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cGAS-STING pathway activation drives the cold-to-hot tumor transition and sensitizes immunotherapy
Xinru Zhao1,2, Shuai Meng2, Hanzeng Cheng3
1School of Chinese Materia Medica, Tianjin University of Traditional Chinese Medicine, Tianjin 301617, China.
Abstract:
The cyclic GMP-AMP synthase-stimulator of interferon genes (cGAS-STING) pathway is a central sensor of innate immunity that plays critical roles in recognizing cytosolic DNA and initiating antitumor immune responses. However, this pathway exhibits extensive spatiotemporal duality and context dependency in tumor regulation. In recent years, modulating this pathway to convert immunologically "cold" tumors into immunologically "hot," inflamed tumors has emerged as a cutting-edge strategy to reverse resistance to immune checkpoint inhibitors (ICIs). This review outlines the molecular mechanisms underlying the activation and regulation of the cGAS-STING pathway, with emphasis on its complex role in orchestrating the tumor immune phenotypic switch. A nuanced analysis of the pathway's duality distinguishes between acute immunostimulatory activation and chronic, pro-tumorigenic inflammation driven by chromosomal instability (CIN). Furthermore, current evidence regarding direct and indirect T-cell modulation, as well as pathway-mediated remodeling of the tumor microenvironment (TME) across diverse malignancies, is discussed in detail. Crucially, the current bottlenecks in clinical translation are described, including evaluation of the failure of first-generation agonists and the promise of next-generation delivery platforms such as antibody-drug conjugates (ADCs) and nanoparticle systems. Finally, a novel strategic framework is proposed involving mapping of specific STING-targeted modalities to distinct TME phenotypes, such as immune-desert, immune-excluded, and exhausted-inflamed states. A detailed understanding of the cGAS-STING axis has substantial value in providing theoretical guidance and supporting clinical translation in the development of next-generation combination immunotherapies, as well as broadening the patient population benefiting from clinical interventions.
Insights
The cyclic GMP-AMP synthase-stimulator of interferon genes (cGAS-STING) pathway senses DNA to initiate anti-tumor immunity. Modulating this pathway can convert "cold" tumors to "hot," improving responses to immune checkpoint inhibitors.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- The cGAS-STING pathway is a key innate immune sensor for cytosolic DNA.
- Its role in tumor regulation is complex, showing spatiotemporal duality and context dependency.
- Modulating cGAS-STING is a promising strategy to overcome resistance to immune checkpoint inhibitors (ICIs).
Purpose of the Study:
- To review the molecular mechanisms of cGAS-STING pathway activation and regulation.
- To analyze its complex role in the tumor immune phenotypic switch.
- To discuss clinical translation challenges and propose a strategic framework for STING-targeted therapies.
Main Methods:
- Literature review of cGAS-STING pathway mechanisms in cancer.
- Analysis of pathway duality: immunostimulatory vs. pro-tumorigenic inflammation.
- Evaluation of clinical translation bottlenecks and next-generation delivery platforms.
Main Results:
- The cGAS-STING pathway orchestrates tumor immune phenotypes, switching "cold" to "hot" tumors.
- Duality observed: acute immunostimulation versus chronic inflammation driven by chromosomal instability (CIN).
- Next-generation delivery platforms (ADCs, nanoparticles) show promise over first-generation agonists.
Conclusions:
- Understanding the cGAS-STING axis is crucial for developing novel combination immunotherapies.
- A strategic framework mapping STING modalities to TME phenotypes is proposed.
- Targeting cGAS-STING can broaden patient populations benefiting from cancer immunotherapy.
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