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Therapeutic targeting with DABIL-4 depletes myeloid suppressor cells in 4T1 triple-negative breast cancer model
Sadiya Parveen1, Sumit Siddharth2, Laurene S Cheung1
1Department of Medicine, Division of Infectious Diseases, Johns Hopkins University School of Medicine, Baltimore, MD, USA.
Abstract:
In many solid tumors including triple-negative breast cancer (TNBC), upregulation of the interleukin-4 receptor (IL-4R) has been shown to promote cancer cell proliferation, apoptotic resistance, metastatic potential, and a Th2 response in the tumor microenvironment (TME). Since immunosuppressive cells in the TME and spleen including myeloid-derived suppressor cells (MDSCs) and tumor-associated macrophages (TAMs) also express the IL-4R, we hypothesized that selective depletion of IL-4R-bearing cells in TNBC would result in the direct killing of tumor cells and the depletion of immunosuppressive cells and lead to an enhanced antitumor response. To selectively target IL-4R+ cells, we employed DABIL-4, a fusion protein toxin consisting of the catalytic and translocation domains of diphtheria toxin fused to murine IL-4. As anticipated, DABIL-4 has potent cytotoxic activity against TNBC cells both in vitro and in vivo. We demonstrate in the murine 4T1 TNBC model that DABIL-4 significantly reduces tumor growth, splenomegaly, and lung metastases. Importantly, we also show that the administration of DABIL-4 results in the selective depletion of MDSCs, TAMs, and regulatory T cells in treated mice, with a concomitant increase in IFN-γ+ CD8 effector T cells in the TME. Since the 4T1 antitumor activity of DABIL-4 was largely diminished in IL-4R knockout mice, we postulate that DABIL-4 functions primarily as an immunotherapeutic by the depletion of MDSCs, TAMs, and regulatory T cells. NanoString analysis of control and treated tumors confirmed and extended these observations by showing a marked decline of mRNA transcripts that are associated with tumorigenesis and metastasis. In conclusion, we demonstrate that DABIL-4 targeting of both tumor and immunosuppressive host cells likely represents a novel and effective treatment strategy for 4T1 TNBC and warrants further study.
Insights
A novel fusion protein, DABIL-4, effectively targets interleukin-4 receptor (IL-4R)-expressing triple-negative breast cancer (TNBC) cells and immunosuppressive cells. This approach reduces tumor growth and enhances antitumor immunity, offering a promising new therapeutic strategy.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Interleukin-4 receptor (IL-4R) upregulation promotes triple-negative breast cancer (TNBC) progression and immune suppression within the tumor microenvironment (TME).
- Immunosuppressive cells, including myeloid-derived suppressor cells (MDSCs) and tumor-associated macrophages (TAMs), express IL-4R, contributing to an unfavorable TME.
Purpose of the Study:
- To investigate the efficacy of DABIL-4, a diphtheria toxin-IL-4 fusion protein, in selectively targeting and depleting IL-4R-bearing cells in TNBC.
- To evaluate the impact of DABIL-4 on tumor growth, metastasis, and the immune landscape within the TME.
Main Methods:
- Development and application of DABIL-4, a fusion protein targeting IL-4R.
- In vitro and in vivo studies using the murine 4T1 TNBC model.
- Flow cytometry and NanoString analysis to assess immune cell populations and gene expression.
Main Results:
- DABIL-4 demonstrated potent cytotoxic activity against TNBC cells in vitro and significantly reduced tumor growth, splenomegaly, and lung metastases in vivo.
- Administration of DABIL-4 led to selective depletion of MDSCs, TAMs, and regulatory T cells, accompanied by an increase in IFN-γ+ CD8 effector T cells.
- NanoString analysis revealed a decrease in mRNA transcripts associated with tumorigenesis and metastasis in DABIL-4 treated tumors.
Conclusions:
- DABIL-4 functions as an effective immunotherapeutic by targeting both TNBC cells and immunosuppressive cells, primarily through the depletion of MDSCs, TAMs, and regulatory T cells.
- The findings suggest that DABIL-4 is a promising novel treatment strategy for 4T1 TNBC, warranting further clinical investigation.
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