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Mast cells drive pathologic vascular lesions in Takayasu arteritis

动脉炎 大动脉炎 大动脉炎 医学 病理 肥大细胞 血管炎 免疫学 疾病
作者
Alexandre Le Joncour,A.C. Desbois,Aurélie S. Leroyer,Edwige Tellier,Paul Régnier,Anna Maciejewski‐Duval,Cloé Comarmond,Stéphane Barète,Michel Arock,Patrick Bruneval,Jean-Marie Launay,Pierre Fouret,Ulrich Blank,Michèlle Rosenzwajg,David Klatzmann,Mohamed Jarraya,Laurent Chiche,Fabien Koskas,P. Cacoub,Gilles Kaplanski
出处
期刊:The Journal of Allergy and Clinical Immunology [Elsevier BV]
卷期号:149 (1): 292-301.e3 被引量:17
标识
DOI:10.1016/j.jaci.2021.05.003
摘要

Takayasu arteritis (TAK) is a large vessel vasculitis resulting in artery wall remodeling with segmental stenosis and/or aneurysm formation. Mast cells (MCs) are instrumental in bridging cell injury and inflammatory response.This study sought to investigate the contribution of MCs on vessel permeability, angiogenesis, and fibrosis in patients with TAK.MC activation and their tissue expression were assessed in sera and in aorta from patients with TAK and from healthy donors (HDs). In vivo permeability was assessed using a modified Miles assay. Subconfluent cultured human umbilic vein endothelial cells and fibroblasts were used in vitro to investigate the effects of MC mediators on angiogenesis and fibrogenesis.This study found increased levels of MC activation markers (histamine and indoleamine 2,3-dioxygenase) in sera of patients with TAK compared with in sera of HDs. Marked expression of MCs was shown in aortic lesions of patients with TAK compared with in those of noninflammatory aorta controls. Using Miles assay, this study showed that sera of patients with TAK significantly increased vascular permeability in vivo as compared with that of HDs. Vessel permeability was abrogated in MC-deficient mice. MCs stimulated by sera of patients with TAK supported neoangiogenesis (increased human umbilic vein endothelial cell proliferation and branches) and fibrosis by inducing increased production of fibronectin, type 1 collagen, and α-smooth muscle actin by fibroblasts as compared to MCs stimulated by sera of HD.MCs are a key regulator of vascular lesions in patients with TAK and may represent a new therapeutic target in large vessel vasculitis.
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