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心力衰竭中的心房颤动与循环中高水平的微小RNA-199a-5p和22-5p以及细胞内钙调节缺陷和细胞间通讯有关。

Atrial Fibrillation in Heart Failure Is Associated with High Levels of Circulating microRNA-199a-5p and 22-5p and a Defective Regulation of Intracellular Calcium and Cell-to-Cell Communication.

作者信息

Garcia-Elias Anna, Tajes Marta, Yañez-Bisbe Laia, Enjuanes Cristina, Comín-Colet Josep, Serra Selma A, Fernández-Fernández José M, Aguilar-Agon Kathryn W, Reilly Svetlana, Martí-Almor Julio, Benito Begoña

机构信息

Vascular Biology and Metabolism Program, Vall d'Hebron Research Institute (VHIR), Passeig de la Vall d'Hebron 119-129, 08035 Barcelona, Spain.

Group of Biomedical Research in Heart Diseases, Hospital del Mar Medical Research Institute (IMIM), Doctor Aiguader 88, 08003 Barcelona, Spain.

出版信息

Int J Mol Sci. 2021 Sep 26;22(19):10377. doi: 10.3390/ijms221910377.

Abstract

MicroRNAs (miRNAs) participate in atrial remodeling and atrial fibrillation (AF) promotion. We determined the circulating miRNA profile in patients with AF and heart failure with reduced ejection fraction (HFrEF), and its potential role in promoting the arrhythmia. In plasma of 98 patients with HFrEF (49 with AF and 49 in sinus rhythm, SR), differential miRNA expression was determined by high-throughput microarray analysis followed by replication of selected candidates. Validated miRNAs were determined in human atrial samples, and potential arrhythmogenic mechanisms studied in HL-1 cells. Circulating miR-199a-5p and miR-22-5p were significantly increased in HFrEF patients with AF versus those with HFrEF in SR. Both miRNAs, but particularly miR-199a-5p, were increased in atrial samples of patients with AF. Overexpression of both miRNAs in HL-1 cells resulted in decreased protein levels of L-type Ca channel, NCX and connexin-40, leading to lower basal intracellular Ca levels, fewer inward currents, a moderate reduction in Ca buffering post-caffeine exposure, and a deficient cell-to-cell communication. In conclusion, circulating miR-199a-5p and miR-22-5p are higher in HFrEF patients with AF, with similar findings in human atrial samples of AF patients. Cells exposed to both miRNAs exhibited altered Ca handling and defective cell-to-cell communication, both findings being potential arrhythmogenic mechanisms.

摘要

微小RNA(miRNA)参与心房重构和心房颤动(AF)的进展。我们测定了射血分数降低的心力衰竭(HFrEF)合并AF患者的循环miRNA谱,以及其在促心律失常中的潜在作用。在98例HFrEF患者(49例合并AF,49例为窦性心律,SR)的血浆中,通过高通量微阵列分析确定差异miRNA表达,随后对选定的候选miRNA进行验证。在人心房样本中测定经过验证的miRNA,并在HL-1细胞中研究潜在的致心律失常机制。与SR的HFrEF患者相比,合并AF的HFrEF患者循环中的miR-199a-5p和miR-22-5p显著升高。在AF患者的心房样本中,这两种miRNA均升高,尤其是miR-199a-5p。在HL-1细胞中过表达这两种miRNA均导致L型钙通道、钠钙交换体和连接蛋白40的蛋白水平降低,导致基础细胞内钙水平降低、内向电流减少、咖啡因暴露后钙缓冲适度降低以及细胞间通讯缺陷。总之,合并AF的HFrEF患者循环中的miR-199a-5p和miR-22-5p水平较高,在AF患者的人心房样本中也有类似发现。暴露于这两种miRNA的细胞表现出钙处理改变和细胞间通讯缺陷,这两个发现均为潜在的致心律失常机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/514c/8508749/30dfa0295b6b/ijms-22-10377-g001.jpg

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