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Targeting beta-adrenergic receptor pathways in melanoma: how stress modulates oncogenic immunity
Benjamin Switzer1, Igor Puzanov1, Shipra Gandhi1
1Department of Medicine, Roswell Park Comprehensive Cancer Center.
Abstract:
The intricate pathways of the sympathetic nervous system hold an inherently protective role in the setting of acute stress. This is achieved through dynamic immunomodulatory and neurobiological networks. However, excessive and chronic exposure to these stress-induced stimuli appears to cause physiologic dysfunction through several mechanisms that may impair psychosocial, neurologic, and immunologic health. Numerous preclinical observations have identified the beta-2 adrenergic receptor (β2-AR) subtype to possess the strongest impact on immune dysfunction in the setting of chronic stressful stimuli. This prolonged expression of β2-ARs appears to suppress immune surveillance and promote tumorigenesis within multiple cancer types. This occurs through several pathways, including (1) decreasing the frequency and function of CD8 + T-cells infiltrating the tumor microenvironment (TME) via inhibition of metabolic reprogramming during T cell activation, and (2) establishing an immunosuppressive profile within the TME including promotion of an exhausted T cell phenotype while simultaneously enhancing local and paracrine metastatic potential. The use of nonselective β-AR antagonists appears to reverse many chronic stress-induced tumorigenic pathways and may also provide an additive therapeutic benefit for various immune checkpoint modulating agents including commonly utilized immune checkpoint inhibitors. Here we review the translational and clinical observations highlighting the foundational hypotheses that chronic stress-induced β-AR signaling promotes a pro-tumoral immunophenotype and that blockade of these pathways may augment the therapeutic response of immune checkpoint inhibition within the scope of melanoma.
Insights
Chronic stress promotes tumor growth by activating beta-2 adrenergic receptors (β2-ARs), suppressing anti-tumor immunity. Blocking these receptors may enhance cancer immunotherapy effectiveness, particularly in melanoma.
Area of Science:
- Neuroimmunology
- Oncology
- Pharmacology
Background:
- Sympathetic nervous system activation during acute stress is protective.
- Chronic stress, however, dysregulates neuro-immune networks, potentially impairing health.
- Beta-2 adrenergic receptors (β2-ARs) are implicated in stress-induced immune dysfunction and cancer promotion.
Approach:
- Review of preclinical and clinical data on β2-AR signaling in chronic stress and cancer.
- Examination of mechanisms by which β2-ARs suppress anti-tumor immunity.
- Evaluation of β-AR antagonists as potential adjuncts to cancer therapies.
Key Points:
- Chronic stress-induced β2-AR signaling suppresses CD8+ T-cell function within the tumor microenvironment (TME).
- This signaling promotes an immunosuppressive TME and enhances tumor cell metastatic potential.
- Nonselective β-AR antagonists may reverse these pro-tumoral effects.
Conclusions:
- Chronic stress promotes a pro-tumoral immunophenotype via β2-AR signaling.
- β-AR blockade could enhance the efficacy of immune checkpoint inhibitors.
- Targeting β-AR pathways represents a potential therapeutic strategy for melanoma and other cancers.
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