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Inhibitory effect of adenosine on adaptive antitumor immunity and intervention strategies
Longsheng Wang1, Wenxin Zhang2, Jie Zhang2
1College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, China. wls9986@163.com.
Abstract:
Tumors in which the microenvironment is characterized by lack of immune cell infiltration are referred as "cold tumors" and typically exhibit low responsiveness to immune therapy. Targeting the factors contributing to "cold tumors" formation and converting them into "hot tumors" is a novel strategy for improving the efficacy of immunotherapy. Adenosine, a hydrolysis product of ATP, accumulates with a significantly higher concentration in the tumor microenvironments compared with normal tissue and exerts inhibitory effects on tumor-specific adaptive immunity. Tumor cells, dendritic cells, macrophages, and T cells express abundant adenosine receptors on their surfaces. The binding of adenosine to these receptors initiates downstream signaling pathways that suppress tumor antigen presentation and immune cell activation, consequently dampening adaptive immune responses against tumors. Adenosine down-regulates the expression of major histocompatibility complex Ⅱ and co-stimulatory factors on dendritic cells and macrophages, thereby inhibiting antigen presentation to T cells. Adenosine also inhibits ligand-receptor binding and transmembrane signaling on T cells, concomitantly suppressing the secretion of anti-tumor cytokines and impairing T cell activation. Furthermore, adenosine hinders effector T cell trafficking to tumor sites and infiltration by inhibiting chemokine secretion and KCa3.1 channels. Additionally, adenosine promotes the secretion of immunosuppressive cytokines, increases immune checkpoint protein expression, and enhances the activity of immunosuppressive cells, collectively curbing cytotoxic T cell-mediated tumor cell killing. Given the immunosuppressive role of adenosine in adaptive antitumor immunity, several inhibitors targeting adenosine generation or adenosine receptor blockade are currently in preclinical or clinical development with the aim of enhancing the effectiveness of immunotherapies. This review provides an overview of the inhibitory effects of adenosine on adaptive antitumor immunity, elucidate the molecular mechanisms involved, and summarizes the latest advances in application of adenosine inhibition strategies for antitumor immunotherapy.
Insights
Cold tumors resist immunotherapy. Adenosine accumulation in tumors suppresses immune responses by inhibiting T cell activation and trafficking. Targeting adenosine offers a strategy to convert cold tumors into hot tumors, enhancing immunotherapy effectiveness.
Area of Science:
- Immunology
- Oncology
- Biochemistry
Background:
- Cold tumors, lacking immune cell infiltration, show poor response to immunotherapy.
- Adenosine, elevated in tumor microenvironments, suppresses anti-tumor adaptive immunity.
- Adenosine receptors are expressed on various immune and tumor cells, mediating immunosuppression.
Approach:
- Review of adenosine's inhibitory mechanisms on adaptive antitumor immunity.
- Elucidation of molecular pathways affected by adenosine.
- Summary of adenosine inhibition strategies for immunotherapy enhancement.
Key Points:
- Adenosine dampens adaptive immunity by inhibiting antigen presentation, T cell activation, and effector T cell infiltration.
- It down-regulates MHC-II and co-stimulatory factors on antigen-presenting cells.
- Adenosine promotes immunosuppressive cytokines and immune checkpoint expression, hindering cytotoxic T cell activity.
Conclusions:
- Adenosine's immunosuppressive role is critical in the tumor microenvironment.
- Inhibitors targeting adenosine generation or receptor blockade are under development.
- Adenosine inhibition strategies hold promise for improving cancer immunotherapy efficacy.
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