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对抗新冠疫情及未来的智能与可持续纳米技术解决方案:批判性综述

Smart and Sustainable Nanotechnological Solutions in a Battle against COVID-19 and Beyond: A Critical Review.

作者信息

Jastrzębska Agnieszka M, Vasilchenko Alexey S

机构信息

Warsaw University of Technology, Faculty of Materials Science and Engineering, Wołoska 141, 02-507 Warsaw, Poland.

Institute of Environmental and Agricultural Biology (X-BIO), Tyumen State University, Tyumen, Russia.

出版信息

ACS Sustain Chem Eng. 2021 Jan 18;9(2):601-622. doi: 10.1021/acssuschemeng.0c06565. Epub 2021 Jan 7.

Abstract

The variety of available biocidal features make nanomaterials promising for fighting infections. To effectively battle COVID-19, categorized as a pandemic by the World Health Organization (WHO), materials scientists and biotechnologists need to combine their knowledge to develop efficient antiviral nanomaterials. By design, nanostructured materials (spherical, two-dimensional, hybrid) can express a diverse bioactivity and unique combination of specific, nonspecific, and mixed mechanisms of antiviral action. It can be related to the material's specific features and their multiple functionalization strategies. This is a complex guiding approach in which an interaction target is constantly moving and quickly changing. On the other hand, in such a rush, sustainability may be put aside. Therefore, to elucidate the most promising nanotechnological solutions, we critically review available data within the frame of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) and other types of viruses. We highlight solutions that are, or could be, more sustainable and less toxic. In this regard, reduction of the number of synthetic routes, organic solvents, byproducts, and residues is highly recommended. Such efficient, green solutions may be further used for the prevention of virion-host interactions, treatment of the already developed infection, reducing inflammation, and finally, protecting healthcare professionals with masks, fabrics, equipment, and in other associated areas. Further translation into the market needs putting on the fast track with respect to principles of green chemistry, feasibility, safety, and the environment.

摘要

各种可用的杀菌特性使纳米材料在对抗感染方面颇具前景。为了有效对抗被世界卫生组织(WHO)列为大流行病的COVID-19,材料科学家和生物技术专家需要结合他们的知识来开发高效的抗病毒纳米材料。通过设计,纳米结构材料(球形、二维、混合)可以表现出多样的生物活性以及抗病毒作用的特异性、非特异性和混合机制的独特组合。这可能与材料的特定特性及其多种功能化策略有关。这是一种复杂的指导方法,其中相互作用目标在不断移动且快速变化。另一方面,在如此匆忙的情况下,可持续性可能会被搁置一旁。因此,为了阐明最有前景的纳米技术解决方案,我们在严重急性呼吸综合征冠状病毒2(SARS-CoV-2)和其他类型病毒的框架内严格审查现有数据。我们强调那些已经或可能更具可持续性且毒性较小的解决方案。在这方面,强烈建议减少合成路线、有机溶剂、副产物和残留物的数量。这种高效、绿色的解决方案可进一步用于预防病毒体与宿主的相互作用、治疗已发展的感染、减轻炎症,最终,用于用口罩、织物、设备及其他相关领域保护医护人员。进一步推向市场需要在绿色化学、可行性、安全性和环境原则方面加快步伐。

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