Southern Regional Research Center, Agricultural Research Service, United States Department of Agriculture, 1100 Robert E. Lee Blvd., New Orleans, LA 70124, USA.
Department of Surgery, Virginia Commonwealth University School of Medicine, Richmond, VA 23298, USA.
Int J Mol Sci. 2022 Mar 25;23(7):3598. doi: 10.3390/ijms23073598.
The development of affordable, effective, and environmentally friendly barrier fabrics is a current goal in antimicrobial textile development. The discovery of new routes to achieve non-toxic naturally occurring molecules with antimicrobial activity is of interest in the development of materials that promote wound healing, improve hygiene, and offer protection against nosocomial infection. Highly cleaned and sterile unbleached cotton has constituents that produce hydrogen peroxide at levels commensurate with those that favor cell signaling in wound healing. Here, we show the antimicrobial and antiviral properties of spunlaced griege cotton-containing nonwovens treated with ascorbic acid formulations. The mechanism of action occurs through the promotion of enhanced hydrogen peroxide activity. The levels of hydrogen peroxide activity afford antimicrobial activity against Gram-negative and Gram-positive bacteria and antiviral activity against MS2 bacteriophages. Spun-bond nonwoven unbleached cotton was treated with ascorbic acid using traditional pad-dry-cure methods. An assessment of antibacterial and antiviral activity against , , and MS2 bacteriophages with the AATCC 100 test method showed a 99.99% inhibitory activity. An approach to the covalent attachment of ascorbic to cellulose through citric acid crosslinking chemistry is also discussed. Thus, a simple, low-cost approach to antimicrobial and antiviral cotton-based nonwovens applicable to dressings, nosocomial barrier fabrics, and face masks can be adopted by combining ascorbic acid with spunlace greige cotton nonwoven fabrics.
开发经济实惠、有效且环保的阻隔织物是当前抗菌纺织品开发的目标。在开发促进伤口愈合、改善卫生和预防医院感染的材料时,人们对寻找具有抗菌活性的无毒天然存在分子的新途径很感兴趣。高度清洁和无菌的未漂纯棉具有产生过氧化氢的成分,其水平与促进伤口愈合细胞信号传导的水平相当。在这里,我们展示了经抗坏血酸制剂处理的含有纺粘坯布的非织造布的抗菌和抗病毒特性。作用机制是通过促进过氧化氢活性的增强来实现的。过氧化氢活性水平提供了针对革兰氏阴性和革兰氏阳性细菌的抗菌活性和针对 MS2 噬菌体的抗病毒活性。采用传统的轧液干燥法用抗坏血酸处理纺粘非织造布未漂纯棉。采用 AATCC 100 测试方法对抗 、 、MS2 噬菌体的抗菌和抗病毒活性进行评估,结果显示抑制活性为 99.99%。还讨论了通过柠檬酸交联化学将抗坏血酸共价连接到纤维素上的方法。因此,可以通过将抗坏血酸与纺粘坯布非织造布结合,采用简单、低成本的方法来生产适用于敷料、医院隔离织物和口罩的抗菌和抗病毒棉基非织造布。