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白蛋白、免疫球蛋白G和纤维蛋白原的差异表面结合

Differential surface binding of albumin, immunoglobulin G and fibrinogen.

作者信息

Warkentin P, Wälivaara B, Lundström I, Tengvall P

机构信息

Linköping University, Laboratory of Applied Physics, Sweden.

出版信息

Biomaterials. 1994 Aug;15(10):786-95. doi: 10.1016/0142-9612(94)90033-7.

Abstract

Protein-protein interactions, as well as the nature of the surface, significantly affect the activity of a specific protein towards a defined surface. Indications are that protein-protein associations may affect antibody detectability, but in some cases this is the result of altered antigenic accessibility rather than physical removal of the molecule. The antibody binding patterns are also quite variable over an entire methyl-silanol wettability gradient on silicon, suggesting that the surface itself is affecting protein-protein and protein-protein-surface associations. Ellipsometric studies were carried out on the gradients which were incubated in single; binary and tertiary physiological concentration solutions of human albumin, immunoglobulin G (IgG) and fibrinogen. The ellipsometric-antibody detectability of the proteins on such surfaces were found to be variable, depending upon the location on the gradient and the order and combination in which the proteins were presented to the surface. Radiolabelled proteins were studied on discrete regions of these gradients. Competitive effects of albumin were found to be inhibitory (negative) with respect to IgG adsorption on hydrophobic surfaces, while enhancing IgG deposition on hydrophilic surfaces (positive). Scanning force microscopy in the so-called tapping mode indicates that proteins, particularly IgG, organize themselves differently with respect to surfaces, depending upon the nature of the surface and the presence of other proteins.

摘要

蛋白质-蛋白质相互作用以及表面性质,会显著影响特定蛋白质对特定表面的活性。有迹象表明,蛋白质-蛋白质结合可能会影响抗体的可检测性,但在某些情况下,这是抗原可及性改变的结果,而非分子的物理去除。在硅片上整个甲基硅烷醇润湿性梯度范围内,抗体结合模式也存在很大差异,这表明表面本身会影响蛋白质-蛋白质以及蛋白质-蛋白质-表面的结合。对在人白蛋白、免疫球蛋白G(IgG)和纤维蛋白原的单一、二元和三元生理浓度溶液中孵育的梯度进行了椭偏测量研究。发现蛋白质在这些表面上的椭偏抗体可检测性各不相同,这取决于在梯度上的位置以及蛋白质呈现给表面的顺序和组合。在这些梯度的离散区域研究了放射性标记的蛋白质。发现白蛋白对疏水性表面上IgG吸附的竞争效应具有抑制作用(负效应),而在亲水性表面上则增强IgG的沉积(正效应)。所谓轻敲模式的扫描力显微镜表明,蛋白质,尤其是IgG,会根据表面性质和其他蛋白质的存在情况,在表面上呈现出不同的组织方式。

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