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多重乳液稳定性:压力平衡与界面膜强度。

Multiple emulsion stability: pressure balance and interfacial film strength.

作者信息

Jiao Jim, Rhodes David G, Burgess Diane J

机构信息

School of Pharmacy, University of Connecticut, Storrs, Connecticut 06269, USA.

出版信息

J Colloid Interface Sci. 2002 Jun 15;250(2):444-50. doi: 10.1006/jcis.2002.8365.

Abstract

The objective of this study was to investigate the significance of inner and outer phase pressure, as well as interfacial film strength on W/O/W multiple emulsion stability using microscopy and long-term stability tests. It was observed that immediately upon applying a coverslip to samples the multiple droplets deformed and there was coalescence of the inner aqueous droplets. Under certain conditions (such as lipophilic surfactant concentration and internal phase osmotic pressure) the destabilized multiple emulsions formed unique metastable structures that had a "dimpled" appearance. The formation of these metastable structures correlated with the real-time instability of the W/O/W multiple emulsions investigated. Multiple emulsion stability also correlated with the interfacial film strength (measured by interfacial elasticity) of the hydrophobic surfactant at the mineral oil/external continuous aqueous phase interface. The formation of the metastable dimpled structures and the long-term stability of the multiple emulsions were dependent on the osmotic pressure of the inner droplets and the Laplace curvature pressure as described by the Walstra Equation (P. Walstra, "Encyclopedia of Emulsion Technology" (P. Becher, Ed.), Vol. 4. Dekker, New York, 1996). It appears that the effect of coverslip pressure on multiple emulsions may be useful as an accelerated stability testing method or for initial formulation screening.

摘要

本研究的目的是利用显微镜和长期稳定性测试,研究内相和外相压力以及界面膜强度对W/O/W多重乳液稳定性的重要性。观察到,在向样品盖上盖玻片后,多重液滴立即变形,内部水滴发生聚结。在某些条件下(如亲脂性表面活性剂浓度和内相渗透压),不稳定的多重乳液形成了具有“凹陷”外观的独特亚稳结构。这些亚稳结构的形成与所研究的W/O/W多重乳液的实时不稳定性相关。多重乳液稳定性还与矿物油/外部连续水相界面处疏水性表面活性剂的界面膜强度(通过界面弹性测量)相关。亚稳凹陷结构的形成和多重乳液的长期稳定性取决于内相液滴的渗透压和Walstra方程(P. Walstra,《乳液技术百科全书》(P. Becher编),第4卷。Dekker,纽约,1996年)所描述的拉普拉斯曲率压力。盖玻片压力对多重乳液的影响似乎可用作加速稳定性测试方法或用于初始配方筛选。

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