2020
DOI: 10.1007/s42765-020-00047-7
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Progress and Perspective of Antiviral Protective Material

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Cited by 164 publications
(124 citation statements)
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“…Moreover, the impregnating/coating of classical antibacterial metals/metal oxides in nano/micro size scales, such as copper oxide, zinc oxides, titanium oxide, silver oxide etc. onto disposable N95 respiratory mask layers, showed that the mask layers had an anti-viral activity against human influenza A virus (H1N1) and avian influenza virus (H9N2) [ 65 , 66 ]. These metals and metallic oxides could be useful in integrating anti-viral activity onto the surfaces of masks and other PPE to reduce the risk of infection and environmental contamination, with novel coronavirus, for COVID-19.…”
Section: Coatings Empowering Antiviral and Viricidal Propertiesmentioning
confidence: 99%
“…Moreover, the impregnating/coating of classical antibacterial metals/metal oxides in nano/micro size scales, such as copper oxide, zinc oxides, titanium oxide, silver oxide etc. onto disposable N95 respiratory mask layers, showed that the mask layers had an anti-viral activity against human influenza A virus (H1N1) and avian influenza virus (H9N2) [ 65 , 66 ]. These metals and metallic oxides could be useful in integrating anti-viral activity onto the surfaces of masks and other PPE to reduce the risk of infection and environmental contamination, with novel coronavirus, for COVID-19.…”
Section: Coatings Empowering Antiviral and Viricidal Propertiesmentioning
confidence: 99%
“…Attacking the ions of CuO NPs to the COVID -19 virus's membrane, and destroying the virus' DNA structure can be also supportive findings for NP's antiviral effects [14,15].…”
Section: (E) Drug Nanoformulation Development Against Coronavirusmentioning
confidence: 69%
“…These two sets consist the oxidant part of the nanoformulation drug. On the other hand, attacking to the virus membrane, and destroying the virus' DNA structure, can also be found in CuO NPs researches [14,15].…”
Section: (E) Drug Nanoformulation Development Against Coronavirusmentioning
confidence: 99%
“… 49 A recent review has summarized the advances in antiviral materials and their mechanisms of activity, and it highlighted that nanomaterials, including metal-based, carbon-based, silicon-based, organic-based, and intrinsic antiviral materials, should be studied to improve the antiviral capability of PPE (e.g., filtering materials for face masks). 50 In addition, an emerging strategy to treat microbial infection is to create cell-membrane mimics as decoys to trap and detain the pathogens, 51 which gives the chance to inactivate the viruses/bacteria while retaining immunogenicity. However, the active-loaded and protein-coated products currently available have limitations for long-term use, as they deplete or degrade over time.…”
Section: Introductionmentioning
confidence: 99%