HDAC3 inhibitors induce drug resistance by promoting IL-17 A production by T cells
1Hebei Key Laboratory for Chronic Diseases, Tangshan Key Laboratory for Preclinical and Basic Research on Chronic Diseases, School of Basic Medical Sciences, North China University of Science and Technology, Tangshan, 063210, China.
Abstract:
HDAC3 has been demonstrated to play a crucial role in the progression of various tumors and the differentiation and development of T cells. However, its impact on peripheral T cells in the development of murine lung cancer remains unclear. In this experiment, a subcutaneous lung tumor model was established in C57BL/6 mice, and tumor-bearing mice were treated with the specific inhibitor of HDAC3, RGFP966, at different doses to observe changes in tumor size. Additionally, a lung tumor model was established using hdac3fl/flcd4cre+/+ mice to investigate its mechanism. Mice injected with 10 mg/kg RGFP966 had the smallest tumor volume, while those injected with 30 mg/kg RGFP966 had the largest tumors. Flow cytometry analysis revealed that the expression of HDAC3 in splenic T cells was reduced in all groups of mice, while IFN-γ and IL-17 A were increased. Moreover, the expression of granzyme B and perforin in splenic CD8+ T cells was increased in all groups of mice. Compared to the use of 30 mg/kg RGFP966 alone, the combination with anti-IL-17 A mAb reduced the infiltration of Neutrophils and exhausted T cells in mouse tumors, thereby impeding tumor development. These findings demonstrate that the use of RGFP966 or T cell-specific loss of hdac3 promotes the expression of IL-17 A in splenic T cells, leading to tumor resistance and providing insights for clinical treatment.
Insights
HDAC3 inhibition or loss in T cells boosts IL-17A, enhancing anti-tumor immunity. This suggests RGFP966 and T cell-specific HDAC3 loss can impede lung cancer progression.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Histone deacetylase 3 (HDAC3) is implicated in tumor progression and T cell development.
- The role of HDAC3 in peripheral T cells during murine lung cancer is not well understood.
Purpose of the Study:
- To investigate the impact of HDAC3 inhibition and T cell-specific loss on lung cancer development in mice.
- To explore the underlying mechanisms involving T cell responses.
Main Methods:
- Establishment of subcutaneous lung tumor models in C57BL/6 mice.
- Treatment with the HDAC3 inhibitor RGFP966 at varying doses.
- Utilizing hdac3fl/flcd4cre+/+ mice for T cell-specific knockout studies.
- Flow cytometry analysis of splenic T cells and tumor-infiltrating immune cells.
Main Results:
- RGFP966 treatment showed dose-dependent effects on tumor volume, with 10 mg/kg resulting in the smallest tumors.
- HDAC3 inhibition/loss increased splenic T cell expression of IFN-γ and IL-17A.
- Increased expression of granzyme B and perforin in splenic CD8+ T cells was observed.
- Combination therapy (RGFP966 + anti-IL-17A mAb) reduced neutrophil and exhausted T cell infiltration, impeding tumor growth.
Conclusions:
- HDAC3 inhibition or T cell-specific loss promotes IL-17A expression in splenic T cells.
- This promotes tumor resistance and suggests potential therapeutic strategies for lung cancer.
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