心房颤动
脂肪组织
内科学
炎症
医学
巨噬细胞
CCR2型
心脏病学
心肌病
内分泌学
肥胖
心外膜脂肪
胰岛素抵抗
心肌细胞
全身炎症
脂肪组织巨噬细胞
基因表达
肿瘤坏死因子α
四氯化碳
促炎细胞因子
纤维化
基因
心脏病
作者
L. Crépin,Abhilash Dasari,Nathalie Mougenot,Eva Trenquier,François Lanthiez,Ibrahim Abdou-Seini,Maria Mihoc,Alexandre De Raymon-Cahuzac,Maharajah Ponnahia,Esma Karkeni,Caroline Chabbat,Emmanuel L. Gautier,Ishaan Gupta,Guillaume Lebreton,P L Leprince,Alexandre Boissonnas,Stéphane Hatem,Nadine Suffee
标识
DOI:10.1161/circresaha.125.328051
摘要
BACKGROUND: Inflammation is associated with atrial fibrillation, but its precise impact on the long-term progression of the atrial fibrillation substrate, also called atrial cardiomyopathy, remains debated. METHODS AND RESULTS: Here, using spatial gene expression analysis, macrophage subpopulations mainly confined to the epicardial fat tissue were identified in the human atria. In a mouse model of obesity and atrial cardiomyopathy, macrophage recruitment was associated with atrial adiposity. Single-cell RNA sequencing allowed the identification of Lyve1 + -resident and CCR2 + monocyte-derived macrophages in obese mouse atria. In obese mice, depleting Lyve1 + -macrophages prevented early fat expansion and led to myocardial dystrophy, while CCR2 + -macrophage depletion prevented fibro-fatty remodeling, atrial dilation, and atrial fibrillation. CONCLUSIONS: These data highlight the pivotal role of macrophages in atrial adiposity, in particular that of Lyve1 + -macrophages during adipose tissue expansion.
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