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Colloidal systems composed of poloxamer 407, different acrylic acid derivatives and curcuminoids: Optimization of preparation method, type of bioadhesive polymer and storage conditions

机译:胶体体系由泊洛沙姆407,不同的丙烯酸衍生物和姜黄素组成:制备方法的优化,生物粘性聚合物的类型和储存条件

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摘要

Studies were performed to investigate the physicochemical properties of polymeric systems containing poloxamer 407 and acrylic acid derivatives (Carbopol 974P? or polycarbophil) for delivery of curcuminoids. To optimise the preparation method, the active and passive incorporation methodologies were investigated and the storage temperatures (5 and 25?°C) were evaluated by spectroscopic analysis. Colloidal systems containing Carbopol 974P? promoted stronger interactions and better structuring between curcumin and the polymeric micelles and higher temperatures showed higher anisotropy values. Kinetic studies showed that curcumin was quickly incorporated in the polymeric micelles. Location and storage studies showed that curcumin was in a more internalised portion of hydrophobic core of poloxamer 407 micelles and could be stable even after three months of preparation, when the formulations were composed of Carbopol 974P? and stored at 25?°C. In this sense, the active incorporation was chosen as the optimised method for preparation of curcuminoids-formulations for future pharmaceutical applications.
机译:进行研究以研究含有泊洛沙姆407和丙烯酸衍生物(Carbopol 974Pα或多氨基粒细胞)的聚合物系统的物理化学性质,用于递送姜黄素。为了优化制备方法,研究了主动和被动掺入方法,通过光谱分析评估了储存温度(5和25℃)。包含Carbopol 974P的胶体系统?促进更强的相互作用,并且在姜黄素和聚合物胶束之间更好地构建,并且较高的温度显示出更高的各向异性值。动力学研究表明,姜黄素被快速掺入聚合物胶束中。位置和储存研究表明,姜黄素在泊洛沙姆407胶束的疏水核的疏水核中,即使在三个月的制备后,也可以稳定,当制剂由Carbopol 974P组成时?并储存在25℃。从这个意义上讲,选择活性掺入作为制备未来药物应用的姜黄素制剂的优化方法。

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