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聚合物表面的纤连蛋白置换

Fibronectin displacement at polymer surfaces.

作者信息

Renner Lars, Pompe Tilo, Salchert Katrin, Werner Carsten

机构信息

Leibniz Institute of Polymer Research Dresden & The Max Bergmann Center of Biomaterials Dresden, Hohe Str. 6, 01069 Dresden, Germany.

出版信息

Langmuir. 2005 May 10;21(10):4571-7. doi: 10.1021/la046801n.

Abstract

The interactions of fibronectin with thin polymer films are studied in displacement experiments using human serum albumin. Fibronectin adsorption and exchange on two different maleic anhydride copolymer surfaces differing in hydrophobicity and surface charge density have been analyzed by quartz crystal microbalance and laser scanning microscopy with respect to adsorbed amounts, viscoelastic properties, and conformation. Fibronectin is concluded to become attached onto hydrophilic surfaces as a "softer", less rigid protein layer, in contrast to the more rigid, densely packed layer on hydrophobic surfaces. As a result, the fibronectin conformation is more distorted on the hydrophobic substrates together with remarkably different displacement characteristics in dependence on the adsorbed fibronectin surface concentration and the displacing albumin solution concentration. While the displacement kinetic remains constant for the strongly interacting surface, an acceleration in fibronectin exchange is observed for the weakly interacting surface with increasing fibronectin coverage. For displaced amounts, no change is determined for the hydrophobic substrate, in contrast to the hydrophilic substrate with a decrease of fibronectin exchange with decreasing coverage leading finally to a constant nondisplaceable amount of adsorbed proteins. Furthermore, the variation of the albumin exchange concentration reveals a stronger dependence of the kinetic for the weakly interacting substrate with higher rates at higher albumin concentrations.

摘要

在使用人血清白蛋白的置换实验中研究了纤连蛋白与聚合物薄膜之间的相互作用。通过石英晶体微天平以及激光扫描显微镜,针对吸附量、粘弹性特性和构象,分析了纤连蛋白在两种不同的、疏水性和表面电荷密度不同的马来酸酐共聚物表面上的吸附和交换情况。得出的结论是,与疏水性表面上更刚性、紧密堆积的层相比,纤连蛋白以“更柔软”、刚性较小的蛋白质层附着在亲水性表面上。结果,纤连蛋白构象在疏水性底物上扭曲得更厉害,并且根据吸附的纤连蛋白表面浓度和置换白蛋白溶液浓度,其置换特性也显著不同。对于强相互作用表面,置换动力学保持恒定,而对于弱相互作用表面,随着纤连蛋白覆盖率增加,观察到纤连蛋白交换加速。对于置换量,疏水性底物未观察到变化,而亲水性底物则随着覆盖率降低纤连蛋白交换减少,最终导致吸附蛋白的不可置换量恒定。此外,白蛋白交换浓度的变化表明,弱相互作用底物的动力学对白蛋白浓度的依赖性更强,在较高白蛋白浓度下速率更高。

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