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首页> 外文期刊>Scientific reports. >Synergistic Antibacterial Activity and Wound Healing Properties of Selenium-Chitosan-Mupirocin Nanohybrid System: An in Vivo Study on Rat Diabetic Staphylococcus aureus Wound Infection Model
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Synergistic Antibacterial Activity and Wound Healing Properties of Selenium-Chitosan-Mupirocin Nanohybrid System: An in Vivo Study on Rat Diabetic Staphylococcus aureus Wound Infection Model

机译:硒 - 壳聚糖瘤纳米牛土系统的协同抗菌活性和伤口愈合性能:VIVO研究大鼠糖尿病葡萄球菌伤口感染模型

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The current study aimed to formulate Selenium-Chitosan-Mupirocin (M-SeNPs-CCH) complex. The nanohybrid system was prepared using chitosan-cetyltrimethylammonium bromide (CTAB)-based hydrogel (CCH) that entrapped mupirocin (M) and selenium nanoparticles (SeNPs). The in vitro studies were performed by evaluation of the antibacterial activity and toxicity on L929 mouse fibroblast cell line. The in vivo study was conducted on rat diabetic wound infection model that was infected by mupirocin-methicillin-resistant Staphylococcus aureus (MMRSA). The wounds were treated by M-SeNPs-CCH nanohybrid system with concentrations of M; 20?mg/ml, CCH; 2?mg/ml and SeNPs; 512?μg/ml in two times/day for 21 days. The therapeutic effect of this nanohybrid system was evaluated by monitoring wound contraction and histopathological changes. Evaluation of the average wound healing time showed a significant difference between the treatment and control groups (P≤0.05). The histopathological study indicated that the amount of wound healing was considerable in M-SeNPs-CCH nanohybrid system groups compared to the control and M groups. The M-SeNPs-CCH nanohybrid system formulated in this study was able to reduce 3-fold MIC of mupirocin with synergistic antibacterial activity as well as to play a significant role in wound contraction, angiogenesis, fibroblastosis, collagenesis, proliferation of hair follicle, and epidermis growth compared to the control group (P?≤?0.05). This research suggests that this nanohybrid system might be a development for the treatment of diabetic wound infection at mild stage.
机译:目前的研究旨在配制硒 - 壳聚糖-Mupirocin(M-SENPS-CCH)复合物。使用壳聚糖 - 十六烷基三甲基溴化铵(CTAB)的水凝胶(CCH)制备纳米酰上的系统,其捕获Mupirocin(M)和硒纳米粒子(SENP)。通过对L929小鼠成纤维细胞系上的抗菌活性和毒性评估进行体外研究。在Vivo研究中对大鼠糖尿病伤口感染模型进行了由Mupirocin-Methicilin抗性金黄色葡萄球菌(MMRSA)感染。伤口被M-SENPS-CCH纳米嗜系统处理,浓度为M; 20?mg / ml,CCH; 2?mg / ml和senps; 512?μg/ ml在两次/天21天。通过监测伤口收缩和组织病理学变化来评价该纳米冬小麦系统的治疗效果。对平均伤口愈合时间的评价显示治疗和对照组之间的显着差异(p≤0.05)。组织病理学研究表明,与对照和M组相比,M-SENP-CCH纳米嗜系统组中伤口愈合量相当大。在该研究中配制的M-SENP-CCH纳米含量系统能够通过协同抗菌活性减少三倍的MUPIROCIN MIC,以及在伤口收缩,血管生成,成纤维细胞,胶原蛋白,毛囊的增殖中发挥重要作用,以及毛囊的增殖表皮生长与对照组相比(P?≤≤0.05)。该研究表明,这种纳米冬小体系统可能是在轻度阶段治疗糖尿病伤口感染的发展。

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