医学
促炎细胞因子
造血
髓样
体细胞
免疫学
背景(考古学)
硬皮病(真菌)
骨髓
内科学
外周血单个核细胞
结缔组织病
自身免疫性疾病
疾病
干细胞
炎症
基因
生物
遗传学
体外
接种
古生物学
作者
Laure Ricard,Pierre Hirsch,Laëtitia Largeaud,Caroline Deswarte,Vincent Jachiet,Mohamad Mohty,Sébastien Rivière,Florent Malard,Maxime Tenon,Frédéric de Vassoigne,Olivier Fain,Béatrice Gaugler,Julien Rossignol,François Delhommeau,A. Mékinian
出处
期刊:Rheumatology
[Oxford University Press]
日期:2020-06-05
卷期号:59 (11): 3499-3504
被引量:25
标识
DOI:10.1093/rheumatology/keaa282
摘要
Abstract Objectives SSc is an autoimmune disease characterized by fibrosis, microangiopathy and immune dysfunctions including dysregulation of proinflammatory cytokines. Clonal haematopoiesis of indeterminate potential (CHIP) is defined by the acquisition of somatic mutations in haematopoietic stem cells leading to detectable clones in the blood. Recent data have shown a higher risk of cardiovascular disease in patients with CHIP resulting from increased production of proinflammatory cytokines and accelerated atherosclerosis. Eventual links between CHIP and autoimmune diseases are undetermined. The aim of our study was to evaluate the prevalence of CHIP in SSc patients and its association with clinical phenotype. Methods Forty-one genes frequently mutated in myeloid malignancies were sequenced in peripheral blood mononuclear cells from 90 SSc patients and 44 healthy donors. Results A total of 15 somatic variants were detected in 13/90 SSc patients (14%) and four somatic variants in 4/44 (9%) healthy donors (HD) (P = 0.58). The prevalence of CHIP was significantly higher in younger SSc patients than in HD: 25% (6/24) vs 4% (1/26) (P = 0.045) under 50 years and 17% (7/42) vs 3% (1/38) (P = 0.065) under 60 years. The prevalence of CHIP in patients over 70 years was similar in SSc patients and healthy donors. The most common mutations occurred in DNMT3A (seven variants). No major clinical differences were observed between SSc patients with or without CHIP. Conclusion Whether CHIP increases the risk to develop SSc or is a consequence of a SSc-derived modified bone marrow micro-environment remains to be explored.
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