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Lenain, M.

Publications and source records attributed to Lenain, M..

2 recordsLinked to original sources

MAIT cells protect in severe pneumococcal pneumonia by regulating neutrophil/macrophage antimicrobial activities

Mucosal-Associated Invariant T (MAIT) cells populate the lung tissue where they contribute to defense against respiratory infections. While MAIT cells have been implicated in host resistance to infections caused by Gram-negative bacteria, their contribution in immunity against Gram-positive bacteria-driven pneumonia is still enigmatic. Here, we demonstrate that both mouse and human MAIT cells are activated during severe infection caused by Streptococcus pneumoniae, the major cause of community-acquired bacterial pneumonia. Upon infection, lung MAIT cells undergo a transcriptional reprogramming associated with acquisition of potent antimicrobial properties. MAIT cell-deficient mice are more susceptible to pneumococcal pneumonia, including higher mortality, uncontrolled bacterial growth and dissemination, and impaired neutrophil and interstitial macrophage activity. Moreover, prophylactic stimulation of MAIT cells using cognate antigen protects from pneumococcus-induced lethal pneumonia. These findings demonstrate that MAIT cells are key cellular actors during Gram-positive bacterial infections.

immunology↗

Deciphering the tumor-infiltrating CD73+ regulatory gammadelta T cell ecosystem associated with poor survival of patients with ovarian cancer

The ability of tumor cells to overcome immune surveillance is an essential step in tumor development and progression. Among the immune cells playing a role in tumor control, {gamma}{delta} T cells contribute to the immune response against many tumor types through their direct cytotoxic activity against cancer cells and their capacity to regulate the functions of other immune cells. However, their presence in the tumor microenvironment is also associated with poor prognosis, suggesting that {gamma}{delta} T cells may also have pro-tumor activities. We previously described a regulatory {gamma}{delta} T-cell subset that expresses CD73 and produces IL-10, IL-8 and adenosine. Here, we report a higher CD73+ {gamma}{delta} T cell density in the tumor microenvironment of ovarian cancer samples from patients with short-term than long-term survival. Starting from this original observation, we investigated their neighborhood and described a specific ecosystem according to their pro-tumor functions.

cancer biology↗