López-León T, Jódar-Reyes A B, Ortega-Vinuesa J L, Bastos-González D
Biocolloid and Fluid Physics Group, Department of Applied Physics, University of Granada, Avenida Fuentenueva S/N, 18071 Granada, Spain.
J Colloid Interface Sci. 2005 Apr 1;284(1):139-48. doi: 10.1016/j.jcis.2004.10.021.
The effect of various ions related to the Hofmeister series (HS) on different properties of a cationic latex covered with a protein (IgG) is analyzed in this study. NaNO3, NH4NO3, and Ca(NO3)2 were used to compare the specificity of the cations, and NaCl, NaSCN, NaNO3, and Na2SO4, to compare the specificity of the anions. Two pH values, 4 and 10, were chosen to analyze the behavior of these ions acting as counter- and co-ions. At pH 4, the total surface charge is positive, whereas at pH 10 it is negative. Three different phenomena have been studied in the presence of these Hofmeister ions: (1) colloidal aggregation, (2) electrophoretic mobility, and (3) colloidal restabilization. The specific effect of the ions was clearly observed in all experiments, obtaining ion sequences ordered according to their specificity. The most important parameter for ion ordering was the sign of the charge of the colloidal particle. Positively charged particles displayed an ion order opposite that observed for negatively charged surfaces. Another influential factor was the hydrophobic/hydrophilic character of the particle surface. IgG-latex particle surfaces at pH 10 were more hydrophilic than those at pH 4. The SCN- ion had a peculiar specific effect on the phenomena studied (1)-(3) at pH 10. With respect to the restabilization studies at high ionic strengths, new interesting results were obtained. Whereas it is commonly known that cations may provoke colloidal restabilization in negative particles when they act as counterions, our experiments demonstrated that such restabilization is also possible with positively charged particles. Likewise, restabilization of negative surfaces induced by the specific effect of chaotropic anions (acting as co-ions) was also observed.
本研究分析了与霍夫迈斯特序列(HS)相关的各种离子对覆盖有蛋白质(IgG)的阳离子胶乳不同性质的影响。使用硝酸钠、硝酸铵和硝酸钙来比较阳离子的特异性,使用氯化钠、硫氰酸钠、硝酸钠和硫酸钠来比较阴离子的特异性。选择了两个pH值,即4和10,来分析这些离子作为抗衡离子和共离子时的行为。在pH为4时,总表面电荷为正,而在pH为10时为负。在这些霍夫迈斯特离子存在的情况下,研究了三种不同的现象:(1)胶体聚集,(2)电泳迁移率,(3)胶体再稳定化。在所有实验中都清楚地观察到了离子的特定效应,得到了根据其特异性排序的离子序列。离子排序的最重要参数是胶体颗粒电荷的符号。带正电的颗粒显示出与带负电表面相反的离子顺序。另一个影响因素是颗粒表面的疏水/亲水特性。pH为10时的IgG-胶乳颗粒表面比pH为4时更亲水。硫氰酸根离子在pH为10时对所研究的现象(1)-(3)有特殊的特定效应。关于高离子强度下的再稳定化研究,获得了新的有趣结果。虽然众所周知,阳离子作为抗衡离子时可能会使负颗粒发生胶体再稳定化,但我们的实验表明,带正电的颗粒也可能发生这种再稳定化。同样,也观察到了由离液序列高的阴离子(作为共离子)的特定效应引起的负表面再稳定化。