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Published on: August 23, 2019
Type-I interferon signaling is essential for robust metronomic chemo-immunogenic tumor regression in murine breast
Cameron Vergato1, Kshama A Doshi1, Darren Roblyer2
1Department of Biology, Boston University, Boston MA 02215.
Abstract:
Many patients with breast cancer have a poor prognosis with limited therapeutic options. Here, we investigated the potential of chemo-immunogenic therapy as an avenue of treatment. We utilized two syngeneic mouse mammary tumor models, 4T1 and E0771, to examine the chemo-immunogenic potential of cyclophosphamide and the mechanistic contributions of cyclophosphamide-activated type-I interferon (IFN) signaling to therapeutic activity. Chemically-activated cyclophosphamide induced robust IFNα/β receptor-1-dependent signaling linked to hundreds of IFN-stimulated gene responses in both cell lines. Further, in 4T1 tumors, cyclophosphamide given on a medium-dose, 6-day intermittent metronomic schedule induced strong IFN signaling but comparatively weak immune cell infiltration associated with long-term tumor growth stasis. Induction of IFN signaling was somewhat weaker in E0771 tumors but was followed by widespread downstream gene responses, robust immune cell infiltration and extensive, prolonged tumor regression. The immune dependence of these effective anti-tumor responses was established by CD8 T-cell immunodepletion, which blocked cyclophosphamide-induced E0771 tumor regression and led to tumor stasis followed by regrowth. Strikingly, IFNα/β receptor-1 antibody blockade was even more effective in preventing E0771 immune cell infiltration and blocked the major tumor regression induced by cyclophosphamide treatment. Type-I IFN signaling is thus essential for the robust chemo-immunogenic response of these tumors to cyclophosphamide administered on a metronomic schedule.
Insights
Chemo-immunogenic therapy using cyclophosphamide shows promise for breast cancer. Type-I interferon signaling is crucial for cyclophosphamide
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Breast cancer often presents a poor prognosis with limited treatment options.
- Chemo-immunogenic therapy offers a potential new treatment strategy.
Purpose of the Study:
- To investigate the chemo-immunogenic potential of cyclophosphamide.
- To elucidate the role of type-I interferon (IFN) signaling in cyclophosphamide's therapeutic activity.
Main Methods:
- Utilized two syngeneic mouse mammary tumor models (4T1 and E0771).
- Administered cyclophosphamide on a metronomic schedule.
- Assessed IFN signaling, gene responses, immune cell infiltration, and tumor regression.
- Utilized CD8 T-cell immunodepletion and IFNα/β receptor-1 antibody blockade.
Main Results:
- Cyclophosphamide induced robust type-I IFN signaling in both models.
- 4T1 tumors showed strong IFN signaling but weak immune infiltration and tumor stasis.
- E0771 tumors exhibited weaker IFN signaling but significant immune infiltration and tumor regression.
- CD8 T-cell depletion and IFNα/β receptor-1 blockade abrogated anti-tumor responses in E0771 tumors.
Conclusions:
- Type-I IFN signaling is essential for chemo-immunogenic anti-tumor responses to metronomic cyclophosphamide.
- The efficacy of chemo-immunogenic therapy is dependent on immune cell infiltration and type-I IFN signaling.
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