Zinc and respiratory tract infections: Perspectives for CoviD'19 (Review)

Anatoly V. Skalny, Lothar Rink, Olga P. Ajsuvakova, Michael Aschner, Viktor A. Gritsenko, Svetlana I. Alekseenko, Andrey A. Svistunov, Demetrios Petrakis, Demetrios A. Spandidos, Jan Aaseth, Aristidis Tsatsakis, Alexey A. Tinkov

Research output: Contribution to journalReview articlepeer-review

174 Scopus citations


In view of the emerging COVID' 19 pandemic caused by SARS'C oV'2 virus, the search for potential protective and therapeutic antiviral strategies is of particular and urgent interest. Zinc is known to modulate antiviral and antibacterial immunity and regulate inflammatory response. Despite the lack of clinical data, certain indications suggest that modulation of zinc status may be beneficial in COVID'19. In vitro experiments demonstrate that Zn2+ possesses antiviral activity through inhibition of SARS'C oV RNA polymerase. This effect may underlie therapeutic efficiency of chloroquine known to act as zinc ionophore. Indirect evidence also indicates that Zn2+ may decrease the activity of angiotensin'converting enzyme 2 (ACE2), known to be the receptor for SARS'C oV'2. Improved antiviral immunity by zinc may also occur through up'regulation of interferon α production and increasing its antiviral activity. Zinc possesses anti'inflammatory activity by inhibiting NF'κB signaling and modulation of regulatory T'cell functions that may limit the cytokine storm in COVID' 19. Improved Zn status may also reduce the risk of bacterial co'infection by improving mucociliary clearance and barrier function of the respiratory epithelium, as well as direct antibacterial effects against S. pneumoniae. Zinc status is also tightly associated with risk factors for severe COVID' 19 including ageing, immune deficiency, obesity, diabetes, and atherosclerosis, since these are known risk groups for zinc deficiency. Therefore, Zn may possess protective effect as preventive and adjuvant therapy of COVID' 19 through reducing inflammation, improvement of mucociliary clearance, prevention of ventilator'induced lung injury, modulation of antiviral and antibacterial immunity. However, further clinical and experimental studies are required.

Original languageEnglish (US)
Pages (from-to)17-26
Number of pages10
JournalInternational journal of molecular medicine
Issue number1
StatePublished - Jul 1 2020


  • Coronavirus
  • Immunity
  • Pneumonia
  • SARS'C oV'2
  • Zinc

ASJC Scopus subject areas

  • Genetics


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