将有效迁移率外推至所需条件和(2)从亨利函数进行理论计算,获得了真正的蛋白质迁移率。通过比较表观蛋白质迁移率与真实蛋白质迁移率,我们证明了蛋白质-聚阳离子毛细管表面相互作用可以增强硅胶毛细管分离BSA和β-乳球蛋白的选择性。 [参考:41]

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