纤维化
半乳糖凝集素-3
细胞凋亡
肺动脉高压
细胞外基质
胚胎血管重塑
癌症研究
细胞生物学
生物
内科学
肺纤维化
内分泌学
病理
医学
免疫学
生物化学
作者
Scott A. Barman,Xueyi Li,Stephen Haigh,Dmitry Kondrikov,Keyvan Mahboubi,Zsuzsanna Bordán,David W. Stepp,Jiliang Zhou,Yusi Wang,Daniel S. Weintraub,Peter G. Traber,William D. Snider,Danny Jonigk,Jennifer C. Sullivan,G. Ryan Crislip,Joshua T. Butcher,Jennifer A. Thompson,Yunchao Su,Feng Chen,David Fulton
出处
期刊:American Journal of Physiology-lung Cellular and Molecular Physiology
[American Physical Society]
日期:2019-05-01
卷期号:316 (5): L784-L797
被引量:54
标识
DOI:10.1152/ajplung.00186.2018
摘要
A defining characteristic of pulmonary hypertension (PH) is the extensive remodeling of pulmonary arteries (PAs), which results in progressive increases in vascular resistance and stiffness and eventual failure of the right ventricle. There is no cure for PH and identification of novel molecular mechanisms that underlie increased proliferation, reduced apoptosis, and excessive extracellular matrix production in pulmonary artery smooth muscle cells (PASMCs) is a vital objective. Galectin-3 (Gal-3) is a chimeric lectin and potent driver of many aspects of fibrosis, but its role in regulating PASMC behavior in PH remains poorly understood. Herein, we evaluated the importance of increased Gal-3 expression and signaling on PA vascular remodeling and cardiopulmonary function in experimental models of PH. Gal-3 expression was quantified by qRT-PCR, immunoblotting, and immunofluorescence imaging, and its functional role was assessed by specific Gal-3 inhibitors and CRISPR/Cas9-mediated knockout of Gal-3 in the rat. In rat models of PH, we observed increased Gal-3 expression in PASMCs, which stimulated migration and resistance to apoptosis, whereas silencing or genetic deletion reduced cellular migration and PA fibrosis and increased apoptosis. Gal-3 inhibitors attenuated and reversed PA remodeling and fibrosis, as well as hemodynamic indices in monocrotaline (MCT)-treated rats in vivo. These results were supported by genetic deletion of Gal-3 in both MCT and Sugen Hypoxia rat models. In conclusion, our results suggest that elevated Gal-3 levels contribute to inappropriate PA remodeling in PH by enhancing multiple profibrotic mechanisms. Therapeutic strategies targeting Gal-3 may be of benefit in the treatment of PH.
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