Increased Extracellular Vesicles Mediate WNT5A Signaling in Idiopathic Pulmonary Fibrosis

特发性肺纤维化 Wnt信号通路 肺纤维化 医学 纤维化 癌症研究 发病机制 细胞外基质 免疫学 污渍 外体 间质性肺病 微泡 信号转导 细胞生物学 病理 生物 内科学 小RNA 基因 生物化学
作者
Aina Martín-Medina,Mareike Lehmann,Olivier Burgy,Sarah Hermann,Hoeke A. Baarsma,Darcy E. Wagner,Martina M. De Santis,Florian Ciolek,Thomas P. Hofer,Marion Frankenberger,Michaela Aichler,Michael Lindner,Wolfgang Gesierich,Andreas Günther,Axel Walch,Christina Coughlan,Paul J. Wolters,Joyce Lee,Jürgen Behr,Mélanie Königshoff
出处
期刊:American Journal of Respiratory and Critical Care Medicine [American Thoracic Society]
卷期号:198 (12): 1527-1538 被引量:186
标识
DOI:10.1164/rccm.201708-1580oc
摘要

Abstract Rationale Idiopathic pulmonary fibrosis (IPF) is a lethal lung disease characterized by lung epithelial cell injury, increased (myo)fibroblast activation, and extracellular matrix deposition. Extracellular vesicles (EVs) regulate intercellular communication by carrying a variety of signaling mediators, including WNT (wingless/integrated) proteins. The relevance of EVs in pulmonary fibrosis and their potential contribution to disease pathogenesis, however, remain unexplored. Objectives To characterize EVs and study the role of EV-bound WNT signaling in IPF. Methods We isolated EVs from BAL fluid (BALF) from experimental lung fibrosis as well as samples from IPF, non-IPF interstitial lung disease (ILD), non-ILD, and healthy volunteers from two independent cohorts. EVs were characterized by transmission electron microscopy, nanoparticle tracking analysis, and Western blotting. Primary human lung fibroblasts (phLFs) were used for EV isolation and analyzed by metabolic activity assays, cell counting, quantitative PCR, and Western blotting upon WNT gain- and loss-of-function studies. Measurements and Main Results We found increased EVs, particularly exosomes, in BALF from experimental lung fibrosis as well as from patients with IPF. WNT5A was secreted on EVs in lung fibrosis and induced by transforming growth factor-β in primary human lung fibroblasts. The phLF-derived EVs induced phLF proliferation, which was attenuated by WNT5A silencing and antibody-mediated inhibition and required intact EV structure. Similarly, EVs from IPF BALF induced phLF proliferation, which was mediated by WNT5A. Conclusions Increased EVs function as carriers for signaling mediators, such as WNT5A, in IPF and thus contribute to disease pathogenesis. Characterization of EV secretion and composition may lead to novel approaches to diagnose and develop treatments for pulmonary fibrosis.
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