Phenotypical characterization of regulatory T cells in acute Zika infection

[Display omitted] •ZIKV infection does not alter Tregs frequency compared to the healthy control group.•Acute Zika promotes LAP and IFNγ upregulation while downregulates IL-10 production.•Zika patients promote increased levels of Treg cells mechanisms markers.•Treg enhanced markers expression regula...

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Veröffentlicht in:Cytokine (Philadelphia, Pa.) Pa.), 2021-10, Vol.146, p.155651-155651, Article 155651
Hauptverfasser: Guerra-Gomes, Isabel Cristina, Gois, Bruna Macêdo, Peixoto, Rephany Fonseca, Palmeira, Pedro Henrique de Sousa, Dias, Cínthia Nóbrega de Sousa, Csordas, Bárbara Guimarães, Araújo, Josélio Maria Galvão, Veras, Robson Cavalcante, de Medeiros, Isac Almeida, de Azevedo, Fátima de Lourdes Assunção Araújo, Boyton, Rosemary Jane, Altmann, Daniel Martin, Keesen, Tatjana Souza Lima
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Sprache:eng
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Zusammenfassung:[Display omitted] •ZIKV infection does not alter Tregs frequency compared to the healthy control group.•Acute Zika promotes LAP and IFNγ upregulation while downregulates IL-10 production.•Zika patients promote increased levels of Treg cells mechanisms markers.•Treg enhanced markers expression regulates Zika exacerbated inflammatory response. Zika virus (ZIKV), alongside Dengue virus (DENV), Chikungunya virus (CHIKV), and Yellow Fever Virus (YFV) are prevalent arboviruses in the Americas. Each of these infections is associated with the development of associated disease immunopathology. Immunopathological processes are an outcome of counter-balancing impacts between effector and regulatory immune mechanisms. In this context, regulatory T cells (Tregs) are key in modulating the immune response and, therefore, in tissue damage control. However, to date, Treg phenotypes and mechanisms during acute infection of the ZIKV in humans have not been fully investigated. The main aim of this work was to characterize Tregs and their immunological profile related to cytokine production and molecules that are capable of controlling the exacerbated inflammatory profile in acute Zika infected patients. Using whole blood analyses of infected patients, an ex vivo phenotypical characterization of Tregs, circulating during acute Zika virus infection, was conducted by flow cytometry. We found that though there are no differences in absolute Treg frequency between infected and healthy control groups. However, pro-inflammatory cytokine up-regulation such as IFN-γ and LAP was observed in the acute disease. Furthermore, acute ZIKV patients expressed increased levels of CD39/CD73, perforin/granzyme B, PD-1, and CTLA-4, all markers involved in mechanisms used by Tregs to attempt to control strong inflammatory responses. Thus, the data indicates a potential contribution of Tregs during the inflammatory ZIKV infection response.
ISSN:1043-4666
1096-0023
1096-0023
DOI:10.1016/j.cyto.2021.155651