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用于肠胃外给药的基于卵磷脂的水包油微乳剂:伪三元相图、特性及毒性研究

Lecithin-based oil-in-water microemulsions for parenteral use: pseudoternary phase diagrams, characterization and toxicity studies.

作者信息

Moreno Marco Antonio, Ballesteros M Paloma, Frutos Paloma

机构信息

Department of Pharmacy and Pharmaceutical Technology, Faculty of Pharmacy, Complutense University of Madrid, Pza. de Ramón y Cajal s/n., 28040-Madrid, Spain.

出版信息

J Pharm Sci. 2003 Jul;92(7):1428-37. doi: 10.1002/jps.10412.

Abstract

Pseudoternary phase diagrams have been constructed to evaluate the phase behavior of systems containing water/lecithin/polysorbate 80/isopropyl myristate at different polysorbate 80:lecithin weight ratios (K(m)). Oil-in-water microemulsion regions were accurately determined and the influence of the K(m) on the area of existence of such disperse systems was also examined. Viscosity studies as well as particle size analysis by dynamic light scattering were carried out on oil-water microemulsions, and the influence of the oil phase content, the total amount of surfactants and K(m) on the rheological behavior, viscosity, and droplet size of such disperse systems was evaluated. All systems studied showed a water-rich isotrope region (oil-in-water microemulsion area), that was seen to be highly dependent upon the surfactant/cosurfactant weight ratio. Most of the microemulsions analyzed showed a non-Newtonian rheological behavior and both, droplet size, and viscosity of the disperse systems, were found to be much more influenced by the total content of oil phase and surfactants present in the microemulsion than by the K(m). The selected system underwent both stability and in vivo acute toxicity studies, and seemed to be highly stable, even at extreme conditions, and very low toxic according to the results obtained.

摘要

已构建伪三元相图,以评估在不同聚山梨醇酯80:卵磷脂重量比(K(m))下,含有水/卵磷脂/聚山梨醇酯80/肉豆蔻酸异丙酯体系的相行为。准确测定了水包油微乳液区域,并研究了K(m)对这类分散体系存在区域面积的影响。对油水微乳液进行了粘度研究以及通过动态光散射进行粒度分析,并评估了油相含量、表面活性剂总量和K(m)对这类分散体系流变行为、粘度和液滴尺寸的影响。所有研究的体系均显示出富水各向同性区域(水包油微乳液区域),该区域高度依赖于表面活性剂/助表面活性剂重量比。大多数分析的微乳液表现出非牛顿流变行为,并且发现分散体系的液滴尺寸和粘度受微乳液中油相和表面活性剂总含量的影响远大于受K(m)的影响。对所选体系进行了稳定性和体内急性毒性研究,根据所得结果,该体系即使在极端条件下似乎也高度稳定且毒性极低。

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