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In Vitro Tumor Cell Rechallenge For Predictive Evaluation of Chimeric Antigen Receptor T Cell Antitumor Function
Published on: February 27, 2019
BAY 60-6583 Enhances the Antitumor Function of Chimeric Antigen Receptor-Modified T Cells Independent of the
Jiaxing Tang1,2,3,4, Yan Zou1, Long Li1
1Shanghai Institute for Advanced Immunochemical Studies, ShanghaiTech University, Shanghai, China.
Abstract:
Chimeric antigen receptor (CAR) T cells are powerful in eradicating hematological malignancies, but their efficacy is limited in treating solid tumors. One of the barriers is the immunosuppressive response induced by immunomodulatory signaling pathways. Pharmacological targeting of these immunosuppressive pathways may be a simple way to improve the efficacy of CAR T cells. In this study, anti-CD133 and anti-HER2 CAR T cells were generated from healthy donors, and combination therapy using CAR T cells and small molecules targeting adenosine receptors was performed in vitro and in vivo with the goal of probing for potential synergistic antitumor activities. The adenosine A2b receptor agonist, BAY 60-6583, was found to significantly increase cytokine secretion of CD133-or HER2-specific CAR T cells when co-cultured with the respective target tumor cells. The in vitro cytotoxicity and proliferation of CAR T cells were also enhanced when supplied with BAY 60-6583. Furthermore, the combination with this small molecule facilitated the anti-HER2 CAR T cell-mediated elimination of tumor cells in a xenograft mouse model. However, the enhanced antitumor activities could not be suppressed by knockout of the adenosine A2b receptor in CAR T cells. Furthermore, mass spectrometry and computational methods were used to predict several potential alternative targets. Four potential targets (pyruvate kinase M (PKM), Talin-1, Plastin-2, and lamina-associated polypeptide 2) were captured by a photo-affinity probe, of which PKM and Talin-1 were predicted to interact with BAY 60-6583. Overall, our data suggest that BAY 60-6583 upregulates T cell functions through a mechanism independent of the adenosine A2b receptor.
Insights
BAY 60-6583 enhances chimeric antigen receptor (CAR) T cell therapy against solid tumors by boosting cytokine secretion and cytotoxicity. This effect occurs independently of the adenosine A2b receptor, revealing new therapeutic targets for CAR T cell enhancement.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Chimeric antigen receptor (CAR) T cells show promise against hematological cancers but face challenges in solid tumors due to immunosuppressive microenvironments.
- Targeting immunosuppressive pathways pharmacologically offers a strategy to enhance CAR T cell efficacy.
Purpose of the Study:
- To investigate the synergistic antitumor potential of combining CAR T cells with small molecules targeting adenosine receptors.
- To explore the mechanism of action of the adenosine A2b receptor agonist BAY 60-6583 in enhancing CAR T cell function.
Main Methods:
- Generation of anti-CD133 and anti-HER2 CAR T cells.
- In vitro and in vivo evaluation of combination therapy with BAY 60-6583.
- Adenosine A2b receptor knockout experiments in CAR T cells.
- Mass spectrometry and computational analysis to identify BAY 60-6583 targets.
Main Results:
- BAY 60-6583 significantly increased cytokine secretion, cytotoxicity, and proliferation of CD133- or HER2-specific CAR T cells.
- Combination therapy enhanced anti-HER2 CAR T cell-mediated tumor elimination in a xenograft mouse model.
- Enhanced antitumor activity persisted even after adenosine A2b receptor knockout in CAR T cells.
- PKM and Talin-1 were identified as potential direct targets of BAY 60-6583.
Conclusions:
- BAY 60-6583 enhances CAR T cell antitumor functions through a mechanism independent of the adenosine A2b receptor.
- This study identifies novel targets and a potential strategy for improving CAR T cell therapy in solid tumors.
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