Desroches Marie-Josee, Omanovic Sasha
Department of Chemical Engineering, McGill University, 3610 University St., Montreal, QC, Canada H3A 2B2.
Phys Chem Chem Phys. 2008 May 14;10(18):2502-12. doi: 10.1039/b719371h. Epub 2008 Mar 12.
Polarization-modulation infrared reflection-absorption spectroscopy (PM-IRRAS) was employed to investigate the interaction of serum protein fibrinogen with a biomedical-grade 316LVM stainless steel surface, in terms of the adsorption thermodynamics, kinetics and secondary structure changes of the protein. Apparent Gibbs energy of adsorption values indicated a highly spontaneous and strong adsorption of fibrinogen onto the surface. The kinetics of fibrinogen adsorption were successfully modeled using a pseudo first-order kinetic model. Deconvolution of the amide I bands indicated that the adsorption of fibrinogen on 316LVM results in significant changes in the protein's secondary structure that occur predominantly within the first minute of adsorption. Among the investigated structures, the alpha-helix structure undergoes the smallest changes, while the beta-sheet and beta-turns structures undergo significant changes. It was shown that lateral interactions between the adsorbed molecules do not play a role in controlling the secondary structure changes. An increase in temperature induced changes in the secondary structure of the protein, characterized by a loss of the alpha-helical content and its transformation into the beta-turns structure.
采用偏振调制红外反射吸收光谱法(PM-IRRAS),从蛋白质的吸附热力学、动力学以及二级结构变化方面,研究血清蛋白纤维蛋白原与生物医学级316LVM不锈钢表面的相互作用。吸附的表观吉布斯自由能值表明纤维蛋白原在表面上具有高度自发且强烈的吸附作用。使用伪一级动力学模型成功模拟了纤维蛋白原的吸附动力学。酰胺I带的去卷积表明,纤维蛋白原在316LVM上的吸附导致蛋白质二级结构发生显著变化,这些变化主要发生在吸附的第一分钟内。在所研究的结构中,α-螺旋结构变化最小,而β-折叠和β-转角结构发生显著变化。结果表明,吸附分子之间的横向相互作用在控制二级结构变化中不起作用。温度升高会引起蛋白质二级结构的变化,其特征是α-螺旋含量减少并转化为β-转角结构。