Circulating microRNA-1a is a biomarker of Graves’ disease patients with atrial fibrillation

Purpose It has been increasingly suggested that specific microRNAs expression profiles in the circulation and atrial tissue are associated with the susceptibility to atrial fibrillation. Nonetheless, the role of circulating microRNAs in Graves’ disease patients with atrial fibrillation has not yet b...

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Veröffentlicht in:Endocrine 2017-07, Vol.57 (1), p.125-137
Hauptverfasser: Wang, Fang, Zhang, Sheng-jie, Yao, Xuan, Tian, Dong-mei, Zhang, Ke-qin, She, Dun-min, Guo, Fei-fan, Zhai, Qi-wei, Ying, Hao, Xue, Ying
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Sprache:eng
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Zusammenfassung:Purpose It has been increasingly suggested that specific microRNAs expression profiles in the circulation and atrial tissue are associated with the susceptibility to atrial fibrillation. Nonetheless, the role of circulating microRNAs in Graves’ disease patients with atrial fibrillation has not yet been well described. The objective of the study was to identify the role of circulating microRNAs as specific biomarkers for the diagnosis of Graves’ disease with atrial fibrillation. Methods The expression profiles of eight serum microRNAs, which are found to be critical in the pathogenesis of atrial fibrillation, were determined in patients with Graves’ disease with or without atrial fibrillation. MicroRNA expression analysis was performed by real-time PCR in normal control subjects (NC; n  = 17), patients with Graves’ disease without atrial fibrillation (GD; n  = 29), patients with Graves’ disease with atrial fibrillation (GD + AF; n  = 14), and euthyroid patients with atrial fibrillation (AF; n  = 22). Results Three of the eight serum microRNAs,i.e., miR-1a, miR-26a, and miR-133, had significantly different expression profiles among the four groups. Spearman’s correlation analysis showed that the relative expression level of miR-1a was positively correlated with free triiodothyronine (FT3) and free thyroxine (FT4), and negatively related to thyroid stimulating hormone. Spearman’s correlations analysis also revealed that the level of miR-1a was negatively correlated with a critical echocardiographic parameter (left atrial diameter), which was dramatically increased in GD + AF group compared to GD group. Furthermore, the receiver-operating characteristic curve analysis indicated that, among the eight microRNAs, miR-1a had the largest area under the receiver-operating characteristic curves not only for discriminating between individuals with and without Graves’ disease, but also for predicting the presence of atrial fibrillation in patients with Graves’ disease. Conclusions Our findings showed that the levels of serum miR-1a were significantly decreased in GD + AF group compared with GD group, suggesting that serum miR-1a might serve as a novel biomarker for diagnosis of atrial fibrillation in patients with Graves’ disease.
ISSN:1355-008X
1559-0100
DOI:10.1007/s12020-017-1331-4