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Multi-Omics Analysis of Diabetic Heart Disease in the db/db Model Reveals Potential Targets for Treatment by a Longevity-Associated Gene

Characterisation of animal models of diabetic cardiomyopathy may help unravel new molecular targets for therapy. Long-living individuals are protected from the adverse influence of diabetes on the heart, and the transfer of a longevity-associated variant (LAV) of the human BPIFB4 gene protects cardi...

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Autores principales: Faulkner, Ashton, Dang, Zexu, Avolio, Elisa, Thomas, Anita C, Batstone, Thomas, Lloyd, Gavin R, Weber, Ralf JM, Najdekr, Lukáš, Jankevics, Andris, Dunn, Warwick B, Spinetti, Gaia, Vecchione, Carmine, Puca, Annibale A, Madeddu, Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7290798/
https://www.ncbi.nlm.nih.gov/pubmed/32455800
http://dx.doi.org/10.3390/cells9051283
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author Faulkner, Ashton
Dang, Zexu
Avolio, Elisa
Thomas, Anita C
Batstone, Thomas
Lloyd, Gavin R
Weber, Ralf JM
Najdekr, Lukáš
Jankevics, Andris
Dunn, Warwick B
Spinetti, Gaia
Vecchione, Carmine
Puca, Annibale A
Madeddu, Paolo
author_facet Faulkner, Ashton
Dang, Zexu
Avolio, Elisa
Thomas, Anita C
Batstone, Thomas
Lloyd, Gavin R
Weber, Ralf JM
Najdekr, Lukáš
Jankevics, Andris
Dunn, Warwick B
Spinetti, Gaia
Vecchione, Carmine
Puca, Annibale A
Madeddu, Paolo
author_sort Faulkner, Ashton
collection PubMed
description Characterisation of animal models of diabetic cardiomyopathy may help unravel new molecular targets for therapy. Long-living individuals are protected from the adverse influence of diabetes on the heart, and the transfer of a longevity-associated variant (LAV) of the human BPIFB4 gene protects cardiac function in the db/db mouse model. This study aimed to determine the effect of LAV-BPIFB4 therapy on the metabolic phenotype (ultra-high-performance liquid chromatography-mass spectrometry, UHPLC-MS) and cardiac transcriptome (next-generation RNAseq) in db/db mice. UHPLC-MS showed that 493 cardiac metabolites were differentially modulated in diabetic compared with non-diabetic mice, mainly related to lipid metabolism. Moreover, only 3 out of 63 metabolites influenced by LAV-BPIFB4 therapy in diabetic hearts showed a reversion from the diabetic towards the non-diabetic phenotype. RNAseq showed 60 genes were differentially expressed in hearts of diabetic and non-diabetic mice. The contrast between LAV-BPIFB4- and vehicle-treated diabetic hearts revealed eight genes differentially expressed, mainly associated with mitochondrial and metabolic function. Bioinformatic analysis indicated that LAV-BPIFB4 re-programmed the heart transcriptome and metabolome rather than reverting it to a non-diabetic phenotype. Beside illustrating global metabolic and expressional changes in diabetic heart, our findings pinpoint subtle changes in mitochondrial-related proteins and lipid metabolism that could contribute to LAV-BPIFB4-induced cardio-protection in a murine model of type-2 diabetes.
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spelling pubmed-72907982020-06-17 Multi-Omics Analysis of Diabetic Heart Disease in the db/db Model Reveals Potential Targets for Treatment by a Longevity-Associated Gene Faulkner, Ashton Dang, Zexu Avolio, Elisa Thomas, Anita C Batstone, Thomas Lloyd, Gavin R Weber, Ralf JM Najdekr, Lukáš Jankevics, Andris Dunn, Warwick B Spinetti, Gaia Vecchione, Carmine Puca, Annibale A Madeddu, Paolo Cells Article Characterisation of animal models of diabetic cardiomyopathy may help unravel new molecular targets for therapy. Long-living individuals are protected from the adverse influence of diabetes on the heart, and the transfer of a longevity-associated variant (LAV) of the human BPIFB4 gene protects cardiac function in the db/db mouse model. This study aimed to determine the effect of LAV-BPIFB4 therapy on the metabolic phenotype (ultra-high-performance liquid chromatography-mass spectrometry, UHPLC-MS) and cardiac transcriptome (next-generation RNAseq) in db/db mice. UHPLC-MS showed that 493 cardiac metabolites were differentially modulated in diabetic compared with non-diabetic mice, mainly related to lipid metabolism. Moreover, only 3 out of 63 metabolites influenced by LAV-BPIFB4 therapy in diabetic hearts showed a reversion from the diabetic towards the non-diabetic phenotype. RNAseq showed 60 genes were differentially expressed in hearts of diabetic and non-diabetic mice. The contrast between LAV-BPIFB4- and vehicle-treated diabetic hearts revealed eight genes differentially expressed, mainly associated with mitochondrial and metabolic function. Bioinformatic analysis indicated that LAV-BPIFB4 re-programmed the heart transcriptome and metabolome rather than reverting it to a non-diabetic phenotype. Beside illustrating global metabolic and expressional changes in diabetic heart, our findings pinpoint subtle changes in mitochondrial-related proteins and lipid metabolism that could contribute to LAV-BPIFB4-induced cardio-protection in a murine model of type-2 diabetes. MDPI 2020-05-21 /pmc/articles/PMC7290798/ /pubmed/32455800 http://dx.doi.org/10.3390/cells9051283 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Faulkner, Ashton
Dang, Zexu
Avolio, Elisa
Thomas, Anita C
Batstone, Thomas
Lloyd, Gavin R
Weber, Ralf JM
Najdekr, Lukáš
Jankevics, Andris
Dunn, Warwick B
Spinetti, Gaia
Vecchione, Carmine
Puca, Annibale A
Madeddu, Paolo
Multi-Omics Analysis of Diabetic Heart Disease in the db/db Model Reveals Potential Targets for Treatment by a Longevity-Associated Gene
title Multi-Omics Analysis of Diabetic Heart Disease in the db/db Model Reveals Potential Targets for Treatment by a Longevity-Associated Gene
title_full Multi-Omics Analysis of Diabetic Heart Disease in the db/db Model Reveals Potential Targets for Treatment by a Longevity-Associated Gene
title_fullStr Multi-Omics Analysis of Diabetic Heart Disease in the db/db Model Reveals Potential Targets for Treatment by a Longevity-Associated Gene
title_full_unstemmed Multi-Omics Analysis of Diabetic Heart Disease in the db/db Model Reveals Potential Targets for Treatment by a Longevity-Associated Gene
title_short Multi-Omics Analysis of Diabetic Heart Disease in the db/db Model Reveals Potential Targets for Treatment by a Longevity-Associated Gene
title_sort multi-omics analysis of diabetic heart disease in the db/db model reveals potential targets for treatment by a longevity-associated gene
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7290798/
https://www.ncbi.nlm.nih.gov/pubmed/32455800
http://dx.doi.org/10.3390/cells9051283
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