1887
Preview this article:

There is no abstract available.

  • This is an open-access article distributed under the terms of the Creative Commons Attribution License. The Microbiology Society waived the open access fees for this article.
Loading

Article metrics loading...

/content/journal/jmm/10.1099/jmm.0.001299
2021-09-01
2024-04-19
Loading full text...

Full text loading...

/deliver/fulltext/jmm/70/9/jmm001299.html?itemId=/content/journal/jmm/10.1099/jmm.0.001299&mimeType=html&fmt=ahah

References

  1. Carlucci PM, Ahuja T, Petrilli C, Rajagopalan H, Jones S et al. Zinc sulfate in combination with a zinc ionophore may improve outcomes in hospitalized COVID-19 patients. J Med Microbiol 2020; 69:1228–1234 [View Article] [PubMed]
    [Google Scholar]
  2. Gbinigie OA, Akyea RK. Should zinc be used for COVID-19 prophylaxis or treatment? A rapid review. Wellcome Open Res 2020; 5:188 [View Article]
    [Google Scholar]
  3. Science M, Johnstone J, Roth DE, Guyatt G, Loeb M. Zinc for the treatment of the common cold: A systematic review and meta-analysis of randomized controlled trials. CMAJ 2012; 184:E551–61 [View Article]
    [Google Scholar]
  4. Jackson JL, Lesho E, Peterson C. Zinc and the Common Cold: A Meta-Analysis Revisited. J Nutr 2000; 130:1512S–5S [View Article] [PubMed]
    [Google Scholar]
  5. te Velthuis AJW, van den Worm SHE, Sims AC, Baric RS, Snijder EJ et al. Zn(2+) inhibits coronavirus and arterivirus RNA polymerase activity in vitro and zinc ionophores block the replication of these viruses in cell culture. PLoS Pathog 2010; 6:11e1001176
    [Google Scholar]
  6. Wu Y, Guo C, Tang L, Hong Z, Zhou J et al. Prolonged presence of SARS-CoV-2 viral RNA in faecal samples. Lancet Gastroenterol Hepatol 2020; 5:434–435 [View Article] [PubMed]
    [Google Scholar]
  7. Broggi A, Ghosh S, Sposito B, Spreafico R, Balzarini F et al. Type III interferons disrupt the lung epithelial barrier upon viral recognition. Science 2020; 369:706–712 [View Article] [PubMed]
    [Google Scholar]
  8. Read SA, O’Connor KS, Suppiah V, Ahlenstiel CLE, Obeid S et al. Zinc is a potent and specific inhibitor of IFN-λ3 signalling. Nat Commun 2017; 8:15245 [View Article] [PubMed]
    [Google Scholar]
  9. Major J, Crotta S, Llorian M, McCabe TM, Gad HH et al. Type I and III interferons disrupt lung epithelial repair during recovery from viral infection. Science 2020; 369:712–717 [View Article] [PubMed]
    [Google Scholar]
  10. Yamasaki S, Sakata-Sogawa K, Hasegawa A, Suzuki T, Kabu K et al. Zinc is a novel intracellular second messenger. J Cell Biol 2007; 177:637–645 [View Article]
    [Google Scholar]
  11. Telford WG, Fraker PJ. Preferential induction of apoptosis in mouse CD4+CD8+αβTCRIoCD3εIo thymocytes by zinc. J Cell Physiol 1995; 164:259–270 [View Article] [PubMed]
    [Google Scholar]
  12. Ibs K-H, Rink L. Zinc-altered immune function. J Nutr 2003; 133:1452S–6S [View Article] [PubMed]
    [Google Scholar]
  13. Schulte-Schrepping J, Reusch N, Paclik D, Baßler K, Schlickeiser S et al. Severe COVID-19 is marked by a dysregulated myeloid cell compartment. Cell 2020; 182:1419–1440 [View Article] [PubMed]
    [Google Scholar]
  14. Nicolai L, Leunig A, Brambs S, Kaiser R, Weinberger T et al. Immunothrombotic Dysregulation in COVID-19 pneumonia is associated with respiratory failure and coagulopathy. Circulation 2020; 142:1176–1189 [View Article] [PubMed]
    [Google Scholar]
  15. Zhao Q, Meng M, Kumar R, Wu Y, Huang J et al. Lymphopenia is associated with severe coronavirus disease 2019 (COVID-19) infections: A systemic review and meta-analysis. Int J Infect Dis 2020; 96:131–135 [View Article] [PubMed]
    [Google Scholar]
  16. Kitamura H, Morikawa H, Kamon H, Iguchi M, Hojyo S et al. Toll-like receptor–mediated regulation of zinc homeostasis influences dendritic cell function; 2006; 7971–977
  17. Sohn KM, Kim HJ, Cheon S, Jeong H et al. Covid-19 patients upregulate toll-like receptor 4-mediated inflammatory signaling that mimics bacterial sepsis. bioRxiv 2020; 2020.07.17.207878:
    [Google Scholar]
  18. Lucas C, Wong P, Klein J, Castro TBR, Silva J et al. Longitudinal analyses reveal immunological misfiring in severe COVID-19. Nature 2020; 584:463–469 [View Article] [PubMed]
    [Google Scholar]
  19. Afrin LB, Weinstock LB, Molderings GJ. Covid-19 hyperinflammation and post-Covid-19 illness may be rooted in mast cell activation syndrome. Int J Infect Dis 2020; 100:327–332 [View Article] [PubMed]
    [Google Scholar]
  20. Del Valle DM, Kim-Schulze S, Huang H-H, Beckmann ND, Nirenberg S et al. An inflammatory cytokine signature predicts COVID-19 severity and survival. Nat Med 2020; 26:1636–1643 [View Article] [PubMed]
    [Google Scholar]
  21. Fosmire GJ. Zinc toxicity. Am J Clin Nutr 1990; 51:225–227 [View Article] [PubMed]
    [Google Scholar]
  22. EFSA Panel on Dietetic Products, Nutrition and Allergies (NDA) Scientific opinion on dietary reference values for zinc. EFSA Journal 2014; 12:3844 [View Article]
    [Google Scholar]
  23. Paracelsus Das Buch Paragranum Septem Defensiones: Christian Egenolff; 1565
    [Google Scholar]
http://instance.metastore.ingenta.com/content/journal/jmm/10.1099/jmm.0.001299
Loading
This is a required field
Please enter a valid email address
Approval was a Success
Invalid data
An Error Occurred
Approval was partially successful, following selected items could not be processed due to error