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Signs of Cardiac Autonomic Imbalance and Proarrhythmic Remodeling in FTO Deficient Mice

In humans, variants of the fat mass and obesity associated (FTO) gene have recently been associated with obesity. However, the physiological function of FTO is not well defined. Previous investigations in mice have linked FTO deficiency to growth retardation, loss of white adipose tissue, increased...

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Autores principales: Carnevali, Luca, Graiani, Gallia, Rossi, Stefano, Al Banchaabouchi, Mumna, Macchi, Emilio, Quaini, Federico, Rosenthal, Nadia, Sgoifo, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3990670/
https://www.ncbi.nlm.nih.gov/pubmed/24743632
http://dx.doi.org/10.1371/journal.pone.0095499
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author Carnevali, Luca
Graiani, Gallia
Rossi, Stefano
Al Banchaabouchi, Mumna
Macchi, Emilio
Quaini, Federico
Rosenthal, Nadia
Sgoifo, Andrea
author_facet Carnevali, Luca
Graiani, Gallia
Rossi, Stefano
Al Banchaabouchi, Mumna
Macchi, Emilio
Quaini, Federico
Rosenthal, Nadia
Sgoifo, Andrea
author_sort Carnevali, Luca
collection PubMed
description In humans, variants of the fat mass and obesity associated (FTO) gene have recently been associated with obesity. However, the physiological function of FTO is not well defined. Previous investigations in mice have linked FTO deficiency to growth retardation, loss of white adipose tissue, increased energy metabolism and enhanced systemic sympathetic activation. In this study we investigated for the first time the effects of global knockout of the mouse FTO gene on cardiac function and its autonomic neural regulation. ECG recordings were acquired via radiotelemetry in homozygous knockout (n = 12) and wild-type (n = 8) mice during resting and stress conditions, and analyzed by means of time- and frequency-domain indexes of heart rate variability. In the same animals, cardiac electrophysiological properties (assessed by epicardial mapping) and structural characteristics were investigated. Our data indicate that FTO knockout mice were characterized by (i) higher heart rate values during resting and stress conditions, (ii) heart rate variability changes (increased LF to HF ratio), (iii) larger vulnerability to stress-induced tachyarrhythmias, (iv) altered ventricular repolarization, and (v) cardiac hypertrophy compared to wild-type counterparts. We conclude that FTO deficiency in mice leads to an imbalance of the autonomic neural modulation of cardiac function in the sympathetic direction and to a potentially proarrhythmic remodeling of electrical and structural properties of the heart.
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spelling pubmed-39906702014-04-21 Signs of Cardiac Autonomic Imbalance and Proarrhythmic Remodeling in FTO Deficient Mice Carnevali, Luca Graiani, Gallia Rossi, Stefano Al Banchaabouchi, Mumna Macchi, Emilio Quaini, Federico Rosenthal, Nadia Sgoifo, Andrea PLoS One Research Article In humans, variants of the fat mass and obesity associated (FTO) gene have recently been associated with obesity. However, the physiological function of FTO is not well defined. Previous investigations in mice have linked FTO deficiency to growth retardation, loss of white adipose tissue, increased energy metabolism and enhanced systemic sympathetic activation. In this study we investigated for the first time the effects of global knockout of the mouse FTO gene on cardiac function and its autonomic neural regulation. ECG recordings were acquired via radiotelemetry in homozygous knockout (n = 12) and wild-type (n = 8) mice during resting and stress conditions, and analyzed by means of time- and frequency-domain indexes of heart rate variability. In the same animals, cardiac electrophysiological properties (assessed by epicardial mapping) and structural characteristics were investigated. Our data indicate that FTO knockout mice were characterized by (i) higher heart rate values during resting and stress conditions, (ii) heart rate variability changes (increased LF to HF ratio), (iii) larger vulnerability to stress-induced tachyarrhythmias, (iv) altered ventricular repolarization, and (v) cardiac hypertrophy compared to wild-type counterparts. We conclude that FTO deficiency in mice leads to an imbalance of the autonomic neural modulation of cardiac function in the sympathetic direction and to a potentially proarrhythmic remodeling of electrical and structural properties of the heart. Public Library of Science 2014-04-17 /pmc/articles/PMC3990670/ /pubmed/24743632 http://dx.doi.org/10.1371/journal.pone.0095499 Text en © 2014 Carnevali et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Carnevali, Luca
Graiani, Gallia
Rossi, Stefano
Al Banchaabouchi, Mumna
Macchi, Emilio
Quaini, Federico
Rosenthal, Nadia
Sgoifo, Andrea
Signs of Cardiac Autonomic Imbalance and Proarrhythmic Remodeling in FTO Deficient Mice
title Signs of Cardiac Autonomic Imbalance and Proarrhythmic Remodeling in FTO Deficient Mice
title_full Signs of Cardiac Autonomic Imbalance and Proarrhythmic Remodeling in FTO Deficient Mice
title_fullStr Signs of Cardiac Autonomic Imbalance and Proarrhythmic Remodeling in FTO Deficient Mice
title_full_unstemmed Signs of Cardiac Autonomic Imbalance and Proarrhythmic Remodeling in FTO Deficient Mice
title_short Signs of Cardiac Autonomic Imbalance and Proarrhythmic Remodeling in FTO Deficient Mice
title_sort signs of cardiac autonomic imbalance and proarrhythmic remodeling in fto deficient mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3990670/
https://www.ncbi.nlm.nih.gov/pubmed/24743632
http://dx.doi.org/10.1371/journal.pone.0095499
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