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(Cationic plus nonionic) mixed surfactant aggregates for solubilisation of curcumin

机译:(阳离子加非离子)混合表面活性剂聚集体,用于姜黄素增溶

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Curcumin is a potential drug for variety of diseases. Major limitations of curcumin are low water solubility, rapid hydrolytic degradation in alkaline medium and poor bioavailability. To overcome these limitations, highly potential mixed micellar system has been prepared. In order to reduce inter ionic repulsion and precipitation of surfactants, (cationic + non-ionic) mixed system have been chosen that directly influence its applicability. Hydrophobic chain of non-ionic surfactant significantly influences the cmc of mixed surfactant system as indicated by fluorescence and conductivity data. UV-visible spectroscopy analyses show that solubility, stability and antioxidant property of the curcumin is remarkably improved depending on cmc and aggregation number (N-agg) of mixed surfactants, where N-agg plays crucial role. Generally, curcumin undergoes complete degradation in slight basic medium, but stability has been maintained up to 8 h at pH-13 using formulated mixed micelles (only (20 to 25)% degraded). Location of curcumin which is monitored using emission spectroscopy, fluorescence quenching and H-1 NMR spectroscopy techniques play the most important role. Observed results show that the major population of curcumin is located at the polar region and some are in hydrophobic region of the mixed micelles. To ensure the effect of mixed surfactants and curcumin loaded mixed surfactants on DNA, the interaction parameter indicates non-interclative interactions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:姜黄素是治疗多种疾病的潜在药物。姜黄素的主要局限性是低的水溶性,在碱性介质中的快速水解降解和较差的生物利用度。为了克服这些限制,已经制备了高度潜在的混合胶束系统。为了减少离子间的排斥和表面活性剂的沉淀,选择了直接影响其适用性的(阳离子+非离子)混合体系。如荧光和电导率数据所示,非离子表面活性剂的疏水链会显着影响混合表面活性剂系统的cmc。紫外可见光谱分析表明,姜黄素的溶解度,稳定性和抗氧化性能显着提高,这取决于混合表面活性剂的cmc和聚集数(N-agg),其中N-agg起着至关重要的作用。通常,姜黄素在轻微的碱性介质中会完全降解,但是使用配制的混合胶束(仅降解(20至25)%),在pH-13下可维持长达8小时的稳定性。使用发射光谱,荧光猝灭和H-1 NMR光谱技术监测的姜黄素的位置起着最重要的作用。观察结果表明,姜黄素的主要种群位于混合胶束的极性区域,一些位于疏水区域。为确保混合表面活性剂和姜黄素负载的混合表面活性剂对DNA的影响,相互作用参数指示非相互作用。 (C)2015 Elsevier Ltd.保留所有权利。

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