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胶原蛋白变性对吸附层纳米级结构的影响。

Influence of collagen denaturation on the nanoscale organization of adsorbed layers.

作者信息

Gurdak Elzbieta, Booth John, Roberts Clive J, Rouxhet Paul G, Dupont-Gillain Christine C

机构信息

Unité de chimie des interfaces, Université catholique de Louvain, Croix du Sud 2/18, 1348 Louvain-la-Neuve, Belgium.

出版信息

J Colloid Interface Sci. 2006 Oct 15;302(2):475-84. doi: 10.1016/j.jcis.2006.06.064. Epub 2006 Jul 8.

Abstract

Adsorption (at 37 degrees C) of type I collagen, in native and heat-denatured (30 min at 40 and 90 degrees C) forms, on polystyrene was studied using quartz crystal microbalance with energy dissipation monitoring (QCM-D), atomic force microscopy (AFM) in tapping mode and X-ray photoelectron spectroscopy (XPS). The significance of the parameters deduced from QCM-D data was examined by comparing different approaches. The adsorbed layer of native collagen has a complex organization consisting of a thin mat of molecules near the surface, in which fibrils develop depending on concentration and time, and of a thicker overlayer containing protruding molecules or bundles which modify noticeably the local viscosity. As a result of drastic denaturation, the ability of collagen to assemble into fibrils in the adsorbed phase is lost and the protrusion of molecules into the aqueous phase is much less pronounced. The adsorbed layer of denatured collagen appears essentially as a monolayer of flattened coils. At low concentration, this is easily displaced upon drying, leading to particular dewetting figures; at high concentration, aggregates add to the first layer. Moderate denaturation leads to an adsorbed phase which shows properties intermediate between those observed with native and extensively denatured collagen, regarding the ability to form fibrillar structures and the adlayer thickness and viscosity.

摘要

使用带能量耗散监测的石英晶体微天平(QCM-D)、敲击模式的原子力显微镜(AFM)和X射线光电子能谱(XPS),研究了天然和热变性(40℃和90℃下30分钟)形式的I型胶原蛋白在聚苯乙烯上的吸附(37℃)。通过比较不同方法,检验了从QCM-D数据推导出的参数的意义。天然胶原蛋白的吸附层具有复杂的组织结构,由靠近表面的薄分子垫组成,其中原纤维根据浓度和时间生长,以及由含有突出分子或束的较厚覆盖层组成,这显著改变了局部粘度。由于剧烈变性,胶原蛋白在吸附相中组装成原纤维的能力丧失,分子向水相的突出也不那么明显。变性胶原蛋白的吸附层基本上呈现为扁平螺旋的单层。在低浓度下,干燥时这很容易被取代,导致特殊的去湿图形;在高浓度下,聚集体会添加到第一层。适度变性导致吸附相在形成纤维状结构的能力、吸附层厚度和粘度方面表现出介于天然和广泛变性胶原蛋白之间的性质。

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