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首页> 外文期刊>Food research international >Modified curcumin with hyaluronic acid: Combination of pro-drug and nano-micelle strategy to address the curcumin challenge
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Modified curcumin with hyaluronic acid: Combination of pro-drug and nano-micelle strategy to address the curcumin challenge

机译:透明质酸改性姜黄素:前药和纳米胶束策略的结合,以解决姜黄素的挑战

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摘要

Curcumin is well known for its pleiotropic activities such as anti-oxidant, anti-inflammatory and anti-tumor properties. But curcumin has extremely low solubility in aqueous medium which limits its potential applications in food and pharmaceutical industries. In this study, the combined pro-drug and nano-micelle strategy was attempted to address the limitation. We modified curcumin with hyaluronic acid (HA) based on the understanding that the hydrophilic polymer facilitates dissolution of curcumin in water. The amphiphilic curcumin derivative self-assembled into nano-micelle in water with the size around 100 nm and low PDI (<0.3) which indicated that it had narrow size distribution. FT-IR spectrum verified that curcumin was successfully conjugated onto the backbone of HA. On the other hand, curcumin was also loaded into the hydrophobic core of the nano-micelle which worked as carrier for it. Using this combined strategy, the water solubility of curcutnin was increased more than 1100 times compared to the pure curcumin. The morphology characteristic of curcumin loaded nano-micelle was examined by TEM which confirmed that curcumin loaded nano-micelle has spherical shape and unified size distribution. Meanwhile, the antioxidant activities of the nano-micelle and the curcumin loaded nano-micelle were examined by DPPH radical scavenging assay and reducing power assay the results of which indicated that the antioxidant potentials were significantly enhanced. The pro-drug and nano-micelle combined method reported here may be promising to address the curcumin challenge such as low water solubility and low availability. (C) 2015 Elsevier Ltd. All rights reserved.
机译:姜黄素以其多效活性(例如抗氧化,抗炎和抗肿瘤特性)而闻名。但是姜黄素在水性介质中的溶解度极低,这限制了其在食品和制药行业中的潜在应用。在这项研究中,尝试结合前药和纳米胶束策略来解决这一局限性。我们基于透明质酸(HA)修饰姜黄素的认识是,亲水性聚合物可促进姜黄素在水中的溶解。两亲姜黄素衍生物在水中自组装成纳米胶束,尺寸约为100 nm,PDI低(<0.3),表明其粒径分布较窄。 FT-IR光谱证实姜黄素已成功结合到HA的骨架上。另一方面,姜黄素也被装载到纳米胶束的疏水核中,该疏水胶核充当其载体。使用这种联合策略,姜黄素的水溶性比纯姜黄素提高了1100倍以上。透射电镜观察了姜黄素负载的纳米胶束的形貌特征,证实了姜黄素负载的纳米胶束具有球形和统一的尺寸分布。同时,通过DPPH自由基清除法和还原力法检测了纳米胶束和姜黄素负载的纳米胶束的抗氧化活性,结果表明,其抗氧化能力明显增强。本文报道的前药和纳米胶束的结合方法可能有望解决姜黄素的挑战,例如低水溶性和低利用率。 (C)2015 Elsevier Ltd.保留所有权利。

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