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Development of a Controlled Release of Salicylic Acid Loaded Stearic Acid-Oleic Acid Nanoparticles in Cream for Topical Delivery

机译:局部递送的乳膏中的水杨酸加载硬脂酸 - 油酸纳米粒子的控制释放的研制

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Lipid nanoparticles are colloidal carrier systems that have extensively been investigated for controlled drug delivery, cosmetic and pharmaceutical applications. In this work, a cost effective stearic acid-oleic acid nanoparticles (SONs) with high loading of salicylic acid, was prepared by melt emulsification method combined with ultrasonication technique. The physicochemical properties, thermal analysis and encapsulation efficiency of SONs were studied. TEM micrographs revealed that incorporation of oleic acid induces the formation of elongated spherical particles. This observation is in agreement with particle size analysis which also showed that the mean particle size of SONs varied with the amount of OA in the mixture but with no effect on their zeta potential values. Differential scanning calorimetry analysis showed that the SONs prepared in this method have lower crystallinity as compared to pure stearic acid. Different amount of oleic acid incorporated gave different degree of perturbation to the crystalline matrix of SONs and hence resulted in lower degrees of crystallinity, thereby improving their encapsulation efficiencies. The optimized SON was further incorporated in cream and itsin vitrorelease study showed a gradual release for 24 hours, denoting the incorporation of salicylic acid in solid matrix of SON and prolonging thein vitrorelease.
机译:脂质纳米颗粒是胶体载体系统,其已经广泛地研究了受控药物递送,化妆品和药物应用。在这项工作中,通过熔融乳化方法与超声波技术合并,制备具有高负载水杨酸的成本效益的硬脂酸 - 油酸纳米颗粒(SONS)。研究了儿子的物理化学性质,热分析和封装效率。 TEM显微照片显示油酸掺入诱导细长球形颗粒的形成。该观察结果与粒度分析一致,也表明SONS的平均粒度随混合物中的OA的量而变化,但对其Zeta电位值没有影响。差分扫描量热法分析显示,与纯硬脂酸相比,该方法中制备的儿子具有较低的结晶度。掺入的不同量的油酸对儿子的结晶基质具有不同程度的扰动,因此导致较低的结晶度,从而提高它们的包封效率。优化的儿子进一步掺入奶油中,其培养素酶促研究表明24小时逐渐释放,表示在儿子固体基质中掺入水杨酸并延长素培养素酶。

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