The STING pathway: Therapeutic vulnerabilities in ovarian cancer

Noor Shakfa1,2, Deyang Li1,2, Sarah Nersesian3

  • 1Department of Biomedical and Molecular Sciences, Queen's University, Kingston, ON, Canada.

Insights

High-grade serous ovarian carcinoma (HGSC) often resists treatment. Activating the cGAS-STING pathway may enhance immune responses against HGSC by altering the tumor microenvironment, offering new therapeutic strategies.

Area of Science:

  • Gynecologic Oncology
  • Cancer Immunology
  • Molecular Therapeutics

Background:

  • Ovarian cancer, particularly high-grade serous ovarian carcinoma (HGSC), is a leading cause of cancer mortality.
  • Most HGSC patients develop therapy resistance, despite initial responses, due to tumor heterogeneity and unclear immune infiltration mechanisms.
  • Current immunotherapies show limited efficacy in HGSC, necessitating novel strategies to enhance anti-tumor immunity.

Purpose of the Study:

  • To explore the role of the cyclic GMP-AMP synthase-stimulator of interferon genes (cGAS-STING) pathway in modulating the ovarian tumor microenvironment.
  • To investigate the link between genomic alterations in ovarian tumors and their susceptibility to cGAS-STING pathway activation.
  • To evaluate the therapeutic potential of cGAS-STING pathway activation for ovarian cancer treatment.

Main Methods:

  • Review of current understanding of cGAS-STING pathway activation in ovarian cancer.
  • Analysis of genomic alterations in HGSC and their impact on immune phenotypes.
  • Discussion of factors influencing treatment outcomes for cGAS-STING targeted therapies.

Main Results:

  • Constitutive and induced cGAS-STING pathway activation significantly influences the ovarian tumor microenvironment.
  • Genomic alterations in ovarian tumors can enhance susceptibility to exogenous STING pathway activation.
  • STING pathway activation shows potential to potentiate immune-mediated killing of ovarian cancer cells.

Conclusions:

  • The cGAS-STING pathway represents a promising therapeutic target for ovarian cancer.
  • Understanding the interplay between genomic alterations and immune phenotypes is crucial for optimizing STING-based therapies.
  • Combinatorial treatment approaches involving chemotherapy and cGAS-STING activation warrant further investigation.

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