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Formulation and Evaluation of Microwave-Modified Chitosan-Curcumin Nanoparticles—A Promising Nanomaterials Platform for Skin Tissue Regeneration Applications Following Burn Wounds

机译:微波改性的壳聚糖 - 姜黄素纳米颗粒的配制和评价 - 一种燃烧伤口后皮肤组织再生应用的有希望的纳米材料平台

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摘要

Improved physicochemical properties of chitosan-curcumin nanoparticulate carriers using microwave technology for skin burn wound application are reported. The microwave modified low molecular weight chitosan variant was used for nanoparticle formulation by ionic gelation method nanoparticles analyzed for their physicochemical properties. The antimicrobial activity against Staphylococcus aureus and Pseudomonas aeruginosa cultures, cytotoxicity and cell migration using human dermal fibroblasts—an adult cell line—were studied. The microwave modified chitosan variant had significantly reduced molecular weight, increased degree of deacetylation and decreased specific viscosity. The nanoparticles were nano-sized with high positive charge and good dispersibility with entrapment efficiency and drug content in between 99% and 100%, demonstrating almost no drug loss. Drug release was found to be sustained following Fickian the diffusion mechanism for drug release with higher cumulative drug release observed for formulation (F)2. The microwave treatment does not render a destructive effect on the chitosan molecule with the drug embedded in the core of nanoparticles. The optimized formulation precluded selected bacterial strain colonization, exerted no cytotoxic effect, and promoted cell migration within 24 h post application in comparison to blank and/or control application. Microwave modified low molecular weight chitosan-curcumin nanoparticles hold potential in delivery of curcumin into the skin to effectively treat skin manifestations.
机译:据报道,利用微波技术改善了壳聚糖姜黄素纳米颗粒载体的壳聚糖型纳米颗粒载体的理化性质。微波改性低分子量壳聚糖变体用于通过离子凝胶化方法纳米颗粒进行纳米颗粒制剂,分析其物理化学性质。研究了使用人的皮肤成纤维细胞 - 一种成年细胞系 - 一种成年细胞系的对葡萄球菌和铜绿假毒素培养物,细胞毒性和细胞迁移的抗微生物活性。微波改性的壳聚糖变体显着降低了分子量,使脱乙酰化程度增加并降低了粘度。纳米颗粒以高阳性电荷和良好的分散性,含有滞留效率和药物含量为99%至100%,展示几乎没有药物损失。发现药物释放在Fickian之后持续用于药物释放的扩散机制,具有更高的累积药物释放,用于制剂(F)2。微波处理不会对含有纳米颗粒的核心的药物对壳聚糖分子产生破坏性影响。优化的制剂排除了选定的细菌菌株定植,不施加细胞毒性作用,并在24小时内促进细胞迁移,与空白和/或对照施用相比。微波改性低分子量壳聚糖 - 姜黄素纳米粒子占姜黄素进入皮肤的电位,以有效治疗皮肤表现。

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