胺功能化银纳米粒子:一种潜在的抗病毒涂层材料,具有阻断和杀死病毒传播的效率(新冠肺炎)。

Atul Kumar Tiwari, Munesh Kumar Gupta, Govind Pandey, Shivangi Pandey, Prem C Pandey
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引用次数: 3

摘要

新冠肺炎的爆发极大地影响了全球人们的日常生活方式,其中特定的冠状病毒-2主要通过呼吸道飞沫传播。从结构上讲,严重急性呼吸系统综合征冠状病毒2型病毒由四种类型的蛋白质组成,其中S蛋白是不可或缺的,因为它会在宿主体内快速复制。因此,由S蛋白的HR1组成的甘氨酸和丙氨酸是抗病毒作用的理想靶标。在这种情况下,不同形式的表面活性个人防护用品可以有效地防止这种传播。然而,这种病毒可以在传统的个人防护用品上存活很长时间。因此,基于在医疗设备上涂覆工程纳米材料的纳米技术方法有可能防止感染在公众中传播。具有可调物理化学性质和多功能化学功能的银纳米颗粒为对抗这种疾病提供了一个极好的平台。纳米结构形式的胺官能化银纳米颗粒(特别是与脂肪族链和三烷氧基硅烷连接的胺)的涂层使布能够有效地捕获和杀死。个人防护用品是一种主要且可靠的预防措施,尽管它们对病毒感染并非100%有效。因此,开发和商业化具有诱捕和杀灭功效的表面活性个人防护用品是应对当前和未来病毒感染的迫切需要。这篇综述文章讨论了新冠肺炎的形态、Ag-NPs对抗SARS-CoV-2病毒的抗病毒机制、影响病毒对泡沫的持久性的表面因素、抗病毒个人防护用品的必要性,以及胺功能化银纳米颗粒作为涂层材料在开发陷阱和致命口罩和个人防护用品套件中的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Amine-Functionalized Silver Nanoparticles: A Potential Antiviral-Coating Material with Trap and Kill Efficiency to Combat Viral Dissemination (COVID-19).

Amine-Functionalized Silver Nanoparticles: A Potential Antiviral-Coating Material with Trap and Kill Efficiency to Combat Viral Dissemination (COVID-19).

Amine-Functionalized Silver Nanoparticles: A Potential Antiviral-Coating Material with Trap and Kill Efficiency to Combat Viral Dissemination (COVID-19).

Amine-Functionalized Silver Nanoparticles: A Potential Antiviral-Coating Material with Trap and Kill Efficiency to Combat Viral Dissemination (COVID-19).

The outbreak of COVID-19 has drastically affected the daily lifestyles of people globally where specific Coronavirus-2 transmits primarily by respiratory droplets. Structurally, the SARS-CoV-2 virus is made up of four types of proteins in which S-protein is indispensable among them, as it causes rapid replication in the host body. Therefore, the glycine and alanine composed of HR1 of S-protein is the ideal target for antiviral action. Different forms of surface-active PPEs can efficiently prevent this transmission in this circumstance. However, the virus can survive on the conventional PPEs for a long time. Hence, the nanotechnological approaches based on engineered nanomaterials coating on medical equipments can potentially prevent the dissemination of infections in public. Silver nanoparticles with tuneable physicochemical properties and versatile chemical functionalization provide an excellent platform to combat the disease. The coating of amine-functionalized silver nanoparticle (especially amine linked to aliphatic chain and trialkoxysilane) in its nanostructured form enables cloths trap and kill efficient. PPEs are a primary and reliable preventive measure, although they are not 100% effective against viral infections. So, developing and commercializing surface-active PPEs with trap and kill efficacy is highly needed to cope with current and future viral infections. This review article discusses the COVID-19 morphology, antiviral mechanism of Ag-NPs against SARS-CoV-2 virus, surface factors that influence viral persistence on fomites, the necessity of antiviral PPEs, and the potential application of amine-functionalized silver nanoparticles as a coating material for the development of trap and kill-efficient face masks and PPE kits.

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