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Formulation development and optimization using nanoemulsion technique: A technical note

机译:使用纳米乳液技术进行配方开发和优化:技术说明

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摘要

Ramipril nanoemulsion formulations were successfully prepared by the spontaneous emulsification method (titration method). Sefsol 218 was selected as the oil phase for the development of the formulation on the basis of the solubility studies. The differences in the droplet size between the formulations selected from the phase diagram was not statistically significant, although the polydispersity was at a minimum for the formulation containing 20% oil, 27% Smix, and 53% vol/vol aqueous phase. The droplet size was found to be 34.5 nm. Therefore, nanoemulsion, a multipurpose technology, can be exploited in drug delivery for poorly soluble drugs. Nanoemulsions have a higher solubilization capacity than simple micellar solutions, and their thermodynamic stability offers advantages over unstable dispersions, such as emulsions and suspensions, because they can be manufactured with little energy input (heat or mixing) and have a long shelf life. This technical note explains the basis for calculation and construction of pseudoternary phase diagrams and, most important, explains selection of the formulations from the phase diagrams to avoid metastable formulations having minimum surfactant concentration in the least possible time.
机译:通过自发乳化法(滴定法)成功制备了雷米普利纳米乳剂。基于溶解度研究,选择Sefsol 218作为油相以开发配方。尽管从含有20%油,27%Smix和53%vol / vol水相的制剂中,多分散性最小,但从相图中选择的制剂之间的液滴大小差异没有统计学意义。发现液滴尺寸为34.5nm。因此,纳米乳液是一种多用途技术,可用于药物输送中难溶性药物。纳米乳液比简单的胶束溶液具有更高的增溶能力,并且它们的热力学稳定性优于不稳定的分散体(如乳液和悬浮液),因为它们可以用很少的能量输入(加热或混合)制造,并且具有长的保存期限。该技术说明解释了计算和构造拟三元相图的基础,最重要的是,解释了从相图中选择配方的方法,以避免亚稳配方在尽可能短的时间内具有最小的表面活性剂浓度。

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