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Microemulsion System with Improved Loading of Piroxicam: A Study of Microstructure

机译:具有改善吡罗昔康负荷的微乳液体系:微结构研究

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摘要

Formulation of a new oil-in-water (o/w) microemulsion composed of castor oil/Tween 80/ethanol/phosphate buffer for enhancing the loading capacity of an anti-inflammatory drug piroxicam has been accomplished. The pseudo-ternary phase diagram has been delineated at constant surfactant/cosurfactant ratio (1:2). The internal structure of so created four-component system was elucidated by means of an analysis of isotropic area magnitudes in the phase diagram. Conductivity (σ), kinematic viscosity (kη), and surface tension (γ) studies with the variation in Φw (weight fraction of aqueous phase) show the occurrence of structural changes from water-in-oil (w/o) microemulsion to oil-in-water (o/w). Along with the solubility and partition studies of piroxicam in microemulsion components, the changes in the microstructure of the microemulsion after incorporation of drug have been evaluated using pH, σ, γ, kη, and density studies. Piroxicam, a poorly water-soluble drug displayed high solubility (1.0%) in an optimum microemulsion formulation using ethanol (55.0%), Tween 80 (26.5%), castor oil (7.5%), and phosphate buffer (11.0%). The results have shown that the microemulsion remained stable after the incorporation of piroxicam. Fluorescence spectra analysis taking pyrene as fluorescent probe was performed, and the results showed that pyrene was completely solubilized in the oil phases of the bicontinuous microemulsions. The fluorescence spectrum of the model drug piroxicam was used to probe the intramicellar region of nonionic microemulsion. The results showed that the piroxicam was localized in the interfacial film of microemulsion systems more deeply in the palisade layer with ethanol as the cosurfactant.
机译:已经完成了由蓖麻油/吐温80 /乙醇/磷酸盐缓冲液组成的新型水包油(o / w)微乳液的配制,以增强抗炎药吡罗昔康的负载能力。假三元相图以恒定的表面活性剂/助表面活性剂比率(1:2)描绘。通过在相图中分析各向同性面积大小,阐明了如此创建的四组分系统的内部结构。电导率(σ),运动粘度(kη)和表面张力(γ)随Φw(水相重量分数)变化的研究表明,发生了从油包水(w / o)微乳液到油的结构变化-水上(o / w)。除了吡罗昔康在微乳成分中的溶解度和分配研究以外,还使用pH,σ,γ,kη和密度研究评估了掺入药物后微乳的微观结构变化。吡罗昔康是一种难溶于水的药物,在使用乙醇(55.0%),吐温80(26.5%),蓖麻油(7.5%)和磷酸盐缓冲液(11.0%)的最佳微乳液配方中显示出高溶解度(1.0%)。结果表明,掺入吡罗昔康后微乳液保持稳定。进行了以pyr为荧光探针的荧光光谱分析,结果表明pyr在双连续微乳液的油相中完全溶解。模型药物吡罗昔康的荧光光谱用于探测非离子微乳液的胶束内区域。结果表明,吡罗昔康以乙醇为辅助表面活性剂更深地定位在微乳剂体系的界面膜中的栅栏层中。

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