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Protti, G.

Publications and source records attributed to Protti, G..

2 recordsLinked to original sources

Tumor infiltrating iNKT cells sustain neutrophil pro-tumorigenic functions influencing disease progression in human colorectal cancer

iNKT cells account for a relevant fraction of effector T-cells in the intestine. Although iNKT cells are cytotoxic lymphocytes, their role in colorectal cancer (CRC) remains controversial. From the analysis of colonic LPMCs of human and murine CRC specimens we report that tumor-infiltrating iNKT cells are characterized by an IL17/GM-CSF pro-tumorigenic phenotype, while maintaining cytotoxic properties in the adjacent non-tumoral tissue. Exposure of iNKT cells to the tumor-associated pathobiont Fusobacterium nucleatum blunted their cytotoxic capability and enhanced iNKT cell-mediated neutrophils chemotaxis, which upregulated PMN-MDSC gene signatures and functions. Importantly, in vivo stimulation of iNKT cells with GalCer restored their anti-tumorigenic functions. Survival analyses demonstrated that human CRC co-infiltration by iNKT cells and tumor-associated neutrophils correlates with negative outcomes. Our results reveal a functional plasticity of human intestinal iNKT cells with pro- and anti-tumorigenic activities in CRC, suggesting an iNKT pivotal role in shaping the cancer developmental trajectory.

immunology↗

Maturation signatures of conventional dendritic cells in COVID-19 reflect direct viral sensing

Growing evidence suggests that conventional dendritic cells (cDCs) undergo aberrant maturation in COVID-19 and this negatively affects T cell activation. The presence of functional effector T cells in mild patients and dysfunctional T cells in severely ill patients suggests that adequate T cell responses are needed to limit disease severity. Therefore, understanding how cDCs cope with SARS-CoV-2 infections can help elucidate the mechanism of generation of protective immune responses. Here, we report that cDC2 subtypes exhibit similar infection-induced gene signatures with the up-regulation of interferon-stimulated genes and IL-6 signaling pathways. The main difference observed between DC2s and DC3s is the up-regulation of anti-apoptotic genes in DC3s, which explains their accumulation during infection. Furthermore, comparing cDCs between severe and mild patients, we find in the former a profound down-regulation of genes encoding molecules involved in antigen presentation, such as major histocompatibility complex class II (MHCII) molecules, {beta}2 microglobulin, TAP and costimulatory proteins, while an opposite trend is observed for proinflammatory molecules, such as complement and coagulation factors. Therefore, as the severity of the disease increases, cDC2s enhance their inflammatory properties and lose their main function, which is the antigen presentation capacity. In vitro, direct exposure of cDC2s to the virus recapitulates the type of activation observed in vivo. Our findings provide evidence that SARS-CoV-2 can interact directly with cDC2s and, by inducing the down-regulation of crucial molecules required for T cell activation, implements an efficient immune escape mechanism that correlates with disease severity.

immunology↗