Cargando…

Antioxidant and Cardioprotective Effects of EPA on Early Low-Severity Sepsis through UCP3 and SIRT3 Upholding of the Mitochondrial Redox Potential

Sepsis still causes death, often through cardiac failure and mitochondrial dysfunction. Dietary ω3 polyunsaturated fatty acids are known to protect against cardiac dysfunction and sepsis lethality. This study set out to determine whether early low-severity sepsis alters the cardiac mitochondrial fun...

Descripción completa

Detalles Bibliográficos
Autores principales: Leger, Thibault, Azarnoush, Kasra, Traoré, Amidou, Cassagnes, Lucie, Rigaudière, Jean-Paul, Jouve, Chrystèle, Pagès, Guilhem, Bouvier, Damien, Sapin, Vincent, Pereira, Bruno, Bonny, Jean-Marie, Demaison, Luc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6732625/
https://www.ncbi.nlm.nih.gov/pubmed/31534623
http://dx.doi.org/10.1155/2019/9710352
_version_ 1783449849461473280
author Leger, Thibault
Azarnoush, Kasra
Traoré, Amidou
Cassagnes, Lucie
Rigaudière, Jean-Paul
Jouve, Chrystèle
Pagès, Guilhem
Bouvier, Damien
Sapin, Vincent
Pereira, Bruno
Bonny, Jean-Marie
Demaison, Luc
author_facet Leger, Thibault
Azarnoush, Kasra
Traoré, Amidou
Cassagnes, Lucie
Rigaudière, Jean-Paul
Jouve, Chrystèle
Pagès, Guilhem
Bouvier, Damien
Sapin, Vincent
Pereira, Bruno
Bonny, Jean-Marie
Demaison, Luc
author_sort Leger, Thibault
collection PubMed
description Sepsis still causes death, often through cardiac failure and mitochondrial dysfunction. Dietary ω3 polyunsaturated fatty acids are known to protect against cardiac dysfunction and sepsis lethality. This study set out to determine whether early low-severity sepsis alters the cardiac mitochondrial function in animals fed a Western-type diet and whether dietary eicosapentaenoic acid (EPA) administration protects the myocardium against the deleterious effects of sepsis and if so to seek possible mechanisms for its effects. Rats were divided into two groups fed either an ω3 PUFA-deficient diet (“Western diet,” DEF group) or an EPA-enriched diet (EPA group) for 5 weeks. Each group was subdivided into two subgroups: sham-operated rats and rats subjected to cecal ligation and puncture (CLP). In vivo cardiac mechanical function was examined, and mitochondria were harvested to determine their functional activity. Oxidative stress was evaluated together with several factors involved in the regulation of reactive oxygen species metabolism. Sepsis had little effect on cardiac mechanical function but strongly depressed mitochondrial function in the DEF group. Conversely, dietary EPA greatly protected the mitochondria through a decreased oxidative stress of the mitochondrial matrix. The latter was probably due to an increased uncoupling protein-3 expression, already seen in the sham-operated animals. CLP rats in the EPA group also displayed increased mitochondrial sirtuin-3 protein expression that could reinforce the upholding of oxidative phosphorylation. Dietary EPA preconditioned the heart against septic damage through several modifications that protect mitochondrial integrity. This preconditioning can explain the cardioprotective effect of dietary EPA during sepsis.
format Online
Article
Text
id pubmed-6732625
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-67326252019-09-18 Antioxidant and Cardioprotective Effects of EPA on Early Low-Severity Sepsis through UCP3 and SIRT3 Upholding of the Mitochondrial Redox Potential Leger, Thibault Azarnoush, Kasra Traoré, Amidou Cassagnes, Lucie Rigaudière, Jean-Paul Jouve, Chrystèle Pagès, Guilhem Bouvier, Damien Sapin, Vincent Pereira, Bruno Bonny, Jean-Marie Demaison, Luc Oxid Med Cell Longev Research Article Sepsis still causes death, often through cardiac failure and mitochondrial dysfunction. Dietary ω3 polyunsaturated fatty acids are known to protect against cardiac dysfunction and sepsis lethality. This study set out to determine whether early low-severity sepsis alters the cardiac mitochondrial function in animals fed a Western-type diet and whether dietary eicosapentaenoic acid (EPA) administration protects the myocardium against the deleterious effects of sepsis and if so to seek possible mechanisms for its effects. Rats were divided into two groups fed either an ω3 PUFA-deficient diet (“Western diet,” DEF group) or an EPA-enriched diet (EPA group) for 5 weeks. Each group was subdivided into two subgroups: sham-operated rats and rats subjected to cecal ligation and puncture (CLP). In vivo cardiac mechanical function was examined, and mitochondria were harvested to determine their functional activity. Oxidative stress was evaluated together with several factors involved in the regulation of reactive oxygen species metabolism. Sepsis had little effect on cardiac mechanical function but strongly depressed mitochondrial function in the DEF group. Conversely, dietary EPA greatly protected the mitochondria through a decreased oxidative stress of the mitochondrial matrix. The latter was probably due to an increased uncoupling protein-3 expression, already seen in the sham-operated animals. CLP rats in the EPA group also displayed increased mitochondrial sirtuin-3 protein expression that could reinforce the upholding of oxidative phosphorylation. Dietary EPA preconditioned the heart against septic damage through several modifications that protect mitochondrial integrity. This preconditioning can explain the cardioprotective effect of dietary EPA during sepsis. Hindawi 2019-08-26 /pmc/articles/PMC6732625/ /pubmed/31534623 http://dx.doi.org/10.1155/2019/9710352 Text en Copyright © 2019 Thibault Leger et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Leger, Thibault
Azarnoush, Kasra
Traoré, Amidou
Cassagnes, Lucie
Rigaudière, Jean-Paul
Jouve, Chrystèle
Pagès, Guilhem
Bouvier, Damien
Sapin, Vincent
Pereira, Bruno
Bonny, Jean-Marie
Demaison, Luc
Antioxidant and Cardioprotective Effects of EPA on Early Low-Severity Sepsis through UCP3 and SIRT3 Upholding of the Mitochondrial Redox Potential
title Antioxidant and Cardioprotective Effects of EPA on Early Low-Severity Sepsis through UCP3 and SIRT3 Upholding of the Mitochondrial Redox Potential
title_full Antioxidant and Cardioprotective Effects of EPA on Early Low-Severity Sepsis through UCP3 and SIRT3 Upholding of the Mitochondrial Redox Potential
title_fullStr Antioxidant and Cardioprotective Effects of EPA on Early Low-Severity Sepsis through UCP3 and SIRT3 Upholding of the Mitochondrial Redox Potential
title_full_unstemmed Antioxidant and Cardioprotective Effects of EPA on Early Low-Severity Sepsis through UCP3 and SIRT3 Upholding of the Mitochondrial Redox Potential
title_short Antioxidant and Cardioprotective Effects of EPA on Early Low-Severity Sepsis through UCP3 and SIRT3 Upholding of the Mitochondrial Redox Potential
title_sort antioxidant and cardioprotective effects of epa on early low-severity sepsis through ucp3 and sirt3 upholding of the mitochondrial redox potential
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6732625/
https://www.ncbi.nlm.nih.gov/pubmed/31534623
http://dx.doi.org/10.1155/2019/9710352
work_keys_str_mv AT legerthibault antioxidantandcardioprotectiveeffectsofepaonearlylowseveritysepsisthroughucp3andsirt3upholdingofthemitochondrialredoxpotential
AT azarnoushkasra antioxidantandcardioprotectiveeffectsofepaonearlylowseveritysepsisthroughucp3andsirt3upholdingofthemitochondrialredoxpotential
AT traoreamidou antioxidantandcardioprotectiveeffectsofepaonearlylowseveritysepsisthroughucp3andsirt3upholdingofthemitochondrialredoxpotential
AT cassagneslucie antioxidantandcardioprotectiveeffectsofepaonearlylowseveritysepsisthroughucp3andsirt3upholdingofthemitochondrialredoxpotential
AT rigaudierejeanpaul antioxidantandcardioprotectiveeffectsofepaonearlylowseveritysepsisthroughucp3andsirt3upholdingofthemitochondrialredoxpotential
AT jouvechrystele antioxidantandcardioprotectiveeffectsofepaonearlylowseveritysepsisthroughucp3andsirt3upholdingofthemitochondrialredoxpotential
AT pagesguilhem antioxidantandcardioprotectiveeffectsofepaonearlylowseveritysepsisthroughucp3andsirt3upholdingofthemitochondrialredoxpotential
AT bouvierdamien antioxidantandcardioprotectiveeffectsofepaonearlylowseveritysepsisthroughucp3andsirt3upholdingofthemitochondrialredoxpotential
AT sapinvincent antioxidantandcardioprotectiveeffectsofepaonearlylowseveritysepsisthroughucp3andsirt3upholdingofthemitochondrialredoxpotential
AT pereirabruno antioxidantandcardioprotectiveeffectsofepaonearlylowseveritysepsisthroughucp3andsirt3upholdingofthemitochondrialredoxpotential
AT bonnyjeanmarie antioxidantandcardioprotectiveeffectsofepaonearlylowseveritysepsisthroughucp3andsirt3upholdingofthemitochondrialredoxpotential
AT demaisonluc antioxidantandcardioprotectiveeffectsofepaonearlylowseveritysepsisthroughucp3andsirt3upholdingofthemitochondrialredoxpotential