4.8 Article

Hypoxia-driven immunosuppression by Treg and type-2 conventional dendritic cells in HCC

期刊

HEPATOLOGY
卷 76, 期 5, 页码 1329-1344

出版社

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1002/hep.32419

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资金

  1. National Medical Research Council (NMRC), Singapore [NMRC/TCR/015-NCC/2016, NMRC/CIRG/1460/2016, NMRC/CSA-SI/0013/2017, NMRC/STaR/020/2013, LCG17MAY004]
  2. National Research Foundation, Singapore [NRF-NRFF2015-04]

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This study analyzed the immune landscapes of hypoxic regions in hepatocellular carcinoma (HCC) and identified enriched immune subsets, including regulatory T cells, M2 macrophages, and HLA-DRlo cDC2, in hypoxia-high tumor regions. In contrast, hypoxia-low tumor regions showed an abundance of active granzyme B-hi PD-1(lo) CD8(+) T cells, indicating a relatively active immune landscape. The up-regulation of cancer-associated genes in tumor tissues and immunosuppressive genes in tumor-infiltrating leukocytes supported a highly pro-tumorigenic network in hypoxic HCC.
Background and Aims Hypoxia is one of the central players in shaping the immune context of the tumor microenvironment (TME). However, the complex interplay between immune cell infiltrates within the hypoxic TME of HCC remains to be elucidated. Approach and Results We analyzed the immune landscapes of hypoxia-low and hypoxia-high tumor regions using cytometry by time of light, immunohistochemistry, and transcriptomic analyses. The mechanisms of immunosuppression in immune subsets of interest were further explored using in vitro hypoxia assays. Regulatory T cells (Tregs) and a number of immunosuppressive myeloid subsets, including M2 macrophages and human leukocyte antigen-DR isotype (HLA-DRlo) type 2 conventional dendritic cell (cDC2), were found to be significantly enriched in hypoxia-high tumor regions. On the other hand, the abundance of active granzyme B-hi PD-1(lo) CD8(+) T cells in hypoxia-low tumor regions implied a relatively active immune landscape compared with hypoxia-high regions. The up-regulation of cancer-associated genes in the tumor tissues and immunosuppressive genes in the tumor-infiltrating leukocytes supported a highly pro-tumorigenic network in hypoxic HCC. Chemokine genes such as CCL20 (C-C motif chemokine ligand 20) and CXCL5 (C-X-C motif chemokine ligand 5) were associated with recruitment of both Tregs and HLA-DRlo cDC2 to hypoxia-high microenvironments. The interaction between Tregs and cDC2 under a hypoxic TME resulted in a loss of antigen-presenting HLA-DR on cDC2. Conclusions We uncovered the unique immunosuppressive landscapes and identified key immune subsets enriched in hypoxic HCC. In particular, we identified a potential Treg-mediated immunosuppression through interaction with a cDC2 subset in HCC that could be exploited for immunotherapies.

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