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Formation and Solubilization Property of Water-in-Oil Microemulsions of Alkyl Glucosides

机译:烷基糖苷油包水型微乳的形成及增溶性能

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The dependence of solubilization properties on the alkyl chain length of alkyl glucosides (AG) in AG/isooctane/ n-butanol/water system was investigated. The stable Winsor II system consisting of a water-in-oil (w/o) microemulsion phase and an aqueous phase was formed in AG/isooctane-butanol/water system. The apparent critical micelle concentration of AG reverse micelles in organic phases was markedly dependent upon the alkyl chain length of AG. The limiting amount of solubilized water increased with an increase in the alkyl chain length of AG. The solubilization capacity of methyl orange (MO) was superior to that of methylene blue (MB), and the solubilization capacities of MO and MB tended to increase with increasing the alkyl chain length of AG. Reverse micelles of dodecyl glucoside (AG12) exhibited the significant solubilization capacities of cytochrome c and lysozyme, while ribonuclease A was not solubilized by AG12 reverse micelles.
机译:研究了在AG /异辛烷/正丁醇/水体系中增溶性能对烷基葡糖苷(AG)烷基链长度的依赖性。在AG /异辛烷/正丁醇/水系统中形成了稳定的Winsor II系统,该系统由油包水(w / o)微乳液相和水相组成。 AG反胶束在有机相中的表观临界胶束浓度明显取决于AG的烷基链长度。随着AG的烷基链长度的增加,溶解水的极限量增加。甲基橙(MO)的溶解能力优于亚甲基蓝(MB),并且随着AG烷基链长度的增加,MO和MB的溶解能力趋于增加。十二烷基葡糖苷(AG12)的反胶束表现出显着的细胞色素c和溶菌酶的增溶能力,而核糖核酸酶A未被AG12反胶束溶解。

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