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Tumor cell p38 inhibition to overcome immunotherapy resistance
Jason J Luke1,2, Rebekah E Dadey1,2, Ryan C Augustin1,2
1Hillman Cancer Center, UPMC, Pittsburgh, PA, USA.
Abstract:
Patients with tumors that do not respond to immune-checkpoint inhibition often harbor a non-T cell-inflamed tumor microenvironment, characterized by the absence of IFN-γ-associated CD8+ T cell and dendritic cell activation. Understanding the molecular mechanisms underlying immune exclusion in non-responding patients may enable the development of novel combination therapies. p38 MAPK is a known regulator of dendritic and myeloid cells however a tumor-intrinsic immunomodulatory role has not been previously described. Here we identify tumor cell p38 signaling as a therapeutic target to potentiate anti-tumor immunity and overcome resistance to immune-checkpoint inhibitors (ICI). Molecular analysis of tumor tissues from patients with human papillomavirus-negative head and neck squamous carcinoma reveals a p38-centered network enriched in non-T cell-inflamed tumors. Pan-cancer single-cell RNA analysis suggests that p38 activation may be an immune-exclusion mechanism across multiple tumor types. P38 knockdown in cancer cell lines increases T cell migration, and p38 inhibition plus ICI in preclinical models shows greater efficacy compared to monotherapies. In a clinical trial of patients refractory to PD1/L1 therapy, pexmetinib, a p38 inhibitor, plus nivolumab demonstrated deep and durable clinical responses. Targeting of p38 with anti-PD1 has the potential to induce the T cell-inflamed phenotype and overcome immunotherapy resistance.
Insights
Targeting p38 signaling in cancer cells can overcome resistance to immune-checkpoint inhibitors (ICI). This approach enhances anti-tumor immunity by promoting T cell infiltration, leading to improved patient responses.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Many patients with non-T cell-inflamed tumors do not respond to immune-checkpoint inhibitors (ICI) due to absent T cell and dendritic cell activation.
- Understanding immune exclusion mechanisms is crucial for developing novel combination therapies to improve cancer treatment outcomes.
Approach:
- Investigated the role of p38 MAPK signaling within tumor cells as a potential immunomodulatory target.
- Analyzed tumor tissues from head and neck squamous cell carcinoma patients and performed pan-cancer single-cell RNA analysis.
- Conducted preclinical studies involving p38 inhibition combined with ICI and a clinical trial using pexmetinib plus nivolumab.
Key Points:
- Tumor cell p38 signaling was identified as a therapeutic target to enhance anti-tumor immunity and overcome ICI resistance.
- A p38-centered network was found in non-T cell-inflamed tumors, suggesting p38 activation as an immune-exclusion mechanism across various cancer types.
- P38 inhibition increased T cell migration and demonstrated superior efficacy when combined with ICI in preclinical models.
Conclusions:
- Targeting p38 signaling in cancer cells shows potential to convert non-T cell-inflamed tumors into a T cell-inflamed phenotype.
- Combination therapy of p38 inhibition with anti-PD1/PD-L1 represents a promising strategy to overcome immunotherapy resistance and achieve durable clinical responses.
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