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Carboplatin chemoresistance is associated with CD11b/Ly6C myeloid release and upregulation of TIGIT and LAG3/CD160 exhausted T cells.

TitleCarboplatin chemoresistance is associated with CD11b/Ly6C myeloid release and upregulation of TIGIT and LAG3/CD160 exhausted T cells.
Publication TypeJournal Article
Year of Publication2020
AuthorsAnestakis, D., Petanidis S., Domvri K., Tsavlis D., Zarogoulidis P., & Katopodi T.
JournalMol Immunol
Volume118
Pagination99-109
Date Published2020 Feb
ISSN1872-9142
KeywordsA549 Cells, Adult, Aged, Aged, 80 and over, Animals, Antigens, CD, Antigens, Ly, Carboplatin, CD11b Antigen, CD4-Positive T-Lymphocytes, CD8-Positive T-Lymphocytes, Cell Differentiation, Cell Line, Tumor, Dendritic Cells, Drug Resistance, Neoplasm, Female, GPI-Linked Proteins, Humans, Lung Neoplasms, Lymphocyte Activation, Lymphocyte Activation Gene 3 Protein, Male, Mice, Mice, Nude, Middle Aged, Myeloid-Derived Suppressor Cells, Receptors, Immunologic, Signal Transduction, Transcriptional Activation, Up-Regulation
Abstract

Immunosuppressive chemoresistance is a major barrier in lung cancer treatment. Tumor immunosuppressive environments mediated by myeloid-derived suppressor cells (MDSCs) play a key role in chemotherapy induced MDSC development and differentiation but their mechanistic role has not been elucidated. Here, we define a role for carboplatin based chemotherapy in potentiating an MDSC-dependent pathway that triggers the chemoresistance mechanism. Findings reveal MDSC differentiation and activation of IL-13/IL-33-mediated pathway through VCAM/RANTES following carboplatin treatment. Furthemore, secretion of T regulatory IL-10-producing CD4Foxp3 cells was increased followed by expression of co-inhibitory receptor TIGIT on T cells, leading to a dysfunctional T cell phenotype. These cells were characterized by an immunosuppressive phenotype with impaired activation, proliferation and cytokine production. Lung cancer tissues expressed CD155, which bound TIGIT receptors and inactivated CD8 T cells. This TIGIT expression on tumor-infiltrating T cells was found to be associated with tumor progression and was linked to functional exhaustion of T cells. In addition, the presence of plasmacytoid dendritic cells (pDCs) exposed to tumor-derived factors further enhanced tumor progression through IL-10 production and up-regulation of the inducible co-stimulatory ligand (ICOS-L). Deciphering these deranged immune mechanisms and how they are impacted by chemotherapy induction is essential for incorporation of novel immune-based strategies in order to restore immunity and inhibit the immunosuppressive phenotype of metastatic lung cancer.

DOI10.1016/j.molimm.2019.11.008
Alternate JournalMol Immunol
PubMed ID31862674

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