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Neutralization of IL-8 decreases tumor PMN-MDSCs and reduces mesenchymalization of claudin-low triple-negative breast cancer
Charli Dominguez, Kristen K. McCampbell, Justin M. David, Claudia Palena
Charli Dominguez, Kristen K. McCampbell, Justin M. David, Claudia Palena
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Research Article Immunology Oncology

Neutralization of IL-8 decreases tumor PMN-MDSCs and reduces mesenchymalization of claudin-low triple-negative breast cancer

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Abstract

The complex signaling networks of the tumor microenvironment that facilitate tumor growth and progression toward metastatic disease are becoming a focus of potential therapeutic options. The chemokine IL-8 is overexpressed in multiple cancer types, including triple-negative breast cancer (TNBC), where it promotes the acquisition of mesenchymal features, stemness, resistance to therapies, and the recruitment of immune-suppressive cells to the tumor site. The present study explores the utility of a clinical-stage monoclonal antibody that neutralizes IL-8 (HuMax-IL8) as a potential therapeutic option for TNBC. HuMax-IL8 was shown to revert mesenchymalization in claudin-low TNBC models both in vitro and in vivo as well as to significantly decrease the recruitment of polymorphonuclear myeloid-derived suppressor cells (PMN-MDSCs) at the tumor site, an effect substantiated when used in combination with docetaxel. In addition, HuMax-IL8 enhanced the susceptibility of claudin-low breast cancer cells to immune-mediated lysis with NK and antigen-specific T cells in vitro. These results demonstrate the multifaceted way in which neutralizing this single chemokine reverts mesenchymalization, decreases recruitment of MDSCs at the tumor site, assists in immune-mediated killing, and forms the rationale for using HuMax-IL8 in combination with chemotherapy or immune-based therapies for the treatment of TNBC.

Authors

Charli Dominguez, Kristen K. McCampbell, Justin M. David, Claudia Palena

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Figure 5

Neutralization of IL-8 reduces tumor growth and recruitment of PMN-MDSCs at the tumor site.

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Neutralization of IL-8 reduces tumor growth and recruitment of PMN-MDSCs...
Change in tumor volume (A) and tumor volume at the conclusion of the experiment (B) for individual mice treated with control IgG (C), docetaxel (D), HuMax-IL8 (H), or docetaxel and HuMax-IL8 (H+D). Days of treatment are indicated with blue and red arrowheads for docetaxel and HuMax-IL8, respectively. (C) Human IL-8 detected in the sera collected from individual mice in each treatment group. (D) Quantification of total CD11b+ cell, PMN-MDSC (Ly6Ghi/Ly6Clo), and M-MDSC (Ly6Glo/–/Ly6Chi) populations in individual tumors in each treatment group. (B–D) Data from individual mice (mean ± SEM); n = 5–8 mice per group. Differences between means were compared using the 1-way ANOVA test with Tukey’s multiple comparisons; *P < 0.05; **P < 0.01; ***P < 0.001. (E) Representative FACS plots of Ly6G/Ly6C-positive populations on CD11b+ tumor cells for each treatment group. Data are representative of 2 experiments.

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