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Immunopathology of galectin-3: an increasingly promising target in COVID-19
John L Caniglia1, Swapna Asuthkar1, Andrew J Tsung1,2,3
1Departments of Cancer Biology and Pharmacology, University of Illinois College of Medicine at Peoria, Peoria, IL, USA.
Abstract:
The pandemic brought on by the outbreak of severe acute respiratory syndrome coronavirus 2 (SARS-CoV2) has become a global health crisis, with over 22 million confirmed cases and 777,000 fatalities due to coronavirus disease 2019 (COVID-19) reported worldwide. The major cause of fatality in infected patients, now referred to as the "Cytokine Storm Syndrome" (CSS), is a direct result of aberrant immune activation following SARS-CoV2 infection and results in excess release of inflammatory cytokines, such as interleukin (IL)-1, tumor necrosis factor α (TNF-α), and IL-6, by macrophages, monocytes, and dendritic cells. Single cell analysis has also shown significantly elevated levels of galectin 3 (Gal-3) in macrophages, monocytes, and dendritic cells in patients with severe COVID-19 as compared to mild disease. Inhibition of Gal-3 reduces the release of IL-1, IL-6, and TNF-α from macrophages in vitro, and as such may hold promise in reducing the incidence of CSS. In addition, Gal-3 inhibition shows promise in reducing transforming growth factor ß (TGF-ß) mediated pulmonary fibrosis, likely to be a major consequence in survivors of severe COVID-19. Finally, a key domain in the spike protein of SARS-CoV2 has been shown to bind N-acetylneuraminic acid (Neu5Ac), a process that may be essential to cell entry by the virus. This Neu5Ac-binding domain shares striking morphological, sequence, and functional similarities with human Gal-3. Here we provide an updated review of the literature linking Gal-3 to COVID-19 pathogenesis. Dually targeting galectins and the Neu5Ac-binding domain of SARS-CoV2 shows tentative promise in several stages of the disease: preventing viral entry, modulating the host immune response, and reducing the post-infectious incidence of pulmonary fibrosis.
Insights
Galectin-3 (Gal-3) inhibition may combat COVID-19 by reducing cytokine storm syndrome and pulmonary fibrosis. Targeting Gal-3 and the SARS-CoV-2 spike protein offers a dual approach to disease management.
Area of Science:
- Immunology
- Virology
- Pulmonology
Background:
- Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) causes COVID-19, a global health crisis characterized by a
- Cytokine Storm Syndrome
- (CSS) and potential pulmonary fibrosis in survivors.
- Elevated galectin-3 (Gal-3) levels in immune cells correlate with severe COVID-19.
- The SARS-CoV-2 spike protein binds N-acetylneuraminic acid (Neu5Ac), a process similar to Gal-3 function.
Purpose of the Study:
- To review the literature linking Gal-3 to COVID-19 pathogenesis.
- To explore the therapeutic potential of targeting Gal-3 and the SARS-CoV-2 Neu5Ac-binding domain.
Main Methods:
- Literature review of studies on Gal-3, COVID-19, cytokine storm, and pulmonary fibrosis.
- Analysis of the structural and functional similarities between Gal-3 and the SARS-CoV-2 Neu5Ac-binding domain.
Main Results:
- Gal-3 inhibition reduces pro-inflammatory cytokine release (IL-1, IL-6, TNF-α) from macrophages in vitro.
- Gal-3 inhibition may mitigate TGF-ß-mediated pulmonary fibrosis.
- The SARS-CoV-2 Neu5Ac-binding domain's similarity to Gal-3 suggests a potential therapeutic target.
Conclusions:
- Targeting Gal-3 offers a promising strategy to reduce CSS and pulmonary fibrosis in COVID-19 patients.
- A dual therapeutic approach targeting both Gal-3 and the SARS-CoV-2 Neu5Ac-binding domain may be effective in preventing viral entry, modulating immune responses, and reducing fibrosis.
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