首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >An overview on antimicrobial and wound healing properties of ZnO nanobiofilms, hydrogels, and bionanocomposites based on cellulose, chitosan, and alginate polymers
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An overview on antimicrobial and wound healing properties of ZnO nanobiofilms, hydrogels, and bionanocomposites based on cellulose, chitosan, and alginate polymers

机译:基于纤维素,壳聚糖和藻酸盐聚合物的ZnO Nanobiofilms,水凝胶和脱硫复合材料的抗微生物和伤口愈合性能概述

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摘要

Release of Zn2+ ions from zinc oxide nanoparticles (ZnO NPs) is a major mechanism for oligodynamic activities of these metal oxide NPs against eukaryotic and prokaryotic microorganisms. In addition to this mechanism, ZnO NPs can form reactive oxygen species (ROSs) resulted from electron-hole formation under certain light wavelength. These properties with suitable biocompatibility and biodegradability of ZnO NPs compared to other metal NPs have caused higher applications of these nanomaterials in therapeutic and cosmetic fields. Recently, natural polymers including cellulose, chitosan, and alginate polymers have gained more attention as safe and cost-effective scaffold for wound healing. Both ZnO NPs and these polymers have not been able to satisfy related patients. In this way, the coupling of these materials and nanomaterials as nanocomposites (NCs) is an alternative way to increase the mechanical and antibacterial properties of wound-healing tissue scaffolds. Controllable release of Zn2+ ions in physiological medium should be considered as an indispensable factor to obtain appropriate industrial formulation. Therefore, in this review, attempts were made to highlight particularly important antibacterial results of these NCs in recent investigations.
机译:来自氧化锌纳米颗粒(ZnO NPS)的Zn2 +离子是这些金属氧化物NP对真核和原核微生物的低实际动力活性的主要机制。除了该机制之外,ZnO NPS可以在某些光波长下由电子孔形成产生反应性氧物质(罗斯)。与其他金属NPS相比,这些性能具有适当的生物相容性和ZnO NPS的生物降解性,使得这些纳米材料在治疗和化妆品领域的应用更高。最近,包括纤维素,壳聚糖和海藻酸盐聚合物在内的天然聚合物在伤口愈合的安全性和经济高效的支架上获得了更多的关注。 ZnO NPS和这些聚合物均未能够满足相关患者。以这种方式,这些材料和纳米材料作为纳米复合材料(NCS)的偶联是增加伤口愈合组织支架的机械和抗菌性能的替代方法。生理培养基中的Zn2 +离子的可控释放应被认为是获得适当的工业制剂的不可或缺的因素。因此,在本综述中,在最近的调查中,尝试突出这些NCS的特别重要的抗菌结果。

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