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Interactions between poly(ethylene glycol) and protein in dichloromethane/water emulsions: A study of interfacial properties

机译:聚(乙二醇)与蛋白质在二氯甲烷/水乳液中的相互作用:界面性质的研究

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摘要

From adsorption kinetics and interfacial rheological studies performed by using a pendant-drop method, i.e. in conditions close to those of the primary emulsion of the water-in-oil-in-water emulsion-encapsulation technique, it was shown that adsorption of the hen egg-white lysozyme (HEWL) at the water/dichloromethane (DCM) interface can be efficiently slowed down by modulating some parameters. It was shown that a decrease of the ionic strength of the aqueous phase, and the optimization of the density of the poly(ethylene glycol) (PEG) adsorbed film by increasing the PEG concentration or by modulating the polymer chain length, can significantly decrease the rate of adsorption of HEWL at the water/DCM interface. Moreover, it was shown that the choice of the dissolution phase of PEG (DCM or water) clearly influences the results.
机译:从使用悬滴法进行的吸附动力学和界面流变学研究,即在接近水包油包水型乳液包封技术的初级乳液的条件下,可以看出母鸡的吸附通过调节某些参数,可以有效地减慢水/二氯甲烷(DCM)界面处的蛋清溶菌酶(HEWL)。结果表明,降低水相的离子强度,以及通过增加PEG浓度或调节聚合物链长来优化聚(乙二醇)(PEG)吸附膜的密度,都可以显着降低水相的离子强度。 HEWL在水/ DCM界面的吸附速率。而且,已经表明,PEG(DCM或水)的溶解相的选择明显影响结果。

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