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Sonochemical Coating of Textiles with Hybrid ZnO/Chitosan Antimicrobial Nanoparticles

机译:ZnO /壳聚糖混合抗菌纳米粒子对纺织品的声化学涂层

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Textiles are good substrates for growth of microorganisms especially under moisture and temperature conditions found in hospitals. Microbial shedding from the body occurs continuously at contact of the patient with textile materials used in medical practices, contributing to the occurrence of hospital acquired infections. Thus, the use of efficient antimicrobial textiles is necessary to prevent the transfer of pathogens and the infection incidence. In this work, hybrid antimicrobial coatings were generated on cotton fabrics by means of a one-step simultaneous sonochemical deposition of ZnO nanoparticles (NPs) and chitosan. The process was further optimized in terms of reagents concentration and processing time in order to improve the antibacterial properties of the fabric and ensure their biocompatibility. The highest antibacterial activity of the fabrics against two medically relevant bacterial species was achieved in a 30 min sonochemical coating process using 2 mM ZnO NPs suspension. When chitosan was simultaneously deposited with the same amount of ZnO, the obtained hybrid NPs coating displayed higher by 48 and 17% antibacterial activity against Staphylococcus aureus and Escherichia coli, respectively. The presence of biopolymer also improved the durability of the antimicrobial effect of the coatings by 21% for Staphylococcus aureus and 40% for Escherichia coli, evaluated after applying multiple washing cycles at hospital laundering regimes. Finally, 87% biocompatibility improvement supported by fibroblast viability was observed for the hybrid ZnO/chitosan coating compared to the steady decrease of cells viability over one week in contact with the fabrics coated with ZnO alone.
机译:纺织品是微生物生长的良好基质,尤其是在医院中发现的潮湿和高温条件下。当患者与医疗实践中使用的纺织材料接触时,微生物不断从体内脱落,这导致了医院获得性感染的发生。因此,必须使用有效的抗菌纺织品来防止病原体转移和感染发生。在这项工作中,通过一步一步的同时声化学沉积ZnO纳米粒子(NPs)和壳聚糖,在棉织物上产生了混合抗菌涂层。在试剂浓度和处理时间方面进一步优化了该过程,以改善织物的抗菌性能并确保其生物相容性。使用2 mM ZnO NPs悬浮液,在30分钟的声化学涂层过程中,实现了织物对两种医学上相关细菌物种的最高抗菌活性。当用相同量的ZnO同时沉积壳聚糖时,获得的杂化NPs涂层分别对金黄色葡萄球菌和大肠杆菌显示出48%和17%的较高抗菌活性。在医院洗涤方案中多次洗涤后评估,生物聚合物的存在还使涂料的抗微生物作用的持久性对金黄色葡萄球菌提高了21%,对大肠杆菌提高了40%。最后,与单用ZnO包被的织物接触,在一周内细胞活力的稳定下降相比,混合ZnO /壳聚糖涂层观察到由成纤维细胞活力支持的87%的生物相容性提高。

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