{"title":"开发为医用一次性口罩提供抗菌特性的技术。","authors":"Kristina Dubinskaitė, Vitalija Rubežienė, Audronė Sankauskaitė, Virginija Skurkytė-Papievienė","doi":"10.3390/polym16213005","DOIUrl":null,"url":null,"abstract":"<p><p>Wearing masks to protect against communicable diseases is an effective tool used in many countries affected by the COVID-19 pandemic. The antibacterial activity, antibacterial efficiency, microbial purity, and breathability properties of medical disposable masks are very important. Ag is most commonly applied to antimicrobial textiles. In this work, three antimicrobial additives were used. Four compositions of the binders with antimicrobial additives were prepared and applied to one-layer non-woven PP material. The influence of the binder antimicrobial polymer coating on the breathability and antibacterial activity of the non-woven PP material was evaluated. The results show that the composition of the polyacrylic acid binder had the least effect on their breathability and samples with the silver chloride formulation showed the best antimicrobial response. Based on the microbiological and air permeability results of the samples of the one-layer non-woven material with coating, the samples of two layers and three layers of the medical mask model were prepared. Microbiological studies have shown that a three-layered medical mask model with silver chloride composition in the middle layer, on both sides of the model, has antibacterial efficiency against three pathogens (<i>E. Coli</i>, <i>K. Pneumoniae</i>, and <i>S. Aureus</i>). The performance of this medical mask model has been found to meet the requirements for type I medical masks according to the EN 14863 standard. 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Microbiological studies have shown that a three-layered medical mask model with silver chloride composition in the middle layer, on both sides of the model, has antibacterial efficiency against three pathogens (<i>E. Coli</i>, <i>K. Pneumoniae</i>, and <i>S. Aureus</i>). The performance of this medical mask model has been found to meet the requirements for type I medical masks according to the EN 14863 standard. 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引用次数: 0
摘要
戴口罩预防传染病是许多受 COVID-19 大流行影响的国家使用的有效工具。一次性医用口罩的抗菌活性、抗菌效率、微生物纯度和透气性能非常重要。抗菌纺织品最常用的是 Ag。在这项工作中,使用了三种抗菌添加剂。制备了四种含有抗菌添加剂的粘合剂,并将其应用于单层无纺聚丙烯材料。评估了粘合剂抗菌聚合物涂层对无纺 PP 材料透气性和抗菌活性的影响。结果表明,聚丙烯酸粘合剂的成分对透气性的影响最小,而使用氯化银配方的样品显示出最佳的抗菌效果。根据带涂层的单层无纺材料样品的微生物学和透气性结果,制备了两层和三层医用口罩模型样品。微生物学研究表明,中间层两侧均含有氯化银成分的三层医用口罩模型对三种病原体(大肠杆菌、肺炎双球菌和金黄色葡萄球菌)具有抗菌效果。根据 EN 14863 标准,该医用口罩模型的性能符合 I 类医用口罩的要求。研究表明,该款口罩的微生物纯度为 CFU/g < 3。
Development of Technology for Providing Antimicrobial Properties to Medical Disposable Masks.
Wearing masks to protect against communicable diseases is an effective tool used in many countries affected by the COVID-19 pandemic. The antibacterial activity, antibacterial efficiency, microbial purity, and breathability properties of medical disposable masks are very important. Ag is most commonly applied to antimicrobial textiles. In this work, three antimicrobial additives were used. Four compositions of the binders with antimicrobial additives were prepared and applied to one-layer non-woven PP material. The influence of the binder antimicrobial polymer coating on the breathability and antibacterial activity of the non-woven PP material was evaluated. The results show that the composition of the polyacrylic acid binder had the least effect on their breathability and samples with the silver chloride formulation showed the best antimicrobial response. Based on the microbiological and air permeability results of the samples of the one-layer non-woven material with coating, the samples of two layers and three layers of the medical mask model were prepared. Microbiological studies have shown that a three-layered medical mask model with silver chloride composition in the middle layer, on both sides of the model, has antibacterial efficiency against three pathogens (E. Coli, K. Pneumoniae, and S. Aureus). The performance of this medical mask model has been found to meet the requirements for type I medical masks according to the EN 14863 standard. Studies have shown that the microbial purity of the mask model is CFU/g < 3.
期刊介绍:
Polymers (ISSN 2073-4360) is an international, open access journal of polymer science. It publishes research papers, short communications and review papers. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Polymers provides an interdisciplinary forum for publishing papers which advance the fields of (i) polymerization methods, (ii) theory, simulation, and modeling, (iii) understanding of new physical phenomena, (iv) advances in characterization techniques, and (v) harnessing of self-assembly and biological strategies for producing complex multifunctional structures.