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首页> 外文期刊>Materials science & engineering >Exploring recent developments to improve antioxidant, anti-inflammatory and antimicrobial efficacy of curcumin: A review of new trends and future perspectives
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Exploring recent developments to improve antioxidant, anti-inflammatory and antimicrobial efficacy of curcumin: A review of new trends and future perspectives

机译:探索改善姜黄素抗氧化,抗炎和抗菌功效的最新进展:新趋势和未来观点的回顾

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Curcumin derivatives have been well-documented due to their natural antioxidant, antimicrobial and anti-in-flammatory activities. Curcuminoids have also gained widespread recognition due to their wide range of other activities which include anti-infective, anti-mutagenic, anticancer, anti-coagulant, antiarthrititc, and wound healing potential. Despite of having a wide range of activities, the inherent physicochemical characteristics (poor water solubility, low bioavailability, chemical instability, photodegradation, rapid metabolism and short half-life) of curcumin derivatives limit their pharmaceutical significance. Aiming to overcome these pharmaceutical issues and improving therapeutic efficacy of curcuminoids, newer strategies have been attempted in recent years. These advanced techniques include polymeric nanoparticles, nanocomposite hydrogels, nanovesicles, nanofibers, nanohybrid scaffolds, nanoconjugates, nanostructured lipid carriers (NLCs), nanoemulsion, polymeric micelles and polymeric blend films. Incorporation of curcumin in these delivery systems has shown improved solubility, transmembrane permeability, long-term stability, improved bioavailability, longer plasma half-life, target-specific delivery, and upgraded therapeutic efficacy. In this review, a range of in vitro and in vivo studies have been critically discussed to explore the pharmaceutical significance and therapeutic viability of the advanced delivery systems to improve antioxidant, anti-inflammatory and antimicrobial efficacies of curcumin and its derivatives.
机译:姜黄素衍生物由于其天然的抗氧化剂,抗菌剂和抗炎活性而得到了充分的证明。姜黄素还因其广泛的其他活性而获得广泛认可,这些活性包括抗感染,抗诱变,抗癌,抗凝血,抗关节炎和伤口愈合潜力。尽管姜黄素衍生物具有广泛的活性,但其固有的理化特性(水溶性差,生物利用度低,化学不稳定,光降解,快速代谢和半衰期短)限制了它们的药学意义。为了克服这些药学问题并提高姜黄素的治疗功效,近年来已尝试了新的策略。这些先进技术包括聚合物纳米颗粒,纳米复合水凝胶,纳米囊泡,纳米纤维,纳米杂化支架,纳米共轭物,纳米结构脂质载体(NLC),纳米乳液,聚合物胶束和聚合物共混膜。在这些递送系统中掺入姜黄素显示出改善的溶解度,跨膜渗透性,长期稳定性,改善的生物利用度,更长的血浆半衰期,靶标特异性递送和提高的治疗功效。在这篇综述中,已对一系列的体外和体内研究进行了严格讨论,以探索先进递药系统改善姜黄素及其衍生物的抗氧化,抗炎和抗菌功效的药物学意义和治疗可行性。

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