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Published on: November 15, 2024
Retinoic-acid-orphan-receptor-C inhibition suppresses Th17 cells and induces thymic aberrations
Christine Guntermann1, Alessandro Piaia2, Marie-Laure Hamel3
1Autoimmunity, Transplantation, and Inflammation Disease Area.
Abstract:
Retinoic-acid-orphan-receptor-C (RORC) is a master regulator of Th17 cells, which are pathogenic in several autoimmune diseases. Genetic Rorc deficiency in mice, while preventing autoimmunity, causes early lethality due to metastatic thymic T cell lymphomas. We sought to determine whether pharmacological RORC inhibition could be an effective and safe therapy for autoimmune diseases by evaluating its effects on Th17 cell functions and intrathymic T cell development. RORC inhibitors effectively inhibited Th17 differentiation and IL-17A production, and delayed-type hypersensitivity reactions. In vitro, RORC inhibitors induced apoptosis, as well as Bcl2l1 and BCL2L1 mRNA downregulation, in mouse and nonhuman primate thymocytes, respectively. Chronic, 13-week RORC inhibitor treatment in rats caused progressive thymic alterations in all analyzed rats similar to those in Rorc-deficient mice prior to T cell lymphoma development. One rat developed thymic cortical hyperplasia with preneoplastic features, including increased mitosis and reduced IKAROS expression, albeit without skewed T cell clonality. In summary, pharmacological inhibition of RORC not only blocks Th17 cell development and related cytokine production, but also recapitulates thymic aberrations seen in Rorc-deficient mice. While RORC inhibition may offer an effective therapeutic principle for Th17-mediated diseases, T cell lymphoma with chronic therapy remains an apparent risk.
Insights
Pharmacological Retinoic-acid-orphan-receptor-C (RORC) inhibition effectively targets autoimmune Th17 cells but carries a risk of T cell lymphoma, similar to genetic RORC deficiency in mice.
Area of Science:
- Immunology
- Molecular Biology
- Oncology
Background:
- Retinoic-acid-orphan-receptor-C (RORC) is a key regulator of pathogenic Th17 cells implicated in autoimmune diseases.
- Genetic deficiency of RORC in mice prevents autoimmunity but leads to early mortality from thymic T cell lymphomas.
Purpose of the Study:
- To assess the efficacy and safety of pharmacological RORC inhibition for autoimmune diseases.
- To evaluate RORC inhibition's effects on Th17 cell function and thymic T cell development.
Main Methods:
- In vitro and in vivo studies using RORC inhibitors in mouse, nonhuman primate, and rat models.
- Assessment of Th17 cell differentiation, IL-17A production, delayed-type hypersensitivity, thymocyte apoptosis, gene expression, and thymic histopathology.
Main Results:
- RORC inhibitors suppressed Th17 differentiation, IL-17A production, and delayed-type hypersensitivity.
- In vitro, inhibitors induced thymocyte apoptosis and downregulated Bcl2l1/BCL2L1 mRNA.
- Chronic treatment in rats caused thymic alterations mirroring Rorc-deficient mice, with one rat showing preneoplastic hyperplasia.
Conclusions:
- Pharmacological RORC inhibition effectively targets Th17-mediated autoimmune pathways.
- However, chronic RORC inhibition recapitulates thymic abnormalities seen in Rorc-deficient mice, indicating a potential risk for T cell lymphoma.
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