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  4. Circulating microRNAs predispose to takotsubo syndrome following high-dose adrenaline exposure
 
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2022
Journal Article
Title

Circulating microRNAs predispose to takotsubo syndrome following high-dose adrenaline exposure

Abstract
Aims: Takotsubo syndrome (TTS) is an acute heart failure, typically triggered by high adrenaline during physical or emotional stress. It is distinguished from myocardial infarction (MI) by a characteristic pattern of ventricular basal hypercontractility with hypokinesis of apical segments, and in the absence of culprit coronary occlusion. We aimed to understand whether recently discovered circulating biomarkers miR-16 and miR-26a, which differentiate TTS from MI at presentation, were mechanistically involved in the pathophysiology of TTS.
Methods and results: miR-16 and miR-26a were co-overexpressed in rats with AAV and TTS induced with an adrenaline bolus. Untreated isolated rat cardiomyocytes were transfected with pre-/anti-miRs and functionally assessed. Ventricular basal hypercontraction and apical depression were accentuated in miR-transfected animals after induction of TTS. In vitro miR-16 and/or miR-26a overexpression in isolated apical (but not basal), cardiomyocytes produced strong depression of contraction, with loss of adrenaline sensitivity. They also enhanced the initial positive inotropic effect of adrenaline in basal cells. Decreased contractility after TTS-miRs was reproduced in non-failing human apical cardiomyocytes. Bioinformatic profiling of miR targets, followed by expression assays and functional experiments, identified reductions of CACNB1 (L-type calcium channel Cavβ subunit), RGS4 (regulator of G-protein signalling 4), and G-protein subunit Gβ (GNB1) as underlying these effects.
Conclusion: miR-16 and miR-26a sensitize the heart to TTS-like changes produced by adrenaline. Since these miRs have been associated with anxiety and depression, they could provide a mechanism whereby priming of the heart by previous stress causes an increased likelihood of TTS in the future.
Author(s)
Couch, L.S.
National Heart and Lung Institute
Fiedler, Jan  
Medizinische Hochschule Hannover (MHH)
Chick, G.
National Heart and Lung Institute
Clayton, R.
National Heart and Lung Institute
Dries, E.
National Heart and Lung Institute
Wienecke, L.M.
National Heart and Lung Institute
Fu, L.
National Heart and Lung Institute
Fourre, J.
National Heart and Lung Institute
Pandey, P.
National Heart and Lung Institute
Derda, A.A.
National Heart and Lung Institute
Wang, B.X.
National Heart and Lung Institute
Jabbour, R.
National Heart and Lung Institute
Shanmuganathan, M.
National Heart and Lung Institute
Wright, P.
National Heart and Lung Institute
Lyon, A.R.
National Heart and Lung Institute
Terracciano, C.M.
National Heart and Lung Institute
Thum, Thomas  
National Heart and Lung Institute
Harding, S.E.
National Heart and Lung Institute
Journal
Cardiovascular research  
Open Access
DOI
10.1093/cvr/cvab210
Additional link
Full text
Language
English
Fraunhofer-Institut für Toxikologie und Experimentelle Medizin ITEM  
Keyword(s)
  • Adrenaline

  • Cardiomyocyte

  • Heart failure

  • In vivo

  • MicroRNAs

  • Stress

  • Takotsubo syndrome

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