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Antiinflammatory activity of ANGPTL4 facilitates macrophage polarization to induce cardiac repair
Dong Im Cho, Hye-jin Kang, Ju Hee Jeon, Gwang Hyeon Eom, Hyang Hee Cho, Mi Ra Kim, Meeyoung Cho, Hye-yun Jeong, Hyen Chung Cho, Moon Hwa Hong, Yong Sook Kim, Youngkeun Ahn
Dong Im Cho, Hye-jin Kang, Ju Hee Jeon, Gwang Hyeon Eom, Hyang Hee Cho, Mi Ra Kim, Meeyoung Cho, Hye-yun Jeong, Hyen Chung Cho, Moon Hwa Hong, Yong Sook Kim, Youngkeun Ahn
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Research Article Cardiology Inflammation

Antiinflammatory activity of ANGPTL4 facilitates macrophage polarization to induce cardiac repair

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Abstract

Mesenchymal stem cells (MSCs) can suppress pathological inflammation. However, the mechanisms underlying the association between MSCs and inflammation remain unclear. Under coculture conditions with macrophages, MSCs highly expressed angiopoietin-like 4 (ANGPTL4) to blunt the polarization of macrophages toward the proinflammatory phenotype. ANGPTL4-deficient MSCs failed to inhibit the inflammatory macrophage phenotype. In inflammation-related animal models, the injection of coculture medium or ANGPTL4 protein increased the antiinflammatory macrophages in both peritonitis and myocardial infarction. In particular, cardiac function and pathology were markedly improved by ANGPTL4 treatment. We found that retinoic acid–related orphan receptor α (RORα) was increased by inflammatory mediators, such as IL-1β, and bound to ANGPTL4 promoter in MSCs. Collectively, RORα-mediated ANGPTL4 induction was shown to contribute to the antiinflammatory activity of MSCs against macrophages under pathological conditions. This study suggests that the capability of ANGPTL4 to induce tissue repair is a promising opportunity for safe stem cell–free regeneration therapy from a translational perspective.

Authors

Dong Im Cho, Hye-jin Kang, Ju Hee Jeon, Gwang Hyeon Eom, Hyang Hee Cho, Mi Ra Kim, Meeyoung Cho, Hye-yun Jeong, Hyen Chung Cho, Moon Hwa Hong, Yong Sook Kim, Youngkeun Ahn

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Figure 1

ANGPTL4 derived from MSCs is essential for inhibiting the inflammatory activation of macrophages.

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ANGPTL4 derived from MSCs is essential for inhibiting the inflammatory a...
(A) Both ANGPTL4 mRNA and protein were notably increased in human mesenchymal stem cells (hMSCs) when cocultured with either unstimulated human primary macrophages (hMFs) or LPS-stimulated hMFs. n = 4. (B) siRNA control–transfected (siCon-transfected) hMSCs reduced the mRNA levels of inflammatory markers Cxcl9, Cxcl10, Cxcl11, Ccr7, Il6, and Ccl2 in LPS-stimulated hMFs after coculture for 24 hours, while siRNA ANGPTL4–transfected (siANGPTL4-transfected) hMSCs did not. n = 4. (C) Inflammatory markers in LPS-stimulated hMFs were significantly reduced by treatment with recombinant ANGPTL4 protein. n = 4. (D) Differentiated THP-1 macrophages showed significant reductions in proinflammatory CXCL10 mRNA (n = 4) and protein induction (n = 8) by LPS stimulation by coculture with hMSCs. (E) LPS-induced degradation of IκBα protein in THP-1 macrophages was blunted by coculture with hMSCs. Western blots are representative of n > 3 repeats. Intensity quantification is representative of mean ± SEM. (F–H) ANGPTL4 mRNA (n = 4), cellular protein (n = 4), and released protein (n = 4) were assayed in hMSCs with or without coculture with LPS-stimulated THP-1 macrophages. (I) ANGPTL4 protein–treated THP-1 macrophages showed significant reductions in inflammatory genes in a dose-dependent manner. n = 4. Data are represented as mean ± SEM. #P < 0.05; ##P < 0.01; ###P < 0.001 (by Student’s t test or 1-way ANOVA with Bonferroni’s multiple-comparisons test).

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