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纳米材料在COVID-19治疗中的最新进展:关于抗SARS-CoV-2病毒/杀病毒剂及抑制/灭活机制的系统综述

Recent Advances on Nanomaterials to COVID-19 Management: A Systematic Review on Antiviral/Virucidal Agents and Mechanisms of SARS-CoV-2 Inhibition/Inactivation.

作者信息

Carvalho Anna Paula A, Conte-Junior Carlos A

机构信息

COVID-19 Research Group Technological Development Support Laboratory (LADETEC) Department of Biochemistry Federal University of Rio de Janeiro (UFRJ) UFRJ Rio de Janeiro 21941-909 Brazil.

COVID-19 Research Group Laboratory of Advanced Analysis in Biochemistry and Molecular Biology (LAABBM) Institute of Chemistry (IQ) Federal University of Rio de Janeiro (UFRJ) UFRJ Rio de Janeiro 21941-909 Brazil.

出版信息

Glob Chall. 2021 Feb 22;5(5):2000115. doi: 10.1002/gch2.202000115. eCollection 2021 May.

Abstract

The current pandemic of coronavirus disease 2019 (COVID-19) is recognized as a public health emergency of worldwide concern. Nanomaterials can be effectively used to detect, capture/inactivate or inhibit coronavirus cell entry/replication in the human host cell, preventing infection. Their potential for nanovaccines, immunoengineering, diagnosis, repurposing medication, and disinfectant surfaces targeting the novel coronavirus (SARS-CoV-2) is highlighted. In this systematic review the aim is to present an unbiased view of which and how nanomaterials can reduce the spread of COVID-19. Herein, the focus is on SARS-CoV-2, analyzing 46 articles retrieved before December 31, 2020. The interface between nanomaterials is described, and the main mechanisms to inhibit SARS-CoV-2 pathogenesis and viral inactivation are also discussed. Nanocarbons, biopolymeric, copper, and silver nanoparticles are potential antiviral and virucidal agents toward self-cleaning and reusable filter media and surfaces (e.g., facial masks), drug administration, vaccines, and immunodiagnostic assays. Trends in toxicology research and safety tests can help fill the main gaps in the literature and overcome health surveillance's challenges. Phytochemicals delivery by nanocarriers also stand out as candidates to target and bio-friendly therapy. Nanocellulose might fill in the gaps. Future research using nanomaterials targeting novel therapies/prophylaxis measures to COVID-19 and future outbreaks is discussed.

摘要

当前的2019冠状病毒病(COVID-19)大流行被视为全球关注的突发公共卫生事件。纳米材料可有效用于检测、捕获/灭活或抑制冠状病毒进入/在人类宿主细胞中复制,从而预防感染。重点介绍了它们在纳米疫苗、免疫工程、诊断、药物重新利用以及针对新型冠状病毒(SARS-CoV-2)的消毒表面方面的潜力。在本系统综述中,目的是对纳米材料能够以何种方式以及如何减少COVID-19传播提供一个客观的观点。在此,重点是SARS-CoV-2,分析了2020年12月31日前检索到的46篇文章。描述了纳米材料之间的界面,并讨论了抑制SARS-CoV-2发病机制和病毒灭活的主要机制。纳米碳、生物聚合物、铜和银纳米颗粒是用于自清洁和可重复使用的过滤介质及表面(如口罩)、药物给药、疫苗和免疫诊断检测的潜在抗病毒和杀病毒剂。毒理学研究和安全测试的趋势有助于填补文献中的主要空白并克服健康监测的挑战。纳米载体递送植物化学物质也作为靶向和生物友好治疗的候选方法脱颖而出。纳米纤维素可能会填补空白。讨论了未来使用纳米材料针对COVID-19及未来疫情的新型治疗/预防措施的研究。

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