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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Keratin-chitosan/n-ZnO nanocomposite hydrogel for antimicrobial treatment of burn wound healing: Characterization and biomedical application
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Keratin-chitosan/n-ZnO nanocomposite hydrogel for antimicrobial treatment of burn wound healing: Characterization and biomedical application

机译:Keratin-Chitosan / N- ZnO纳米复合水分用于烧伤伤口愈合的抗微生物治疗:表征和生物医学应用

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In the Present-day medicinally applied wound bandages have many drawbacks for, instance, rigidity, non porosity, low mechanical potency, also an affinity for bandages to stick onto the injury exterior; additionally, a greater part of the bandages did not secure bactericidal activity. Hydrogel derived injury bandages would be supportive to afford a chill feeling with a humidity atmosphere, in addition, to performing as an obstruction to bacteria. To overcome these drawbacks, we have fabricated porous keratin-chitosan/n-ZnO nanocomposite (KCBZNs) bandages via the inclusion of nano-ZnO into the keratin-chitosan hydrogel. The functional group and surface of as-fabricated bandages were characterized using Fourier transform infrared spectroscopy (FT-IR), X-ray diffractometry (XRD), and scanning electron microscopy with energy-dispersive X-ray spectroscopy (SEM-EDX) and transmission electron microscopy with selected area diffraction (TEM-SAD). Moreover, mechanical, swelling, bactericidal, bio-compatibility of nanocomposite was assessed to exhibit its efficacy for biological applications. The nanocomposite illustrated increased swelling, and bactericidal activity. Bio-compatibility of the nanocomposite has been investigated in normal human fibroblast cells. Also, the in vivo assessments in SD rats exposed that as-fabricated nanocomposite bandages increased the wound curing with assisted for quicker skin cell construction along with collagen development. Hence, the acquired information strongly supports to utilize of this nanocomposite hydrogels for burn wounds.
机译:在本今的药用施工伤口绷带中具有许多缺点,实例,刚性,非孔隙率,低机械效力,对绷带的亲和力粘在损伤外部;另外,绷带的更大部分没有确保杀菌活性。水凝胶衍生的伤害绷带将支持湿度气氛的寒意,此外,表现为对细菌的障碍。为了克服这些缺点,我们通过将纳米ZnO包含到角蛋白 - 壳聚糖水凝胶中制造了多孔角蛋白 - 壳聚糖/ N- ZnO纳米复合材料(KCBZNS)绷带。使用傅里叶变换红外光谱(FT-IR),X射线衍射法(XRD),以及具有能量分散X射线光谱(SEM-EDX)和变速器的扫描电子显微镜(SEM-EDX)和传输的官能团和制造绷带的功能组和表面的特征具有选定区域衍射(TEM-SAD)的电子显微镜。此外,评估纳米复合材料的机械,肿胀,杀菌,生物相容性,表现出其对生物应用的功效。纳米复合材料所示的膨胀和杀菌活性增加。在正常人体成纤维细胞中研究了纳米复合材料的生物相容性。此外,SD大鼠的体内评估暴露于制造的纳米复合绷带增加伤口固化,辅助皮肤细胞构建更快地与胶原蛋白发育。因此,所获得的信息强烈支持利用该纳米复合物水凝胶用于燃烧伤口。

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