4.8 Article

The aryl hydrocarbon receptor suppresses immunity to oral squamous cell carcinoma through immune checkpoint regulation

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2012692118

关键词

aryl hydrocarbon receptor; & nbsp; oral squamous cell carcinoma; & nbsp; immune checkpoint; & nbsp; dioxin; environmental

资金

  1. AnTolRx Inc.
  2. Find The Cause Breast Cancer Foundation
  3. Hahnemann Foundation
  4. Diercks family
  5. [R21 ES029624]
  6. [R01 ES029136]
  7. [P42 ES007381]
  8. [R01 ES025409]

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The study shows the central role of AhR in regulating multiple immune checkpoints in oral squamous cell carcinoma. Deletion of AhR in mouse OSCC cells results in complete rejection of tumors and increased T cell activation. This suggests AhR as a potential target for modulating immune response in cancer treatment.
Immune checkpoint inhibitors represent some of the most important cancer treatments developed in the last 20 y. However, existing immunotherapy approaches benefit only a minority of patients. Here, we provide evidence that the aryl hydrocarbon receptor (AhR) is a central player in the regulation of multiple immune checkpoints in oral squamous cell carcinoma (OSCC). Orthotopic transplant of mouse OSCC cells from which the AhR has been deleted (MOC1AhRKO) results, within 1 wk, in the growth of small tumors that are then completely rejected within 2 wk, concomitant with an increase in activated T cells in tumor-draining lymph nodes (tdLNs) and T cell signaling within the tumor. By 2 wk, AhR* control cells (MOC1Cas9), but not MOC1AhR-KO cells up-regulate exhaustion pathways in the tumor-infiltrating T cells and expression of checkpoint molecules on CD4* T cells (PD-1, CTLA4, Lag3, and CD39) and macrophages, dendritic cells, and Ly6G* myeloid cells (PD-L1 and CD39) in tdLNs. Notably, MOC1AhR-KO cell transplant renders mice 100% immune to later challenge with wild-type tumors. Analysis of altered signaling pathways within MOC1AhR-KO cells shows that the AhR controls baseline and IFN gamma-induced Ido and PD-L1 expression, the latter of which occurs through direct transcriptional control. These observations 1) confirm the importance of malignant cell AhR in suppression of tumor immunity, 2) demonstrate the involvement of the AhR in IFN gamma control of PD-L1 and IDO expression in the cancer context, and 3) suggest that the AhR is a viable target for modulation of multiple immune checkpoints.

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