Department of Chemical, Biological and Macromolecular Sciences, S. N. Bose National Centre for Basic Sciences, Block JD, Sector 3, Salt Lake, Kolkata 700106, India.
Technical Research Centre, S. N. Bose National Centre for Basic Sciences, Block JD, Sector 3, Salt Lake, Kolkata 700106, India.
ACS Appl Bio Mater. 2021 Jul 19;4(7):5471-5484. doi: 10.1021/acsabm.1c00238. Epub 2021 Jun 17.
Centers for Disease Control and Prevention (CDC) warns the use of one-way valves or vents in face masks for potential threat of spreading COVID-19 through expelled respiratory droplets. Here, we have developed a nanoceutical cotton fabric duly sensitized with non-toxic zinc oxide nanomaterial for potential use as a membrane filter in the one-way valve for the ease of breathing without the threat of COVID-19 spreading. A detailed computational study revealed that zinc oxide nanoflowers (ZnO NFs) with almost two-dimensional petals trap SARS-CoV-2 spike proteins, responsible to attach to ACE-2 receptors in human lung epithelial cells. The study also confirmed significant denaturation of the spike proteins on the ZnO surface, revealing removal of the virus upon efficient trapping. Following the computational study, we have synthesized ZnO NF on a cotton matrix using a hydrothermal-assisted strategy. Electron-microscopic, steady-state, and picosecond-resolved spectroscopic studies confirm attachment of ZnO NF to the cotton (i.e., cellulose) matrix at the atomic level to develop the nanoceutical fabric. A detailed antimicrobial assay using bacteria (model SARS-CoV-2 mimic) reveals excellent antimicrobial efficiency of the developed nanoceutical fabric. To our understanding, the nanoceutical fabric used in the one-way valve of a face mask would be the choice to assure breathing comfort along with source control of COVID-19 infection. The developed nanosensitized cloth can also be used as an antibacterial/anti CoV-2 washable dress material in general.
疾病控制与预防中心 (CDC) 警告称,口罩中使用单向阀或通风口可能会将 COVID-19 通过呼出的飞沫传播。在这里,我们开发了一种纳米棉织物,经过适当的无毒氧化锌纳米材料敏化,可作为单向阀中的膜过滤器使用,以方便呼吸,而不会有 COVID-19 传播的威胁。详细的计算研究表明,具有几乎二维花瓣的氧化锌纳米花 (ZnO NF) 可以捕获 SARS-CoV-2 刺突蛋白,这些蛋白负责附着在人肺上皮细胞中的 ACE-2 受体上。该研究还证实,刺突蛋白在 ZnO 表面发生明显变性,表明在有效捕获时病毒被去除。在计算研究之后,我们使用水热辅助策略在棉基质上合成了 ZnO NF。电子显微镜、稳态和皮秒分辨光谱研究证实,ZnO NF 以原子水平附着在棉(即纤维素)基质上,从而开发出纳米棉织物。使用细菌(SARS-CoV-2 模拟物)进行的详细抗菌测定表明,所开发的纳米棉织物具有出色的抗菌效率。据我们了解,口罩单向阀中使用的纳米棉织物将是确保呼吸舒适和控制 COVID-19 感染源的选择。开发的纳米敏化布也可作为一般的抗菌/抗 CoV-2 可水洗服装材料。