Maruyama Hideo, Seki Hideshi, Suzuki Akira, Inoue Norio
Division of Marine Biosciences, Graduate School of Fisheries Sciences, Hokkaido University, Minato 3-1-1, Hakodate 041-8611, Japan.
J Colloid Interface Sci. 2006 Jul 1;299(1):416-20. doi: 10.1016/j.jcis.2006.02.006. Epub 2006 Feb 28.
The adsorption of ovalbumin (OA) onto the bubble surfaces was studied with various pHs (3.5, 4.6, 6.0 and 8.0) by a continuous foam separation technique. From the value of the saturated surface density of adsorbed OA, the variation of effective diameter (D) of an OA molecule on the bubble surface was estimated for various pHs (3.5, 4.6, 6.0 and 8.0) of the OA solutions, assuming that the cross section of the OA molecules be circular and that the OA molecules adsorb on the bubble surface in a closest packing structure. The estimated variation of D with pH was attempted to explain based on a model modified from that proposed by Pujar and Zydney. The modified model could well reproduce the variation of the effective diameter with pH; the values of D calculated on the basis of the modified model almost agreed with that estimated from the saturated surface density in the present experimental pH range. From these, conclusion was drawn that the modified model presented in this study can express the variation in the effective diameter with pH.
采用连续泡沫分离技术,研究了在不同pH值(3.5、4.6、6.0和8.0)下卵清蛋白(OA)在气泡表面的吸附情况。根据吸附的OA的饱和表面密度值,假设OA分子的横截面为圆形且OA分子以紧密堆积结构吸附在气泡表面,估算了在不同pH值(3.5、4.6、6.0和8.0)的OA溶液中,气泡表面OA分子的有效直径(D)的变化。基于对Pujar和Zydney提出的模型进行修改后的模型,尝试解释D随pH值的估计变化。修改后的模型能够很好地再现有效直径随pH值的变化;在本实验pH范围内,基于修改后的模型计算出的D值与从饱和表面密度估算出的值几乎一致。由此得出结论,本研究提出的修改后的模型能够表达有效直径随pH值的变化。