Müller-Buschbaum P, Gebhardt R, Maurer E, Bauer E, Gehrke R, Doster W
TU München, Physik-Department, LS E13, James-Franck-Str.1, 85747 Garching Germany.
Biomacromolecules. 2006 Jun;7(6):1773-80. doi: 10.1021/bm060088u.
Casein films were successfully prepared with the spin-coating technique of aqueous casein solutions on base-treated glass surfaces. The film structure is investigated in real space with optical microscopy and atomic force microscopy and for the first time in reciprocal space with grazing incidence small-angle X-ray scattering (GISAXS). The size of the substructures detected in the film increases with pH from 170 nm (pH 5.1) up to 490 nm (pH 9.4). Dynamic light scattering experiments reveal that the average diameters of casein micelles in solution exhibit the same quantitative increase. This result suggests that the substructures detected in the bulklike films with GISAXS reflect intact casein micelles. However, with thin homogeneous casein films, the micelle size diminishes with decreasing film thickness. This indicates that the moderate pressures introduced by spin-coating force the micelles to rearrange into a more compact structure.
通过在碱处理的玻璃表面旋涂酪蛋白水溶液,成功制备了酪蛋白薄膜。利用光学显微镜和原子力显微镜在实空间对薄膜结构进行了研究,并首次利用掠入射小角X射线散射(GISAXS)在倒易空间进行了研究。薄膜中检测到的亚结构尺寸随pH值从170nm(pH 5.1)增加到490nm(pH 9.4)。动态光散射实验表明,溶液中酪蛋白胶束的平均直径呈现相同的定量增加。该结果表明,用GISAXS在块状薄膜中检测到的亚结构反映了完整的酪蛋白胶束。然而,对于薄的均匀酪蛋白薄膜,胶束尺寸随着薄膜厚度的减小而减小。这表明旋涂引入的适度压力迫使胶束重新排列成更紧密的结构。