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CD4+ T helper 2 cell–macrophage crosstalk induces IL-24–mediated breast cancer suppression
Bo Wang, Yun Xia, Can Zhou, Yuhan Zeng, Heehwa G. Son, Shadmehr Demehri
Bo Wang, Yun Xia, Can Zhou, Yuhan Zeng, Heehwa G. Son, Shadmehr Demehri
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Research Article Immunology Oncology

CD4+ T helper 2 cell–macrophage crosstalk induces IL-24–mediated breast cancer suppression

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Abstract

CD4+ T cells contribute to antitumor immunity and are implicated in the efficacy of cancer immunotherapies. In particular, CD4+ T helper 2 (Th2) cells were recently found to block spontaneous breast carcinogenesis. However, the antitumor potential of Th2 cells in targeting established breast cancer remains uncertain. Herein, we demonstrate that Th2 cells induced by the topical calcipotriol/thymic stromal lymphopoietin cytokine axis suppressed the growth of established mammary tumors in mice. Interleukin-24 (IL-24), an anticancer cytokine, was highly upregulated in macrophages infiltrating calcipotriol-treated mammary tumors. Macrophages expressed IL-24 in response to IL-4 signaling in combination with Toll-like receptor 4 (TLR4) agonists (e.g., HMGB1) in vitro. Calcipotriol treatment significantly increased HMGB1 release by tumor cells in vivo. CD4+ T cell depletion reduced HMGB1 and IL-24 expression, reversing calcipotriol’s therapeutic efficacy. Macrophage depletion and TLR4 inhibition also reduced the therapeutic efficacy of calcipotriol. Importantly, calcipotriol treatment failed to control mammary tumors lacking the IL-24 receptor on tumor cells. Collectively, our findings reveal that Th2 cell–macrophage crosstalk leads to IL-24–mediated tumor cell death, highlighting a promising therapeutic strategy to tackle breast cancer.

Authors

Bo Wang, Yun Xia, Can Zhou, Yuhan Zeng, Heehwa G. Son, Shadmehr Demehri

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Figure 1

Topical calcipotriol treatment inhibits PyMt mammary tumor growth in WT mice.

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Topical calcipotriol treatment inhibits PyMt mammary tumor growth in WT ...
(A) Schematic diagram outlining the experimental design used to test the efficacy of topical calcipotriol treatment in blocking mammary tumor growth. Six- to eight-week-old WT mice were used as tumor recipients. The animals were treated with 20 nmol calcipotriol or EtOH topically every 2 days, starting at 2 days after orthotopic PyMt mammary tumor cell implantation. (B) TSLP levels in the circulation after topical calcipotriol versus EtOH treatment. (C–E) Topical calcipotriol treatment effect on PyMt mammary tumor growth shown as (C) representative macroscopic images of the mammary tumors at the endpoint (circles highlight the tumors), (D) mean tumor volumes + SD, and (E) spider plot of tumor volume over time (n = 10 in each group). (F–J) Tumor-infiltrating CD3+ T cells, CD4+ T cells, and CD8+ T cells shown as (F) representative immunofluorescence (IF) images of CD3-, CD4-, and CD8-stained tumor tissues; (G) percentage of CD3+ T cells of total cells; (H) percentage of CD4+ T cells of total cells; (I) percentage of CD8+ T cells of total cells; and (J) The ratio of CD4+ T to CD8+ T cells in calcipotriol- and EtOH-treated mammary tumors (n = 8 in each group). Bar graphs show mean + SD. Mann-Whitney U test (B and G–J) and 2-way ANOVA (D and E). Scale bars: 1 cm (C); 100 μm (F).

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