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首页> 外文期刊>Drug development and industrial pharmacy >Solubility of core materials in aqueous polymeric solution effect on microencapsulation of curcumin.
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Solubility of core materials in aqueous polymeric solution effect on microencapsulation of curcumin.

机译:核心材料在聚合物水溶液中的溶解度对姜黄素的微囊化有影响。

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Curcumin, the main active constituent of turmeric herb (Curcuma longa L.) have been reported to possess many medicinal values. The application of curcumin in dermatological preparations is limited by their intense yellow color property, which stains the fabric and skin. The objectives of this study were to reduce the color staining effect and enhance the stability of curcumin via microencapsulation using gelatin simple coacervation method. As for curcumin, ethanol and acetone were used as coacervating solvents. Curcumin was dispersed in ethanol while dissolved in acetone. Irrespective of the types of coacervating solvents used, microencapsulation resolved the color-staining problem and enhanced the flow properties and photo-stability of curcumin. Nevertheless, it was found that more spherical curcumin microcapsules with higher yield, higher curcumin loading, and higher entrapment efficiency were obtained with acetone than ethanol. The in vitro release of curcumin after microencapsulation was slightly prolonged. Further evaluation of the effects of solubility of core materials in coacervating solvent or polymeric aqueous solution using six different drug compounds, namely, ketoconazole, ketoprofen, magnesium stearate, pseudoephedrine HCl, diclofenac sodium, and paracetamol, suggested that the solubility of core materials in aqueous polymeric solution determined the successful formation of microcapsules. Microcapsules could only be formed if the core materials were not dissolved in the aqueous polymeric solution while the core materials could either be dissolved or dispersed in the coacervating solvent. In summary, microencapsulation not only circumvents the color-staining problem but also improved the stability and flowability of curcumin. The solubility of core material in aqueous polymeric solution plays a pivotal role in determining the successful formation of microcapsules.
机译:姜黄素是姜黄草药的主要活性成分(姜黄),具有许多药用价值。姜黄素在皮肤病学制剂中的应用受到其强烈的黄色特性(会弄脏织物和皮肤)的限制。这项研究的目的是通过使用明胶简单凝聚法进行微囊包封来降低姜黄素的着色效果并增强其稳定性。至于姜黄素,乙醇和丙酮用作凝聚溶剂。将姜黄素分散在乙醇中,同时溶解在丙酮中。不管所用的凝聚溶剂的类型如何,微囊化都能解决色度问题,并提高姜黄素的流动性和光稳定性。然而,发现与乙醇相比,丙酮可获得更多球形的姜黄素微胶囊,具有更高的产率,更高的姜黄素载量和更高的包封效率。微囊化后姜黄素的体外释放略微延长。使用六种不同的药物化合物(酮康唑,酮洛芬,硬脂酸镁,盐酸伪麻黄碱,双氯芬酸钠和对乙酰氨基酚)进一步评估核心材料在凝聚溶剂或聚合物水溶液中的溶解度影响,表明核心材料在水溶液中的溶解度聚合物溶液决定了微胶囊的成功形成。仅当核心材料不溶解在聚合物水溶液中而核心材料可以溶解或分散在凝聚溶剂中时,才能形成微胶囊。总而言之,微囊包封不仅可以避免色差问题,而且可以改善姜黄素的稳定性和流动性。核心材料在聚合物水溶液中的溶解度在确定微胶囊的成功形成中起着关键作用。

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