AI Article Synopsis

  • * The study investigated how exosomes from tumor cells affect DCs, finding that these exosomes hindered the development of DCs from myeloid precursors and caused cell death, while also impeding DC maturation and migration.
  • * Treatment with tumor exosomes reduced the differentiation of Th1 cells, which are essential for anti-tumor immunity, and increased regulatory T (Treg) cells; blocking PD-L1 helped partially restore the immune response, highlighting its role in the suppression caused by tumor exosomes.*

Article Abstract

Tumors can induce the generation and accumulation of immunosuppression in a tumor microenvironment, contributing to the tumor's escape from immunological surveillance. Although tumor antigen-pulsed dendritic cell can improve anti-tumor immune responses, tumor associated regulatory dendritic cells are involved in the induction of immune tolerance. The current study sought to investigate whether exosomes produced by tumor cells had any effect on DCs in immune suppression. In this study, we examined the effect of tumor exosomes on DCs and found that exosomes from LLC Lewis lung carcinoma or 4T1 breast cancer cell blocked the differentiation of myeloid precursor cells into CD11c DCs and induced cell apoptosis. Tumor exosome treatment inhibited the maturation and migration of DCs and promoted the immune suppression of DCs. The treatment of tumor exosomes drastically decreased CD4IFN-γ Th1 differentiation but increased the rates of regulatory T (Treg) cells. The immunosuppressive ability of tumor exosome-treated DCs were partially restored with PD-L1 blockage. These data suggested that PD-L1 played a role in tumor exosome-induced DC-associated immune suppression.

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Source
http://dx.doi.org/10.1016/j.imlet.2018.05.002DOI Listing

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