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Overcoming high level adenosine-mediated immunosuppression by DZD2269, a potent and selective A2aR antagonist
Yu Bai1,2, Xin Zhang2, Jie Zheng2
1Biomed-X Center, Academy for Advanced Interdisciplinary Studies, Peking University, 100871, Beijing, China.
Background:
Adenosine is a potent immunosuppressant whose levels in the tumor microenvironment (TME) are often much higher than those in normal tissues. Binding of adenosine to its receptor A2aR activates a cascade of genes and leads to immunosuppression. In addition, immune checkpoint blockage markedly increases A2aR expression in T cells, which could dampen their anti-tumor response. Several A2aR antagonists are under clinical development, but with limited clinical benefit reported so far. These A2aR antagonists showed much diminished activity at high adenosine levels found in TME, which may explain their clinical underperformance. We report the discovery and early clinical development of DZD2269, a novel A2aR antagonist which can fully block A2aR mediated immunosuppression commonly found in TME. Adenosine stimulates phosphorylation of cyclic AMP response element binding protein (CREB) in T cells and inhibits anti-tumor cytokine secretion in PBMCs in a dose-dependent manner. DZD2269 was able to reverse the immunosuppression induced by high concentrations of adenosine, as demonstrated by inhibiting CREB phosphorylation in T cells, restoring Th1 cytokine secretion in PBMCs, and stimulating dendritic cells (DCs) maturation. As a single agent, DZD2269 showed anti-tumor growth in multiple syngeneic mouse tumor models, and more profound anti-tumor effects were observed when DZD2269 was in combination with immune checkpoint inhibitors, radiotherapy, or chemotherapy. A good PK/PD relationship was observed in these animal models. In the phase 1 clinical study, downregulation of pCREB was detected in human T cells, consistent with preclinical prediction. Our data support further clinical development of DZD2269 in patients with cancer.
Methods:
The selectivity of DZD2269 for adenosine receptors was tested in engineered cell lines, and its efficacy in blocking A2aR signaling and reversing adenosine-mediated immunosuppression was assessed in human T cells and peripheral blood mononuclear cells (PBMCs). The anti-tumor effects of DZD2269 were evaluated in multiple syngeneic mouse models as a single agent as well as in combination with chemotherapy, radiotherapy, or immune checkpoint inhibitors. A phase 1 study in healthy volunteers (NCT04932005) has been initiated to assess safety, pharmacokinetics (PK) and pharmacodynamics (PD) of DZD2269.
Results:
Adenosine stimulates phosphorylation of cyclic AMP response element binding protein (CREB) in T cells and inhibits anti-tumor cytokine secretion in PBMCs in a dose-dependent manner. DZD2269 was able to reverse the immunosuppression induced by high concentrations of adenosine, as demonstrated by inhibiting CREB phosphorylation in T cells, restoring Th1 cytokine secretion in PBMCs, and stimulating dendritic cells (DCs) maturation. As a single agent, DZD2269 showed anti-tumor growth in multiple syngeneic mouse tumor models, and more profound anti-tumor effects were observed when DZD2269 was in combination with immune checkpoint inhibitors, radiotherapy, or chemotherapy. A good PK/PD relationship was observed in these animal models. In the phase 1 clinical study, downregulation of pCREB was detected in human T cells, consistent with preclinical prediction.
Conclusion:
DZD2269 is a novel A2aR antagonist which can fully block A2aR mediated immunosuppression commonly found in TME. Clinical development of DZD2269 in patients with cancer is warranted (NCT04634344).
Insights
A novel A2aR antagonist, DZD2269, effectively reverses adenosine-mediated immunosuppression in the tumor microenvironment (TME). This drug shows promising anti-tumor activity as a single agent and in combination therapies, warranting further clinical development for cancer patients.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Adenosine, a potent immunosuppressant, accumulates in the tumor microenvironment (TME), suppressing anti-tumor immune responses via the A2a receptor (A2aR).
- Existing A2aR antagonists show limited efficacy in the TME due to high adenosine levels, which also increase A2aR expression on T cells.
- DZD2269 is a novel A2aR antagonist designed to overcome these limitations and block A2aR-mediated immunosuppression.
Purpose of the Study:
- To report the discovery and early clinical development of DZD2269, a novel A2aR antagonist.
- To evaluate DZD2269's ability to counteract adenosine-induced immunosuppression in preclinical models.
- To assess DZD2269's anti-tumor efficacy as a single agent and in combination therapies.
Main Methods:
- Assessed DZD2269 selectivity for adenosine receptors and its efficacy in blocking A2aR signaling in human T cells and PBMCs.
- Evaluated anti-tumor effects in syngeneic mouse models, both as a single agent and in combination with chemotherapy, radiotherapy, or immune checkpoint inhibitors.
- Initiated a Phase 1 clinical study in healthy volunteers to assess safety, pharmacokinetics (PK), and pharmacodynamics (PD).
Main Results:
- DZD2269 inhibited adenosine-induced CREB phosphorylation and restored Th1 cytokine secretion in PBMCs, demonstrating reversal of immunosuppression.
- DZD2269 stimulated dendritic cell (DC) maturation, enhancing immune cell function.
- In preclinical models, DZD2269 exhibited single-agent anti-tumor growth effects, with enhanced efficacy when combined with other cancer therapies. A favorable PK/PD relationship was observed.
Conclusions:
- DZD2269 effectively blocks A2aR-mediated immunosuppression in the TME, even at high adenosine concentrations.
- Preclinical and early clinical data (Phase 1 study showing pCREB downregulation) support DZD2269's potential as an anti-cancer therapeutic.
- Further clinical development of DZD2269 in cancer patients is warranted.
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