How to turn up the heat on the cold immune microenvironment of metastatic prostate cancer
Как усилить иммунный ответ при холодном иммунном микроокружении метастатического рака предстательной железы
2021-04-05
SCID: 54.1/d4q8r35y
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TGF-betacold tumor microenvironmentimmunotherapymetastatic prostate cancermyeloid-derived suppressor cells
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Abstract (AI)
BACKGROUND: Advanced prostate cancer remains one of the most common and deadly cancers, despite advances in treatment options. Immunotherapy has provided little benefit to a majority of patients, largely due to the immunosuppressive tumor microenvironment that gives rise to inherently "cold tumors". In this review, we discuss the immunopathology of the prostate tumor microenvironment, strategies for treating prostate cancer with immunotherapies, and a perspective on potential approaches to enhancing the efficacy of immunotherapies. METHODS: Databases, including PubMed, Google Scholar, and Cochrane, were searched for articles relevant to the immunology of prostate cancer. We discuss the impact of different types of treatments on the immune system, and potential mechanisms through which prostate cancer evades the immune system. RESULTS: The tumor microenvironment associated with prostate cancer is highly immunosuppressive due to (1) the function of regulatory T cells, tumor-associated macrophages, and myeloid-derived suppressor cells (MDSCs), (2) the cytokine milieu secreted by tumor stromal cells and fibroblasts, and (3) the production of adenosine via prostatic acid phosphatase. Both adenosine and tumor growth factor beta (TGF-beta) serve as potent immunosuppressive molecules that could also represent potential therapeutic targets. While there have been many immunotherapy trials in prostate cancer, the majority of these trials have targeted a single immunosuppressive mechanism resulting in limited clinical efficacy. Future approaches will require the integration of improved patient selection as well as use of combination therapies to address multiple mechanisms of resistance. CONCLUSION: Prostate cancer inherently gives rise to multiple immunosuppressive mechanisms that have been difficult to overcome with any one immunotherapeutic approach. Enhancing the clinical activity of immunotherapies will require strategic combinations of multiple therapies to address the emerging mechanisms of tumor immune resistance.
Key Findings
1
Adenosine and TGF-beta are potent immunosuppressive molecules and potential therapeutic targets in prostate cancer.
2
Immunosuppression is driven by regulatory T cells, tumor-associated macrophages, myeloid-derived suppressor cells, stromal and fibroblast cytokines, and adenosine produced via prostatic acid phosphatase.
3
Improving immunotherapy activity will require better patient selection and strategic combination therapies addressing multiple immunosuppressive mechanisms simultaneously.
4
Metastatic prostate cancer has an inherently immunosuppressive, “cold” tumor microenvironment that limits immunotherapy benefit for most patients.
5
Most prostate cancer immunotherapy trials target a single resistance mechanism, leading to limited clinical efficacy.
Research Object
the immunosuppressive tumor microenvironment of metastatic prostate cancer
Research Subject
the immunopathology, immune-evasion mechanisms, and therapeutic modulation of the tumor microenvironment to enhance immunotherapy efficacy
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2021-04-05
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