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Publication : NKG2A Blockade Potentiates CD8 T Cell Immunity Induced by Cancer Vaccines.

First Author  van Montfoort N Year  2018
Journal  Cell Volume  175
Issue  7 Pages  1744-1755.e15
PubMed ID  30503208 Mgi Jnum  J:269572
Mgi Id  MGI:6273552 Doi  10.1016/j.cell.2018.10.028
Citation  van Montfoort N, et al. (2018) NKG2A Blockade Potentiates CD8 T Cell Immunity Induced by Cancer Vaccines. Cell 175(7):1744-1755.e15
abstractText  Tumor-infiltrating CD8 T cells were found to frequently express the inhibitory receptor NKG2A, particularly in immune-reactive environments and after therapeutic cancer vaccination. High-dimensional cluster analysis demonstrated that NKG2A marks a unique immune effector subset preferentially co-expressing the tissue-resident CD103 molecule, but not immune checkpoint inhibitors. To examine whether NKG2A represented an adaptive resistance mechanism to cancer vaccination, we blocked the receptor with an antibody and knocked out its ligand Qa-1(b), the conserved ortholog of HLA-E, in four mouse tumor models. The impact of therapeutic vaccines was greatly potentiated by disruption of the NKG2A/Qa-1(b) axis even in a PD-1 refractory mouse model. NKG2A blockade therapy operated through CD8 T cells, but not NK cells. These findings indicate that NKG2A-blocking antibodies might improve clinical responses to therapeutic cancer vaccines.
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