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Published on: February 14, 2025
Recent advances in the development of AHR antagonists in immuno-oncology
1Center for Drug Discovery and Translational Research, Department of Surgery, Beth Israel Deaconess Medical Center, Harvard Medical School Boston MA 02215 USA lsun1@bidmc.harvard.edu.
Abstract:
The arylhydrocarbon receptor (AHR) is a ligand activated transcription factor that controls the expression of a number of immunosuppressive signaling molecules, including the immune checkpoint proteins PD-1/L1 and cytokine IL-10. AHR activation also stimulates the formation and recruitment of tolerogenic dendritic cells, tumor associated macrophages, and regulatory T cells in the tumor microenvironment, which restrains antitumoral immune response. Overexpression of AHR has been observed in a number of different types of cancer and suggested to contribute to immune dysfunction and cancer progression. One prominent endogenous ligand of AHR is the oncometabolite kynurenine, a product of tryptophan metabolism catalyzed by the dioxygenases IDO1 and TDO that are often aberrantly activated in cancer. AHR has gained significant interest as a drug target for the development of novel small molecule cancer immunotherapies, as evidenced by the advancement of two clinical candidates into phase 1 clinical trials in patients with advanced cancer. Discussed in this Review is a brief background of AHR in immuno-oncology and the recent progress in the discovery and development of AHR antagonists.
Insights
The aryl hydrocarbon receptor (AHR) promotes cancer immune evasion by suppressing anti-tumor responses. Inhibiting AHR is a promising strategy for novel cancer immunotherapies, with drug candidates in clinical trials.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- The aryl hydrocarbon receptor (AHR) is a transcription factor regulating immunosuppressive molecules like PD-1/L1 and IL-10.
- AHR activation fosters a tumor microenvironment that hinders anti-tumor immunity by promoting tolerogenic cells.
- AHR overexpression is linked to immune dysfunction and cancer progression in various cancers.
Purpose of the Study:
- To review the role of AHR in cancer immuno-oncology.
- To discuss recent advancements in developing AHR antagonists for cancer therapy.
Main Methods:
- Literature review of AHR's function in cancer immunity.
- Analysis of AHR antagonists and their clinical development.
Main Results:
- AHR signaling contributes to immune suppression in the tumor microenvironment.
- Aberrant tryptophan metabolism, via IDO1 and TDO, produces kynurenine, an AHR ligand.
- Two AHR antagonist clinical candidates have advanced to Phase 1 trials.
Conclusions:
- AHR is a significant target for cancer immunotherapy development.
- Targeting AHR offers a novel approach to overcome cancer-induced immune suppression.
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