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Basophils and Mast Cells in COVID-19 Pathogenesis

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CELLS
卷 10, 期 10, 页码 -

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MDPI
DOI: 10.3390/cells10102754

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basophils; mast cells; COVID-19; innate immune response; adaptive immune response

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Basophils play a crucial role in immune response to SARS-CoV-2 and their depletion may impact the antibody response, while mast cells participate in the initial immune response but their activation can lead to hyperinflammatory syndrome. Both basophil counts and mast cell activation could be important factors in the prognosis and treatment of COVID-19.
Basophils and mast cells are among the principal inducers of Th2 responses and have a crucial role in allergic and anti-parasitic protective immunity. Basophils can function as antigen-presenting cells that bind antigens on their surface and boost humoral immune responses, inducing Th2 cell differentiation. Their depletion results in lower humoral memory activation and greater infection susceptibility. Basophils seem to have an active role upon immune response to SARS-CoV-2. In fact, a coordinate adaptive immune response to SARS-CoV-2 is magnified by basophils. It has been observed that basophil amount is lower during acute disease with respect to the recovery phase and that the grade of this depletion is an important determinant of the antibody response to the virus. Moreover, mast cells, present in a great quantity in the nasal epithelial and lung cells, participate in the first immune response to SARS-CoV-2. Their activation results in a hyperinflammatory syndrome through the release of inflammatory molecules, participating to the cytokine storm and, in a longer period, inducing pulmonary fibrosis. The literature data suggest that basophil counts may be a useful prognostic tool for COVID-19, since their reduction is associated with a worse prognosis. Mast cells, on the other hand, represent a possible therapeutic target for reducing the airway inflammation characteristic of the hyperacute phase of the disease.

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