MicroRNAs: New contributors to mechano-electric coupling and atrial fibrillation
- PMID: 33011190
- DOI: 10.1016/j.pbiomolbio.2020.09.007
MicroRNAs: New contributors to mechano-electric coupling and atrial fibrillation
Abstract
Atrial fibrillation (AF) is a multifactorial disease, which often occurs in the presence of underlying cardiac abnormalities and is supported by electrophysiological and structural alterations, generally referred to as atrial remodeling. Abnormal substrates are commonly encountered in various conditions that predispose to AF, such as hypertension, heart failure, obesity, and sleep apnea, in which atrial stretch plays a key mechanistic role. Emerging evidence suggests a role for microRNAs (small non-coding RNAs) in the pathogenesis of AF, where they can act as post-transcriptional regulators of the genes involved in atrial remodeling. This review summarizes the experimental and clinical evidence that supports the role of microRNAs in the modulation of atrial electrical and structural remodeling with a focus on overload-induced atrial alterations, and discusses the potential contribution of microRNAs to mechano-electrical coupling and AF.
Keywords: Atrial fibrillation; Atrial remodeling; Cardiac stretch; Mechano-electric feedback; Post-transcriptional regulation; microRNAs.
Copyright © 2020 Elsevier Ltd. All rights reserved.
Conflict of interest statement
Declaration of competing interest The authors have no relationships relevant to the content of this paper to disclose.
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