Department of Bioengineering, University of Utah, Salt Lake City, Utah 84112, USA.
Langmuir. 2010 Jul 20;26(14):12140-6. doi: 10.1021/la101674b.
A gradient of negative surface charge based on the 1D spatial variation from surface sulfhydryl to mixed sulfhydryl-sulfonate moieties was prepared by the controlled UV oxidation of a 3-mercaptopropylsilane monolayer on fused silica. The adsorption of three human plasma proteins--albumin (HSA), immunoglobulin G (IgG), and fibrinogen (Fgn)--onto such a surface gradient was studied using spatially resolved total internal reflection fluorescence (TIRF) and autoradiography. Adsorption was measured from dilute solutions equivalent to 1/100 (TIRF, autoradiography), 1/500, and 1/1000 (autoradiography) of protein physiological concentrations in plasma. All three proteins adsorbed more to the nonoxidized sulfhydryl region than to the oxidized, mixed sulfhydryl-sulfonate region of the gradient. In the case of HSA, the adsorption contrast along the gradient was largest when the adsorption took place from more dilute protein solutions. Increasing the concentration to 1/100 of the protein plasma concentration eliminated the effect of the gradient on HSA adsorption and, to the lesser extent, on IgG adsorption. In the case of Fgn, the greatest adsorption contrast was observed at the highest concentration used. On the basis of adsorption kinetics, the estimated binding affinity of HSA for the sulfhydryl region was twice the affinity for the mixed sulfhydryl-sulfonate region of the gradient. For IgG and Fgn, the initial adsorption was transport-limited and the initial adsorption rates approached the computed flux of the protein to the surface.
通过对 3-巯丙基硅烷单层在熔融石英上进行受控的紫外氧化,制备了基于从表面巯基到混合巯基-磺酸盐基团的一维空间变化的负表面电荷梯度。使用空间分辨全内反射荧光(TIRF)和放射自显影研究了三种人血浆蛋白(白蛋白(HSA)、免疫球蛋白 G(IgG)和纤维蛋白原(Fgn))在这种表面梯度上的吸附。吸附从相当于血浆中蛋白质生理浓度的 1/100(TIRF、放射自显影)、1/500 和 1/1000(放射自显影)的稀溶液中进行测量。所有三种蛋白质在未氧化的巯基区域的吸附量都大于氧化的混合巯基-磺酸盐区域。对于 HSA,当吸附来自更稀的蛋白质溶液时,沿梯度的吸附对比度最大。将浓度增加到蛋白质血浆浓度的 1/100 消除了梯度对 HSA 吸附的影响,并且在较小程度上也消除了对 IgG 吸附的影响。对于 Fgn,在使用的最高浓度下观察到最大的吸附对比度。根据吸附动力学,HSA 对巯基区域的估计结合亲和力是对梯度的混合巯基-磺酸盐区域的亲和力的两倍。对于 IgG 和 Fgn,初始吸附受到传输限制,初始吸附速率接近蛋白质向表面的计算通量。