Cargando…

The Citrus Flavanone Naringenin Produces Cardioprotective Effects in Hearts from 1 Year Old Rat, through Activation of mitoBK Channels

Background and Purpose: Incidence of cardiovascular disorders increases with age, because of a dramatic fall of endogenous self-defense mechanisms and increased vulnerability of myocardium. Conversely, the effectiveness of many cardioprotective drugs is blunted in hearts of 1 year old rat. The Citru...

Descripción completa

Detalles Bibliográficos
Autores principales: Testai, Lara, Da Pozzo, Eleonora, Piano, Ilaria, Pistelli, Luisa, Gargini, Claudia, Breschi, Maria Cristina, Braca, Alessandra, Martini, Claudia, Martelli, Alma, Calderone, Vincenzo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5326774/
https://www.ncbi.nlm.nih.gov/pubmed/28289383
http://dx.doi.org/10.3389/fphar.2017.00071
_version_ 1782510595750232064
author Testai, Lara
Da Pozzo, Eleonora
Piano, Ilaria
Pistelli, Luisa
Gargini, Claudia
Breschi, Maria Cristina
Braca, Alessandra
Martini, Claudia
Martelli, Alma
Calderone, Vincenzo
author_facet Testai, Lara
Da Pozzo, Eleonora
Piano, Ilaria
Pistelli, Luisa
Gargini, Claudia
Breschi, Maria Cristina
Braca, Alessandra
Martini, Claudia
Martelli, Alma
Calderone, Vincenzo
author_sort Testai, Lara
collection PubMed
description Background and Purpose: Incidence of cardiovascular disorders increases with age, because of a dramatic fall of endogenous self-defense mechanisms and increased vulnerability of myocardium. Conversely, the effectiveness of many cardioprotective drugs is blunted in hearts of 1 year old rat. The Citrus flavanone naringenin (NAR) was reported to promote cardioprotective effects against ischemia/reperfusion (I/R) injury, through the activation of mitochondrial large conductance calcium-activated potassium channel (mitoBK). These effects were observed in young adult rats, but no data are available about the possible cardioprotective effects of NAR in aged animals. Experimental Approach: This study aimed at evaluating the potential cardioprotective effects of NAR against I/R damage in 1 year old rats, and the possible involvement of mitoBK. Key Results: Naringenin protected the hearts of 1 year old rats in both ex vivo and in vivo I/R protocols. Noteworthy, these effects were antagonized by paxilline, a selective BK-blocker. The cardioprotective effects of NAR were also observed in senescent H9c2 cardiomyoblasts. In isolated mitochondria from hearts of 1 year old, NAR exhibited the typical profile of a mitoBK opener. Finally, Western Blot analysis confirmed a significant (albeit reduced) presence of BK-forming alpha and beta subunits, both in cardiac tissue of 1 year old rats and in senescent H9c2 cells. Conclusion and Implications: This is the first work reporting cardioprotective effects of NAR in 1 year old rats. Although further studies are needed to better understand the whole pathway involved in the NAR-mediated cardioprotection, these preliminary data represent a promising perspective for a rational nutraceutical use of NAR in aging.
format Online
Article
Text
id pubmed-5326774
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-53267742017-03-13 The Citrus Flavanone Naringenin Produces Cardioprotective Effects in Hearts from 1 Year Old Rat, through Activation of mitoBK Channels Testai, Lara Da Pozzo, Eleonora Piano, Ilaria Pistelli, Luisa Gargini, Claudia Breschi, Maria Cristina Braca, Alessandra Martini, Claudia Martelli, Alma Calderone, Vincenzo Front Pharmacol Pharmacology Background and Purpose: Incidence of cardiovascular disorders increases with age, because of a dramatic fall of endogenous self-defense mechanisms and increased vulnerability of myocardium. Conversely, the effectiveness of many cardioprotective drugs is blunted in hearts of 1 year old rat. The Citrus flavanone naringenin (NAR) was reported to promote cardioprotective effects against ischemia/reperfusion (I/R) injury, through the activation of mitochondrial large conductance calcium-activated potassium channel (mitoBK). These effects were observed in young adult rats, but no data are available about the possible cardioprotective effects of NAR in aged animals. Experimental Approach: This study aimed at evaluating the potential cardioprotective effects of NAR against I/R damage in 1 year old rats, and the possible involvement of mitoBK. Key Results: Naringenin protected the hearts of 1 year old rats in both ex vivo and in vivo I/R protocols. Noteworthy, these effects were antagonized by paxilline, a selective BK-blocker. The cardioprotective effects of NAR were also observed in senescent H9c2 cardiomyoblasts. In isolated mitochondria from hearts of 1 year old, NAR exhibited the typical profile of a mitoBK opener. Finally, Western Blot analysis confirmed a significant (albeit reduced) presence of BK-forming alpha and beta subunits, both in cardiac tissue of 1 year old rats and in senescent H9c2 cells. Conclusion and Implications: This is the first work reporting cardioprotective effects of NAR in 1 year old rats. Although further studies are needed to better understand the whole pathway involved in the NAR-mediated cardioprotection, these preliminary data represent a promising perspective for a rational nutraceutical use of NAR in aging. Frontiers Media S.A. 2017-02-27 /pmc/articles/PMC5326774/ /pubmed/28289383 http://dx.doi.org/10.3389/fphar.2017.00071 Text en Copyright © 2017 Testai, Da Pozzo, Piano, Pistelli, Gargini, Breschi, Braca, Martini, Martelli and Calderone. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Testai, Lara
Da Pozzo, Eleonora
Piano, Ilaria
Pistelli, Luisa
Gargini, Claudia
Breschi, Maria Cristina
Braca, Alessandra
Martini, Claudia
Martelli, Alma
Calderone, Vincenzo
The Citrus Flavanone Naringenin Produces Cardioprotective Effects in Hearts from 1 Year Old Rat, through Activation of mitoBK Channels
title The Citrus Flavanone Naringenin Produces Cardioprotective Effects in Hearts from 1 Year Old Rat, through Activation of mitoBK Channels
title_full The Citrus Flavanone Naringenin Produces Cardioprotective Effects in Hearts from 1 Year Old Rat, through Activation of mitoBK Channels
title_fullStr The Citrus Flavanone Naringenin Produces Cardioprotective Effects in Hearts from 1 Year Old Rat, through Activation of mitoBK Channels
title_full_unstemmed The Citrus Flavanone Naringenin Produces Cardioprotective Effects in Hearts from 1 Year Old Rat, through Activation of mitoBK Channels
title_short The Citrus Flavanone Naringenin Produces Cardioprotective Effects in Hearts from 1 Year Old Rat, through Activation of mitoBK Channels
title_sort citrus flavanone naringenin produces cardioprotective effects in hearts from 1 year old rat, through activation of mitobk channels
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5326774/
https://www.ncbi.nlm.nih.gov/pubmed/28289383
http://dx.doi.org/10.3389/fphar.2017.00071
work_keys_str_mv AT testailara thecitrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT dapozzoeleonora thecitrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT pianoilaria thecitrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT pistelliluisa thecitrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT garginiclaudia thecitrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT breschimariacristina thecitrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT bracaalessandra thecitrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT martiniclaudia thecitrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT martellialma thecitrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT calderonevincenzo thecitrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT testailara citrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT dapozzoeleonora citrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT pianoilaria citrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT pistelliluisa citrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT garginiclaudia citrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT breschimariacristina citrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT bracaalessandra citrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT martiniclaudia citrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT martellialma citrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels
AT calderonevincenzo citrusflavanonenaringeninproducescardioprotectiveeffectsinheartsfrom1yearoldratthroughactivationofmitobkchannels