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Salles, E. M.

Publications and source records attributed to Salles, E. M..

2 recordsLinked to original sources

Extrafollicular activation of B cells contributes to the long-term survival of CD28KO mice infected with Sylvio X10/4Trypanosoma cruzi parasites

In the initial phase of infections, prior to the development of the follicular antibody response, an extrafollicular B cell response develops in lymphoid organs, with activation of cells displaying B cell receptors with low affinity to the different epitopes of the invading pathogen. To evaluate if this response allows early protection in the murine host, we investigated its role during infection with Sylvio X10/4 (a low virulence Trypanosoma cruzi parasite) of CD28KO mice, a mouse strain that does not develop a follicular antibody response, in parallel with infected C57BL/6 mice (used as control). We observed that T. cruzi infection allowed CD28KO mice to survive for a long period of time, ranging from a few weeks to almost a year. However, the CD28KO mice showed higher levels of subpatent parasitemia than C57BL/6 mice, as well as more intense and long-lasting inflammatory infiltrates in the heart. Following the CD28KO mice throughout the infection, we found a significant reduction in the number of CD8+ T cells in the spleen, but not CD4+ T cells, as well as a strong fluctuation in the number of B cells. Meanwhile, although the production of IFN-{gamma} in the spleen was not affected by CD28 deficiency, a reduction in IL-2 production was observed in anti-CD3 stimulated CD4+ T cells from infected CD28KO mice. Regarding the humoral response, after confirming that the T follicular helper (TFH) cells and germinal center B cells (GC-B) were absent in the infected CD28KO mice, we demonstrated that the extrafollicular antibodies, present in CD28KO infected mice, allowed an early protection in the murine host, since the transfer of serum from chronic CD28KO mice to naive CD28KO mice, which were infected with T. cruzi 24 hours later, promoted a significant reduction in parasitemia. These results demonstrate that low-affinity anti-T cruzi extrafollicular antibodies contribute to the control of circulating parasites, allowing Sylvio X10/4-infected CD28KO mice to survive for a long time. AUTHOR SUMMARYLow-affinity anti-T cruzi extrafollicular antibodies contribute to the control of circulating parasites, allowing Sylvio X10/4-infected CD28KO mice to survive for a long time.

immunology↗

P2RX7 signaling drives the differentiation of Th1 cells through metabolic reprogramming for aerobic glycolysis

This study provides evidence on the molecular mechanisms by which P2RX7 signaling promotes the differentiation of Th1 cells. In vivo analysis was performed in the Plasmodium chabaudi model of malaria in view of the great relevance of this infectious disease for human health, as well as the great availability of data concerning Th1/Tfh differentiation. We show that P2RX7 induces T-bet expression and aerobic glycolysis in splenic CD4+ T cells that respond to malaria, at a time prior to Th1/Tfh polarization. Cell-intrinsic P2RX7 signaling sustains the glycolytic pathway and causes bioenergetic mitochondrial stress in activated CD4+ T cells. We also show in vitro the phenotypic similarities of Th1-conditioned CD4+ T cells that do not express P2RX7 and those in which the glycolytic pathway is pharmacologically inhibited. In addition, in vitro ATP synthase blockade and the consequent inhibition of oxidative phosphorylation, which drives cellular metabolism for aerobic glycolysis, is sufficient to promote rapid CD4+ T cell proliferation and polarization to the Th1 profile in the absence of P2RX7. These data demonstrate that P2RX7-mediated metabolic reprograming for aerobic glycolysis is a key event for Th1 differentiation and suggest that ATP synthase inhibition is a downstream effect of P2RX7 signaling that potentiates the Th1 response.

immunology↗