AI Article Synopsis

  • * In experiments using mouse models, the absence of MHC class II in LECs led to reduced tumor growth and enhanced responses from effector T-cells, indicating an important local role for LECs in maintaining Treg suppressive functions within tumors.
  • * The study highlights that MHC class II-restricted antigen presentation by LECs is crucial for regulating Tregs locally in the tumor environment, acting as a barrier against effective T-cell-mediated immune responses.

Article Abstract

Several solid malignancies trigger lymphangiogenesis, facilitating metastasis. Tumor-associated lymphatic vessels significantly contribute to the generation of an immunosuppressive tumor microenvironment (TME). Here, we have investigated the ability of tumoral lymphatic endothelial cells (LEC) to function as MHC class II-restricted antigen-presenting cells in the regulation of antitumor immunity. Using murine models of lymphangiogenic tumors engrafted under the skin, we have shown that tumoral LECs upregulate MHC class II and the MHC class II antigen-processing machinery, and that they promote regulatory T-cell (Treg) expansion . In mice with LEC-restricted lack of MHC class II expression, tumor growth was severely impaired, whereas tumor-infiltrating effector T cells were increased. Reduction of tumor growth and reinvigoration of tumor-specific T-cell responses both resulted from alterations of the tumor-infiltrating Treg transcriptome and phenotype. Treg-suppressive functions were profoundly altered in tumors lacking MHC class II in LECs. No difference in effector T-cell responses or Treg phenotype and functions was observed in tumor-draining lymph nodes, indicating that MHC class II-restricted antigen presentation by LECs was required locally in the TME to confer potent suppressive functions to Tregs. Altogether, our study suggests that MHC class II-restricted antigen-presenting tumoral LECs function as a local brake, dampening T cell-mediated antitumor immunity and promoting intratumoral Treg-suppressive functions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11095080PMC
http://dx.doi.org/10.1158/2326-6066.CIR-20-0784DOI Listing

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