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Published on: October 27, 2020
p38 blockade reverses the immune suppressive tumor microenvironment in metastatic breast cancer
Priyanka Rajan1, Robert Zollo1, Yanqi Guo1
1Roswell Park Comprehensive Cancer Center.
Abstract:
Metastatic breast cancer (MBC) is a life-threatening disease with limited therapeutic options. The immune suppressive tumor microenvironment (TME) limits the potency of the antitumor immune response and facilitates disease progression and metastasis. Our current study demonstrates that p38α is a druggable target in the TME that regulates the outcome of the immune-tumor interaction. The study revealed that systemic blockade of p38α reduces metastasis, and this anti-metastatic response is negated by depletion of CD8+ T cells. Single-cell transcriptomic analysis of the immune-TME showed that pharmacological p38 inhibition (p38i) or tumor-specific inactivation of p38α by CRISPR/Cas9 (p38KO) resulted in a less exhausted and more activated CD8+ T cell phenotype. Immunophenotyping analyses demonstrated that p38 blockade reduced the expression of multiple inhibitory receptors on CD8+ T cells (i.e., PD-1, LAG-3, CTLA-4), indicating a reversal of immune exhaustion and enhanced immune activation systemically and in the TME. In contrast, p38 blockade did not exhibit inhibitory effects on T cells in proliferation assays in vitro and did not affect the proportion of regulatory T cells in vivo. The major negative impact of p38 blockade in vivo was on the myeloid populations, such as myeloid-derived suppressor cells (MDSCs) and tumor-associated macrophages (TAMs). Further, tumor p38α activity was required for the expression of cytokines/chemokines and tumor-derived exosomes with high chemotactic capacity for myeloid cells. Altogether, this study highlights a previously unrecognized the p38α-driven pathway that promotes an immune suppressive TME and metastasis, and that therapeutic blockade of p38α has important implications for improving antitumor immunity and patient outcomes.
Insights
Blocking p38α reduces metastasis in breast cancer by enhancing CD8+ T cell activity and reducing immune suppressive myeloid cells. This reveals a new therapeutic target for improving antitumor immunity.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Metastatic breast cancer (MBC) presents limited treatment options due to an immune-suppressive tumor microenvironment (TME).
- The TME hinders effective antitumor immune responses, promoting cancer progression and metastasis.
Purpose of the Study:
- To investigate p38α as a druggable target within the TME.
- To elucidate the role of p38α in regulating immune-tumor interactions and metastasis.
Main Methods:
- Systemic blockade of p38α, CD8+ T cell depletion, CRISPR/Cas9-mediated p38α inactivation.
- Single-cell transcriptomic analysis, immunophenotyping, in vitro proliferation assays.
Main Results:
- p38α blockade reduced metastasis, dependent on CD8+ T cells.
- Inhibition of p38α reversed CD8+ T cell exhaustion, enhancing their activation and reducing inhibitory receptors (PD-1, LAG-3, CTLA-4).
- p38α blockade impacted myeloid populations (MDSCs, TAMs) and reduced pro-myeloid cytokines/chemokines and exosomes.
Conclusions:
- p38α is a key driver of an immune-suppressive TME and metastasis in breast cancer.
- Therapeutic blockade of p38α enhances antitumor immunity by modulating T cells and myeloid cells, offering potential for improved patient outcomes.
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