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Transfer of a human gene variant associated with exceptional longevity improves cardiac function in obese type 2 diabetic mice through induction of the SDF‐1/CXCR4 signalling pathway

AIMS: Homozygosity for a four‐missense single‐nucleotide polymorphism haplotype of the human BPIFB4 gene is enriched in long‐living individuals. Delivery of this longevity‐associated variant (LAV) improved revascularisation and reduced endothelial dysfunction and atherosclerosis in mice through a me...

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Autores principales: Dang, Zexu, Avolio, Elisa, Thomas, Anita C., Faulkner, Ashton, Beltrami, Antonio P., Cervellin, Celeste, Carrizzo, Albino, Maciag, Anna, Gu, Yue, Ciaglia, Elena, Finato, Nicoletta, Damato, Antonio, Spinetti, Gaia, Alenzi, Aishah, Paisey, Stephen J., Vecchione, Carmine, Puca, Annibale A., Madeddu, Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8220375/
https://www.ncbi.nlm.nih.gov/pubmed/32384208
http://dx.doi.org/10.1002/ejhf.1840
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author Dang, Zexu
Avolio, Elisa
Thomas, Anita C.
Faulkner, Ashton
Beltrami, Antonio P.
Cervellin, Celeste
Carrizzo, Albino
Maciag, Anna
Gu, Yue
Ciaglia, Elena
Finato, Nicoletta
Damato, Antonio
Spinetti, Gaia
Alenzi, Aishah
Paisey, Stephen J.
Vecchione, Carmine
Puca, Annibale A.
Madeddu, Paolo
author_facet Dang, Zexu
Avolio, Elisa
Thomas, Anita C.
Faulkner, Ashton
Beltrami, Antonio P.
Cervellin, Celeste
Carrizzo, Albino
Maciag, Anna
Gu, Yue
Ciaglia, Elena
Finato, Nicoletta
Damato, Antonio
Spinetti, Gaia
Alenzi, Aishah
Paisey, Stephen J.
Vecchione, Carmine
Puca, Annibale A.
Madeddu, Paolo
author_sort Dang, Zexu
collection PubMed
description AIMS: Homozygosity for a four‐missense single‐nucleotide polymorphism haplotype of the human BPIFB4 gene is enriched in long‐living individuals. Delivery of this longevity‐associated variant (LAV) improved revascularisation and reduced endothelial dysfunction and atherosclerosis in mice through a mechanism involving the stromal cell‐derived factor‐1 (SDF‐1). Here, we investigated if delivery of the LAV‐BPIFB4 gene may attenuate the progression of diabetic cardiomyopathy. METHODS AND RESULTS: Compared with age‐matched lean controls, diabetic db/db mice showed altered echocardiographic indices of diastolic and systolic function and histological evidence of microvascular rarefaction, lipid accumulation, and fibrosis in the myocardium. All these alterations, as well as endothelial dysfunction, were prevented by systemic LAV‐BPIFB4 gene therapy using an adeno‐associated viral vector serotype 9 (AAV9). In contrast, AAV9 wild‐type‐BPIFB4 exerted no benefit. Interestingly, LAV‐BPIFB4‐treated mice showed increased SDF‐1 levels in peripheral blood and myocardium and up‐regulation of the cardiac myosin heavy chain isoform alpha, a contractile protein that was reduced in diabetic hearts. SDF‐1 up‐regulation was instrumental to LAV‐BPIFB4‐induced benefit as both haemodynamic and structural improvements were inhibited by an orally active antagonist of the SDF‐1 CXCR4 receptor. CONCLUSIONS: In mice with type‐2 diabetes, LAV‐BPIFB4 gene therapy promotes an advantageous remodelling of the heart, allowing it to better withstand diabetes‐induced stress. These results support the viability of transferring healthy characteristics of longevity to attenuate diabetic cardiac disease.
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spelling pubmed-82203752021-06-28 Transfer of a human gene variant associated with exceptional longevity improves cardiac function in obese type 2 diabetic mice through induction of the SDF‐1/CXCR4 signalling pathway Dang, Zexu Avolio, Elisa Thomas, Anita C. Faulkner, Ashton Beltrami, Antonio P. Cervellin, Celeste Carrizzo, Albino Maciag, Anna Gu, Yue Ciaglia, Elena Finato, Nicoletta Damato, Antonio Spinetti, Gaia Alenzi, Aishah Paisey, Stephen J. Vecchione, Carmine Puca, Annibale A. Madeddu, Paolo Eur J Heart Fail Pathophysiology AIMS: Homozygosity for a four‐missense single‐nucleotide polymorphism haplotype of the human BPIFB4 gene is enriched in long‐living individuals. Delivery of this longevity‐associated variant (LAV) improved revascularisation and reduced endothelial dysfunction and atherosclerosis in mice through a mechanism involving the stromal cell‐derived factor‐1 (SDF‐1). Here, we investigated if delivery of the LAV‐BPIFB4 gene may attenuate the progression of diabetic cardiomyopathy. METHODS AND RESULTS: Compared with age‐matched lean controls, diabetic db/db mice showed altered echocardiographic indices of diastolic and systolic function and histological evidence of microvascular rarefaction, lipid accumulation, and fibrosis in the myocardium. All these alterations, as well as endothelial dysfunction, were prevented by systemic LAV‐BPIFB4 gene therapy using an adeno‐associated viral vector serotype 9 (AAV9). In contrast, AAV9 wild‐type‐BPIFB4 exerted no benefit. Interestingly, LAV‐BPIFB4‐treated mice showed increased SDF‐1 levels in peripheral blood and myocardium and up‐regulation of the cardiac myosin heavy chain isoform alpha, a contractile protein that was reduced in diabetic hearts. SDF‐1 up‐regulation was instrumental to LAV‐BPIFB4‐induced benefit as both haemodynamic and structural improvements were inhibited by an orally active antagonist of the SDF‐1 CXCR4 receptor. CONCLUSIONS: In mice with type‐2 diabetes, LAV‐BPIFB4 gene therapy promotes an advantageous remodelling of the heart, allowing it to better withstand diabetes‐induced stress. These results support the viability of transferring healthy characteristics of longevity to attenuate diabetic cardiac disease. John Wiley & Sons, Ltd. 2020-05-08 2020-09 /pmc/articles/PMC8220375/ /pubmed/32384208 http://dx.doi.org/10.1002/ejhf.1840 Text en © 2020 The Authors. European Journal of Heart Failure published by John Wiley & Sons Ltd on behalf of European Society of Cardiology https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Pathophysiology
Dang, Zexu
Avolio, Elisa
Thomas, Anita C.
Faulkner, Ashton
Beltrami, Antonio P.
Cervellin, Celeste
Carrizzo, Albino
Maciag, Anna
Gu, Yue
Ciaglia, Elena
Finato, Nicoletta
Damato, Antonio
Spinetti, Gaia
Alenzi, Aishah
Paisey, Stephen J.
Vecchione, Carmine
Puca, Annibale A.
Madeddu, Paolo
Transfer of a human gene variant associated with exceptional longevity improves cardiac function in obese type 2 diabetic mice through induction of the SDF‐1/CXCR4 signalling pathway
title Transfer of a human gene variant associated with exceptional longevity improves cardiac function in obese type 2 diabetic mice through induction of the SDF‐1/CXCR4 signalling pathway
title_full Transfer of a human gene variant associated with exceptional longevity improves cardiac function in obese type 2 diabetic mice through induction of the SDF‐1/CXCR4 signalling pathway
title_fullStr Transfer of a human gene variant associated with exceptional longevity improves cardiac function in obese type 2 diabetic mice through induction of the SDF‐1/CXCR4 signalling pathway
title_full_unstemmed Transfer of a human gene variant associated with exceptional longevity improves cardiac function in obese type 2 diabetic mice through induction of the SDF‐1/CXCR4 signalling pathway
title_short Transfer of a human gene variant associated with exceptional longevity improves cardiac function in obese type 2 diabetic mice through induction of the SDF‐1/CXCR4 signalling pathway
title_sort transfer of a human gene variant associated with exceptional longevity improves cardiac function in obese type 2 diabetic mice through induction of the sdf‐1/cxcr4 signalling pathway
topic Pathophysiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8220375/
https://www.ncbi.nlm.nih.gov/pubmed/32384208
http://dx.doi.org/10.1002/ejhf.1840
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