Circulating exosome long non-coding RNAs are associated with atrial structural remodeling by increasing systemic inflammation in atrial fibrillation patients.

IF 4.7 2区 医学 Q1 MEDICINE, GENERAL & INTERNAL Journal of Translational Internal Medicine Pub Date : 2024-03-21 eCollection Date: 2024-02-01 DOI:10.2478/jtim-2023-0129
Yue Yuan, Xuejie Han, Xinbo Zhao, Haiyu Zhang, Asiia Vinograd, Xin Bi, Xiaoxu Duan, Yukai Cao, Qiang Gao, Jia Song, Li Sheng, Yue Li
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引用次数: 0

Abstract

Background: Atrial fibrillation (AF) is the most common cardiac arrhythmia with severe clinical sequelae, but its genetic characteristic implicated in pathogenesis has not been completely clarified. Accumulating evidence has indicated that circulating exosomes and their carried cargoes, such as long non-coding RNAs (lncRNAs), involve in the progress of multiple cardiovascular diseases. However, their potential role as clinical biomarkers in AF diagnosis and prognosis remains unknown.

Methods: Herein, we conducted the sequence and bioinformatic analysis of circulating exosomes harvested from AF and sinus rhythm patients.

Results: A total of 53 differentially expressed lncRNAs were identified, and a total of 6 significantly changed lncRNAs (fold change > 2.0), including NR0046235, NR003045, NONHSAT167247.1, NONHSAT202361.1, NONHSAT205820.1 and NONHSAT200958.1, were verified by qRT-PCR in 215 participants. Moreover, these circulating exosome lncRNA levels were different between paroxysmal and persistent AF patients, which were dramatically associated with abnormal hemodynamics and atrial diameter. Furthermore, we observed that the area under ROC curve (AUC) of six lncRNAs combination for diagnosis of persistent AF was 80.34%. Gene ontology (GO) and Kyoto encyclopedia of genes and genomes (KEGG) enrichment pathway analysis indicated these exosome lncRNAs mainly concerning response to chemokine-chemokine receptor interaction, which induced activated inflammation and structural remodeling. In addition, increased plasma levels of CXCR3 ligands, including CXCL4, CXCL9, CXCL10 and CXCL11, were accumulated in AF patient tissues.

Conclusion: Our study provides the transcriptome profile revealing pattern of circulating exosome lncRNAs in atrial structural remodeling, which bring valuable insights into improving prognosis and therapeutic targets for AF.

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循环外泌体长非编码 RNA 通过增加心房颤动患者的全身炎症与心房结构重塑有关。
背景:心房颤动(房颤)是最常见的心律失常,具有严重的临床后遗症,但其与发病机制有关的遗传特征尚未完全明确。越来越多的证据表明,循环外泌体及其携带的货物,如长非编码 RNA(lncRNA),参与了多种心血管疾病的进展。方法:我们对房颤和窦性心律患者的循环外泌体进行了序列和生物信息学分析:结果:在215名参与者中,共鉴定出53个差异表达的lncRNA,并通过qRT-PCR验证了6个显著变化的lncRNA(折叠变化>2.0),包括NR0046235、NR003045、NONHSAT167247.1、NONHSAT202361.1、NONHSAT205820.1和NONHSAT200958.1。此外,这些循环外泌体 lncRNA 水平在阵发性房颤患者和持续性房颤患者之间存在差异,而这些差异与异常血流动力学和心房直径显著相关。此外,我们还观察到六种 lncRNAs 组合诊断持续性房颤的 ROC 曲线下面积(AUC)为 80.34%。基因本体(GO)和京都基因与基因组百科全书(KEGG)富集通路分析表明,这些外泌体 lncRNAs 主要与趋化因子-趋化因子受体相互作用有关,而趋化因子受体相互作用会诱发活化炎症和结构重塑。此外,心房颤动患者组织中血浆CXCR3配体(包括CXCL4、CXCL9、CXCL10和CXCL11)水平升高:我们的研究提供了转录组图谱,揭示了循环外泌体 lncRNA 在心房结构重塑中的作用模式,为改善心房颤动的预后和治疗靶点提供了有价值的见解。
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来源期刊
Journal of Translational Internal Medicine
Journal of Translational Internal Medicine MEDICINE, GENERAL & INTERNAL-
CiteScore
5.50
自引率
8.20%
发文量
41
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