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Published on: August 2, 2024
Immune Mechanisms of Resistance to Cediranib in Ovarian Cancer
Ganga Gopinathan1, Chiara Berlato1, Anissa Lakhani1
1Barts Cancer Institute, Barts and The London School of Medicine and Dentistry, Queen Mary University of London; London, United Kingdom.
Abstract:
This article investigates mechanisms of resistance to the VEGF receptor inhibitor cediranib in high-grade serous ovarian cancer (HGSOC), and defines rational combination therapies. We used three different syngeneic orthotopic mouse HGSOC models that replicated the human tumor microenvironment (TME). After 4 to 5 weeks treatment of established tumors, cediranib had antitumor activity with increased tumor T-cell infiltrates and alterations in myeloid cells. However, continued cediranib treatment did not change overall survival or the immune microenvironment in two of the three models. Moreover, treated mice developed additional peritoneal metastases not seen in controls. Cediranib-resistant tumors had intrinsically high levels of IL6 and JAK/STAT signaling and treatment increased endothelial STAT3 activation. Combination of cediranib with a murine anti-IL6 antibody was superior to monotherapy, increasing mouse survival, reducing blood vessel density, and pSTAT3, with increased T-cell infiltrates in both models. In a third HGSOC model, that had lower inherent IL6 JAK/STAT3 signaling in the TME but high programmed cell death protein 1 (PD-1) signaling, long-term cediranib treatment significantly increased overall survival. When the mice eventually relapsed, pSTAT3 was still reduced in the tumors but there were high levels of immune cell PD-1 and Programmed death-ligand 1. Combining cediranib with an anti-PD-1 antibody was superior to monotherapy in this model, increasing T cells and decreasing blood vessel densities. Bioinformatics analysis of two human HGSOC transcriptional datasets revealed distinct clusters of tumors with IL6 and PD-1 pathway expression patterns that replicated the mouse tumors. Combination of anti-IL6 or anti-PD-1 in these patients may increase activity of VEGFR inhibitors and prolong disease-free survival.
Insights
Cediranib resistance in ovarian cancer involves IL6/JAK/STAT or PD-1 pathways. Combining cediranib with anti-IL6 or anti-PD-1 antibodies may improve treatment efficacy and survival in high-grade serous ovarian cancer (HGSOC).
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- High-grade serous ovarian cancer (HGSOC) remains a significant challenge, with resistance to targeted therapies like VEGF receptor inhibitors limiting clinical success.
- Understanding resistance mechanisms is crucial for developing effective combination strategies.
Purpose of the Study:
- To investigate cediranib resistance mechanisms in HGSOC models.
- To identify rational combination therapies to overcome resistance and improve outcomes.
Main Methods:
- Utilized three syngeneic orthotopic mouse HGSOC models mimicking the human tumor microenvironment (TME).
- Administered cediranib monotherapy and combination therapies (anti-IL6 or anti-PD-1 antibodies).
- Analyzed tumor growth, survival, immune cell infiltrates, and signaling pathways (IL6, JAK/STAT, PD-1).
- Performed bioinformatics analysis on human HGSOC datasets.
Main Results:
- Cediranib showed initial antitumor activity but led to resistance and increased metastases in two models.
- Resistance was associated with high IL6/JAK/STAT signaling.
- Combination with anti-IL6 antibody improved survival and reduced tumor burden.
- In a third model with high PD-1 signaling, cediranib improved survival, and combination with anti-PD-1 antibody enhanced T-cell infiltration and reduced vascularization.
- Human HGSOC datasets showed distinct IL6 and PD-1 pathway expression patterns.
Conclusions:
- Cediranib resistance in HGSOC is mediated by distinct IL6/JAK/STAT and PD-1 signaling pathways.
- Combination therapy with anti-IL6 or anti-PD-1 antibodies can overcome cediranib resistance.
- Targeting these pathways may enhance VEGFR inhibitor activity and prolong disease-free survival in HGSOC patients.
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