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Human serum albumin adsorption onto octadecyldimethylsilyl–silica gradient surface

机译:人血清白蛋白吸附在十八烷基二甲基硅烷基二氧化硅梯度表面上

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摘要

The effects of long-range electrostatic repulsion and short-range hydrophobic attraction on human serum albumin adsorption were studied as a function of the surface density of octadecyldimethylsilyl chains (C18) on silica. A C18 surface density gradient was prepared on fused silica plates. The water contact angles increased smoothly from 12° to 105° in the 12.5 mm long gradient region. The maximal fractional surface coverage of the C18 chains was calculated to be 0.92. Fluorescein-5-isothiocyanate-labeled human serum albumin (FITC-HSA) adsorption from dilute buffer solution onto the C18 gradient surface was measured using spatially resolved total internal reflection fluorescence (TIRF) spectroscopy. FITC-HSA adsorbed progressively more onto the surfaces with higher hydrophobicity. When the fractional surface coverage of C18 chains was larger than 0.42 the adsorption saturation of FITC-HSA leveled off. The adsorption kinetics of FITC-HSA changed from a transport-limited process at moderate-to-high C18 surface coverages to an adsorption-limited process at lower C18 surface coverages. The kinetics of FITC-HSA adsorption, including the convective–diffusive transport of protein to the surface, were modeled as a simple binding process with a single forward and reverse rate. The apparent binding constant, derived from the initial forward and reverse binding rates, depended more strongly on the C18 surface coverage in 0.165 M buffer than in 0.025 M buffer.
机译:研究了长距离静电排斥和短距离疏水吸引对人血清白蛋白吸附的影响,该影响是十八烷基二甲基甲硅烷基链(C18)在硅胶上的表面密度的函数。在熔融石英板上制备C18表面密度梯度。在12.5毫米长的渐变区域中,水接触角从12°平滑增加到105°。 C18链的最大表面覆盖率经计算为0.92。使用空间分辨的全内反射荧光(TIRF)光谱测量了荧光素5-异硫氰酸酯标记的人血清白蛋白(FITC-HSA)从稀缓冲液到C18梯度表面的吸附。 FITC-HSA逐渐以较高的疏水性逐渐吸附到表面上。当C18链的部分表面覆盖率大于0.42时,FITC-HSA的吸附饱和度趋于稳定。 FITC-HSA的吸附动力学从中等至高C18表面覆盖率的迁移受限过程转变为较低C18表面覆盖率的吸附受限过程。 FITC-HSA吸附的动力学,包括蛋白质对流扩散扩散到表面的过程,被建模为具有单个正向和反向速率的简单结合过程。从最初的正向和反向结合速率得出的表观结合常数,在0.165 M缓冲液中比在0.025 M缓冲液中更强烈地取决于C18表面覆盖率。

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