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Proinflammatory characteristics of SMAC/DIABLO-induced cell death in antitumor therapy
Perpetua U Emeagi1, Sandra Van Lint, Cleo Goyvaerts
1Department of Immunology-Physiology, Laboratory of Molecular and Cellular Therapy, Vrije Universiteit Brussel, Jette, Belgium.
Abstract:
Molecular mimetics of the caspase activator second mitochondria-derived activator of caspase (SMAC) are being investigated for use in cancer therapy, but an understanding of in vivo effects remains incomplete. In this study, we offer evidence that SMAC mimetics elicit a proinflammatory cell death in cancer cells that engages an adaptive antitumor immune response. Cancer cells of different histologic origin underwent apoptosis when transduced with lentiviral vectors encoding a cytosolic form of the SMAC mimetic LV-tSMAC. Strikingly, treatment of tumor-bearing mice with LV-tSMAC resulted in the induction of apoptosis, activation of antitumor immunity, and enhanced survival. Antitumor immunity was accompanied by an increase of tumor-infiltrating lymphocytes displaying low PD-1 expression, high lytic capacity, and high levels of IFN-γ when stimulated. We also noted in vivo a decrease in regulatory T cells along with in vitro activation of tumor-specific CD8(+) T cells by dendritic cells (DC) isolated from tumor draining lymph nodes. Last, tumor-specific cytotoxic T cells were also found to be activated in vivo. Mechanistic analyses showed that transduction of cancer cells with LV-tSMAC resulted in exposure of calreticulin but not release of HMGB1 or ATP. Nevertheless, DCs were activated upon engulfment of dying cancer cells. Further validation of these findings was obtained by their extension in a model of human melanoma using transcriptionally targeted LV-tSMAC. Together, our findings suggest that SMAC mimetics can elicit a proinflammatory cell death that is sufficient to activate adaptive antitumor immune responses in cancer.
Insights
Second mitochondria-derived activator of caspase (SMAC) mimetics induce cancer cell death, activating an adaptive immune response. This approach shows promise for cancer therapy by enhancing antitumor immunity and improving survival rates in preclinical models.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Second mitochondria-derived activator of caspase (SMAC) mimetics are explored for cancer therapy.
- Incomplete understanding of their in vivo effects necessitates further investigation.
Purpose of the Study:
- To investigate the in vivo effects of SMAC mimetics on cancer cell death and antitumor immune responses.
- To determine if SMAC mimetics can elicit an adaptive immune response against cancer.
Main Methods:
- Transduction of cancer cells with lentiviral vectors encoding a SMAC mimetic (LV-tSMAC).
- Treatment of tumor-bearing mice with LV-tSMAC.
- Analysis of tumor-infiltrating lymphocytes, regulatory T cells, and dendritic cell activation.
- Assessment of cancer cell death mechanisms (calreticulin exposure, HMGB1/ATP release).
- Validation in a human melanoma model.
Main Results:
- LV-tSMAC induced apoptosis and proinflammatory cell death in cancer cells.
- Treatment led to apoptosis, enhanced antitumor immunity, and improved survival in mice.
- Increased tumor-infiltrating lymphocytes with potent cytotoxic activity and IFN-γ production.
- Decreased regulatory T cells and activated tumor-specific CD8+ T cells.
- SMAC mimetic-induced cell death involved calreticulin exposure and dendritic cell activation.
Conclusions:
- SMAC mimetics can induce a proinflammatory cell death pathway in cancer cells.
- This cell death is sufficient to activate adaptive antitumor immune responses.
- SMAC mimetics represent a potential strategy for cancer immunotherapy by engaging the immune system.
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