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Published on: July 20, 2016
A2A adenosine receptor protects tumors from antitumor T cells
Akio Ohta1, Elieser Gorelik, Simon J Prasad
1Laboratory of Immunology, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
Abstract:
The A2A adenosine receptor (A2AR) has been shown to be a critical and nonredundant negative regulator of immune cells in protecting normal tissues from inflammatory damage. We hypothesized that A2AR also protects cancerous tissues by inhibiting incoming antitumor T lymphocytes. Here we confirm this hypothesis by showing that genetic deletion of A2AR in the host resulted in rejection of established immunogenic tumors in approximately 60% of A2AR-deficient mice with no rejection observed in control WT mice. The use of antagonists, including caffeine, or targeting the A2 receptors by siRNA pretreatment of T cells improved the inhibition of tumor growth, destruction of metastases, and prevention of neovascularization by antitumor T cells. The data suggest that effects of A2AR are T cell autonomous. The inhibition of antitumor T cells via their A2AR in the adenosine-rich tumor microenvironment may explain the paradoxical coexistence of tumors and antitumor immune cells in some cancer patients (the "Hellstrom paradox"). We propose to target the hypoxia-->adenosine-->A2AR pathway as a cancer immunotherapy strategy to prevent the inhibition of antitumor T cells in the tumor microenvironment. The same strategy may prevent the premature termination of immune response and improve the vaccine-induced development of antitumor and antiviral T cells. The observations of autoimmunity during melanoma rejection in A2AR-deficient mice suggest that A2AR in T cells is also important in preventing autoimmunity. Thus, although using the hypoxia-->adenosine-->A2AR pathway inhibitors may improve antitumor immunity, the recruitment of this pathway by selective drugs is expected to attenuate the autoimmune tissue damage.
Insights
The A2A adenosine receptor (A2AR) inhibits antitumor T cells, promoting cancer growth. Blocking A2AR with antagonists or genetic deletion enhances T cell-mediated tumor rejection and may improve cancer immunotherapy.
Area of Science:
- Immunology
- Cancer Biology
- Pharmacology
Background:
- The A2A adenosine receptor (A2AR) negatively regulates immune cells, protecting normal tissues.
- A2AR's role in protecting cancerous tissues by inhibiting antitumor T lymphocytes was hypothesized.
Purpose of the Study:
- To investigate the role of A2AR in regulating antitumor T cells and tumor immunity.
- To explore targeting the hypoxia-adenosine-A2AR pathway as a cancer immunotherapy strategy.
Main Methods:
- Genetic deletion of A2AR in mice.
- Administration of A2AR antagonists (e.g., caffeine) and siRNA pretreatment of T cells.
- Assessment of tumor rejection, growth, metastasis, and neovascularization.
Main Results:
- Genetic deletion of A2AR led to rejection of established tumors in 60% of mice.
- A2AR antagonists and siRNA targeting A2A receptors enhanced antitumor T cell activity.
- A2AR's effects were T cell-autonomous, potentially explaining the "Hellstrom paradox".
Conclusions:
- A2AR actively inhibits antitumor T cells within the tumor microenvironment.
- Targeting the hypoxia-adenosine-A2AR pathway is a promising cancer immunotherapy strategy.
- A2AR also plays a role in preventing T cell-mediated autoimmunity.
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