Dolatshahi-Pirouz A, Rechendorff K, Hovgaard M B, Foss M, Chevallier J, Besenbacher F
Department of Physics and Astronomy, University of Aarhus, DK-8000 Aarhus C, Denmark.
Colloids Surf B Biointerfaces. 2008 Oct 1;66(1):53-9. doi: 10.1016/j.colsurfb.2008.05.010. Epub 2008 May 24.
The adsorption of bovine serum albumin (BSA) on platinum surfaces with a root-mean-square roughness ranging from 1.49nm to 4.62nm was investigated using quartz crystal microbalance with dissipation (QCM-D). Two different BSA concentrations, 50microg/ml and 1mg/ml, were used, and the adsorption studies were complemented by monitoring the antibody interaction with the adsorbed BSA layer. The adsorption process was significantly influenced by the surface nano-roughness, and it was observed that the surface mass density of the adsorbed BSA layer is enhanced in a non-trivial way with the surface roughness. From a close examination of the energy dissipation vs. frequency shift plot obtained by the QCM-D technique, it was additionally observed that the BSA adsorption on the roughest surface is subject to several distinct adsorption phases revealing the presence of structural changes facilitated by the nano-rough surface morphology during the adsorption process. These changes were in particular noticeable for the adsorption at the low (50microg/ml) BSA concentration. The results confirm that the nano-rough surface morphology has a significant influence on both the BSA mass uptake and the functionality of the resulting protein layer.
利用带耗散监测的石英晶体微天平(QCM-D)研究了牛血清白蛋白(BSA)在均方根粗糙度范围为1.49纳米至4.62纳米的铂表面上的吸附情况。使用了两种不同的BSA浓度,即50微克/毫升和1毫克/毫升,并通过监测抗体与吸附的BSA层之间的相互作用对吸附研究进行补充。吸附过程受到表面纳米粗糙度的显著影响,并且观察到吸附的BSA层的表面质量密度随着表面粗糙度以一种复杂的方式增强。通过对QCM-D技术获得的能量耗散与频率偏移图的仔细研究,还观察到在最粗糙表面上的BSA吸附经历了几个不同的吸附阶段,这表明在吸附过程中纳米粗糙表面形态促进了结构变化的存在。这些变化在低(50微克/毫升)BSA浓度下的吸附中尤为明显。结果证实,纳米粗糙表面形态对BSA的质量吸收和所得蛋白质层的功能都有显著影响。