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Derangements and Reversibility of Energy Metabolism in Failing Hearts Resulting from Volume Overload: Transcriptomics and Metabolomics Analyses

Derangements in cardiac energy metabolism have been shown to contribute to the development of heart failure (HF). This study combined transcriptomics and metabolomics analyses to characterize the changes and reversibility of cardiac energetics in a rat model of cardiac volume overload (VO) with the...

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Autores principales: Tung, Ying-Chang, Cheng, Mei-Ling, Wu, Lung-Sheng, Tang, Hsiang-Yu, Huang, Cheng-Yu, Chang, Gwo-Jyh, Chang, Chi-Jen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9224487/
https://www.ncbi.nlm.nih.gov/pubmed/35743252
http://dx.doi.org/10.3390/ijms23126809
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author Tung, Ying-Chang
Cheng, Mei-Ling
Wu, Lung-Sheng
Tang, Hsiang-Yu
Huang, Cheng-Yu
Chang, Gwo-Jyh
Chang, Chi-Jen
author_facet Tung, Ying-Chang
Cheng, Mei-Ling
Wu, Lung-Sheng
Tang, Hsiang-Yu
Huang, Cheng-Yu
Chang, Gwo-Jyh
Chang, Chi-Jen
author_sort Tung, Ying-Chang
collection PubMed
description Derangements in cardiac energy metabolism have been shown to contribute to the development of heart failure (HF). This study combined transcriptomics and metabolomics analyses to characterize the changes and reversibility of cardiac energetics in a rat model of cardiac volume overload (VO) with the creation and subsequent closure of aortocaval fistula. Male Sprague–Dawley rats subjected to an aortocaval fistula surgery for 8 and 16 weeks exhibited characteristics of compensated hypertrophy (CH) and HF, respectively, in echocardiographic and hemodynamic studies. Glycolysis was downregulated and directed to the hexosamine biosynthetic pathway (HBP) and O-linked-N-acetylglucosaminylation in the CH phase and was further suppressed during progression to HF. Derangements in fatty acid oxidation were not prominent until the development of HF, as indicated by the accumulation of acylcarnitines. The gene expression and intermediates of the tricarboxylic acid cycle were not significantly altered in this model. Correction of VO largely reversed the differential expression of genes involved in glycolysis, HBP, and fatty acid oxidation in CH but not in HF. Delayed correction of VO in HF resulted in incomplete recovery of defective glycolysis and fatty acid oxidation. These findings may provide insight into the development of innovative strategies to prevent or reverse metabolic derangements in VO-induced HF.
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spelling pubmed-92244872022-06-24 Derangements and Reversibility of Energy Metabolism in Failing Hearts Resulting from Volume Overload: Transcriptomics and Metabolomics Analyses Tung, Ying-Chang Cheng, Mei-Ling Wu, Lung-Sheng Tang, Hsiang-Yu Huang, Cheng-Yu Chang, Gwo-Jyh Chang, Chi-Jen Int J Mol Sci Article Derangements in cardiac energy metabolism have been shown to contribute to the development of heart failure (HF). This study combined transcriptomics and metabolomics analyses to characterize the changes and reversibility of cardiac energetics in a rat model of cardiac volume overload (VO) with the creation and subsequent closure of aortocaval fistula. Male Sprague–Dawley rats subjected to an aortocaval fistula surgery for 8 and 16 weeks exhibited characteristics of compensated hypertrophy (CH) and HF, respectively, in echocardiographic and hemodynamic studies. Glycolysis was downregulated and directed to the hexosamine biosynthetic pathway (HBP) and O-linked-N-acetylglucosaminylation in the CH phase and was further suppressed during progression to HF. Derangements in fatty acid oxidation were not prominent until the development of HF, as indicated by the accumulation of acylcarnitines. The gene expression and intermediates of the tricarboxylic acid cycle were not significantly altered in this model. Correction of VO largely reversed the differential expression of genes involved in glycolysis, HBP, and fatty acid oxidation in CH but not in HF. Delayed correction of VO in HF resulted in incomplete recovery of defective glycolysis and fatty acid oxidation. These findings may provide insight into the development of innovative strategies to prevent or reverse metabolic derangements in VO-induced HF. MDPI 2022-06-18 /pmc/articles/PMC9224487/ /pubmed/35743252 http://dx.doi.org/10.3390/ijms23126809 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tung, Ying-Chang
Cheng, Mei-Ling
Wu, Lung-Sheng
Tang, Hsiang-Yu
Huang, Cheng-Yu
Chang, Gwo-Jyh
Chang, Chi-Jen
Derangements and Reversibility of Energy Metabolism in Failing Hearts Resulting from Volume Overload: Transcriptomics and Metabolomics Analyses
title Derangements and Reversibility of Energy Metabolism in Failing Hearts Resulting from Volume Overload: Transcriptomics and Metabolomics Analyses
title_full Derangements and Reversibility of Energy Metabolism in Failing Hearts Resulting from Volume Overload: Transcriptomics and Metabolomics Analyses
title_fullStr Derangements and Reversibility of Energy Metabolism in Failing Hearts Resulting from Volume Overload: Transcriptomics and Metabolomics Analyses
title_full_unstemmed Derangements and Reversibility of Energy Metabolism in Failing Hearts Resulting from Volume Overload: Transcriptomics and Metabolomics Analyses
title_short Derangements and Reversibility of Energy Metabolism in Failing Hearts Resulting from Volume Overload: Transcriptomics and Metabolomics Analyses
title_sort derangements and reversibility of energy metabolism in failing hearts resulting from volume overload: transcriptomics and metabolomics analyses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9224487/
https://www.ncbi.nlm.nih.gov/pubmed/35743252
http://dx.doi.org/10.3390/ijms23126809
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