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Inhibiting inflammation in adipocytes accelerates mammary tumor development in mice
Dae-Seok Kim, Toshiharu Onodera, Jan-Bernd Funcke, Kyounghee Min, Qingzhang Zhu, Qian Lin, Shiuhwei Chen, Chanmin Joung, Min Kim, R. Max Wynn, Joselin Velasco, Charlotte Lee, Megan Virostek, Chao Li, Philipp E. Scherer
Dae-Seok Kim, Toshiharu Onodera, Jan-Bernd Funcke, Kyounghee Min, Qingzhang Zhu, Qian Lin, Shiuhwei Chen, Chanmin Joung, Min Kim, R. Max Wynn, Joselin Velasco, Charlotte Lee, Megan Virostek, Chao Li, Philipp E. Scherer
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Research Article Inflammation Metabolism Oncology

Inhibiting inflammation in adipocytes accelerates mammary tumor development in mice

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Abstract

Proinflammatory signaling in adipocytes is essential for healthy adipose expansion, remodeling, and tissue integrity. We investigated the effects of targeting inflammation in either adipocytes or mammary gland epithelial cells, in the context of mammary tumor development, by locally expressing the antiinflammatory adenoviral RIDα/β protein complex in a cell type–specific manner. Suppression of adipocyte inflammation (RIDad mice) in a mammary tumor model driven by MMTV-PyMT (PyMT-RIDad mice) led to an elevated number of tumor-associated macrophages and upregulation of immunoregulatory molecules in the mammary fat pad. This was accompanied by metabolic dysfunction and abnormal mammary gland development. Importantly, this phenotype correlated with accelerated mammary tumor onset, enhanced growth, and lung metastasis. Tumors in PyMT-RIDad mice exhibited upregulated CD36 expression, suggesting enhanced fatty acid uptake. Conversely, suppression of inflammation in mammary gland epithelial cells by RIDα/β expression (RIDMMTV mice) decelerated mammary tumor growth without affecting tumor onset or macrophage accumulation. These findings highlight the differential impact on tumor development exerted through the suppression of inflammatory signals in different cell types in the microenvironment. Our results underscore the role of the suppression of adipocyte inflammation leading to a tumor-friendly microenvironment, promoting mammary cancer progression. This study sheds light on the complex interplay between inflammation, specifically driven by the adipocyte, in breast cancer pathogenesis.

Authors

Dae-Seok Kim, Toshiharu Onodera, Jan-Bernd Funcke, Kyounghee Min, Qingzhang Zhu, Qian Lin, Shiuhwei Chen, Chanmin Joung, Min Kim, R. Max Wynn, Joselin Velasco, Charlotte Lee, Megan Virostek, Chao Li, Philipp E. Scherer

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Figure 3

Increased TAM accumulation and accelerated tumor growth in the MFP of RIDad mice.

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Increased TAM accumulation and accelerated tumor growth in the MFP of RI...
(A) Representative immunostaining of CD163 and perilipin in the mammary fat pad (MFP). Scale bar: 20 μm. (B) Quantification of the percentage of CD163-positive cells from the experiments shown in A. A total of 21–28 images from 3 mice per group were quantified. (C) Representative immunostaining of CD163 and perilipin in gonadal white adipose tissue (gWAT). Scale bar: 20 μm. (D) Quantification of the percentage of CD163-positive cells from the experiments shown in C. A total of 28–29 images from 3 mice per group were quantified. (E) Schematic representation of the experimental design for the EO771 syngeneic breast cancer mouse model. (F) Images of syngeneic tumors formed in each group. (G) Growth curves of transplanted EO771 cells. n = 5/group. (H and I) Tumor weight (H) and body weight (I) at the end of the experiment. n = 5/group. (J and K) H&E staining of the MFP. Scale bars: 500 μm (left); 100 μm (right). Data are displayed as mean ± SEM and were analyzed by unpaired 2-tailed t tests (B, D, H, and I) or 2-way ANOVA (G). **P = 0.01, ****P < 0.0001.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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