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Comparison of different water/oil microemulsions containing diclofenac sodium: Preparation characterization release rate and skin irritation studies

机译:含双氯芬酸钠的不同水/油微乳剂的比较:制备表征释放速率和皮肤刺激性研究

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摘要

The aim of the present study was to make a comparison of the in vitro release rate of diclofenac sodium (DS) from microemulsion (M) vehicles containing soybean oil, nonionic surfactants (Brij 58 and Span 80), and different alcohols (ethanol [E], isopropyl alcohol [I], and propanol [P]) as cosurfactant. The optimum surfactant:cosurfactant (S:CoS) weight ratios and microemulsion areas were detected by the aid of phase diagrams. Three microemulsion formulations were selected, and their physicochemical properties were examined for the pH, viscosity, and conductivity. According to the release rate of DS, M prepared with P showed the significantly highest flux value (0.059±0.018 mg/cm2/h) among all formulations (P<.05). The conductivity results showed that DS-loaded microemulsions have higher conductivity values (18.8–20.2 microsiemens/cm) than unloaded formulations (16.9–17.9 microsiemens/cm), and loading DS into the formulation had no negative effect on system stability. Moreover, viscosity measurements were examined as a function of shear rate, and Newtonian fluid characterization was observed for each microemulsion system. All formulations had appropriate observed pH values varying from 6.70 to 6.85 for topical application. A skin irritation study was performed with microemulsions on human volunteers, and no visible reaction was observed with any of the formulations. In conclusion, M prepared with P may be a more appropriate formulation than the other 2 formulations studied as drug carrier for topical application.
机译:本研究的目的是比较双氯芬酸钠从含大豆油,非离子表面活性剂(Brij 58和Span 80)和不同醇(乙醇[E]的微乳液(M)载体中的体外释放速率],异丙醇[I]和丙醇[P])作为辅助表面活性剂。借助相图可以确定最佳的表面活性剂:助表面活性剂(S:CoS)重量比和微乳化面积。选择了三种微乳液配方,并检查了其理化性质的pH,粘度和电导率。根据DS的释放速率,以P制备的M在所有配方中均表现出最高的通量值(0.059±0.018 mg / cm 2 / h)(P <.05)。电导率结果表明,加载DS的微乳液的电导率值(18.8-20.2 microsiemens / cm)比未加载的配方(16.9-17.9 microsiemens / cm)更高,将DS加载到配方中对系统稳定性没有负面影响。此外,检查粘度测量值与剪切速率的关系,并观察每种微乳液体系的牛顿流体特性。对于局部施用,所有制剂均具有在6.70至6.85之间变化的合适的观察到的pH值。用微乳对人类志愿者进行了皮肤刺激性研究,任何制剂均未观察到可见的反应。总之,用P制备的M可能是比其他两种作为局部用药载体研究的制剂更合适的制剂。

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