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Icariin Protects H9c2 Rat Cardiomyoblasts from Doxorubicin-Induced Cardiotoxicity: Role of Caveolin-1 Upregulation and Enhanced Autophagic Response

Doxorubicin (Doxo) is a widely used antineoplastic drug which often induces cardiomyopathy, leading to congestive heart failure through the intramyocardial production of reactive oxygen species (ROS). Icariin (Ica) is a flavonoid isolated from Epimedii Herba (Berberidaceae). Some reports on the phar...

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Autores principales: Scicchitano, Miriam, Carresi, Cristina, Nucera, Saverio, Ruga, Stefano, Maiuolo, Jessica, Macrì, Roberta, Scarano, Federica, Bosco, Francesca, Mollace, Rocco, Cardamone, Antonio, Coppoletta, Anna Rita, Guarnieri, Lorenza, Zito, Maria Caterina, Bava, Irene, Cariati, Luca, Greco, Marta, Foti, Daniela Patrizia, Palma, Ernesto, Gliozzi, Micaela, Musolino, Vincenzo, Mollace, Vincenzo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8623794/
https://www.ncbi.nlm.nih.gov/pubmed/34836326
http://dx.doi.org/10.3390/nu13114070
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author Scicchitano, Miriam
Carresi, Cristina
Nucera, Saverio
Ruga, Stefano
Maiuolo, Jessica
Macrì, Roberta
Scarano, Federica
Bosco, Francesca
Mollace, Rocco
Cardamone, Antonio
Coppoletta, Anna Rita
Guarnieri, Lorenza
Zito, Maria Caterina
Bava, Irene
Cariati, Luca
Greco, Marta
Foti, Daniela Patrizia
Palma, Ernesto
Gliozzi, Micaela
Musolino, Vincenzo
Mollace, Vincenzo
author_facet Scicchitano, Miriam
Carresi, Cristina
Nucera, Saverio
Ruga, Stefano
Maiuolo, Jessica
Macrì, Roberta
Scarano, Federica
Bosco, Francesca
Mollace, Rocco
Cardamone, Antonio
Coppoletta, Anna Rita
Guarnieri, Lorenza
Zito, Maria Caterina
Bava, Irene
Cariati, Luca
Greco, Marta
Foti, Daniela Patrizia
Palma, Ernesto
Gliozzi, Micaela
Musolino, Vincenzo
Mollace, Vincenzo
author_sort Scicchitano, Miriam
collection PubMed
description Doxorubicin (Doxo) is a widely used antineoplastic drug which often induces cardiomyopathy, leading to congestive heart failure through the intramyocardial production of reactive oxygen species (ROS). Icariin (Ica) is a flavonoid isolated from Epimedii Herba (Berberidaceae). Some reports on the pharmacological activity of Ica explained its antioxidant and cardioprotective effects. The aim of our study was to assess the protective activities of Ica against Doxo-detrimental effects on rat heart-tissue derived embryonic cardiac myoblasts (H9c2 cells) and to identify, at least in part, the molecular mechanisms involved. Our results showed that pretreatment of H9c2 cells with 1 μM and 5 μM of Ica, prior to Doxo exposure, resulted in an improvement in cell viability, a reduction in ROS generation, the prevention of mitochondrial dysfunction and mPTP opening. Furthermore, for the first time, we identified one feasible molecular mechanism through which Ica could exerts its cardioprotective effects. Indeed, our data showed a significant reduction in Caveolin-1(Cav-1) expression levels and a specific inhibitory effect on phosphodiesterase 5 (PDE5a) activity, improving mitochondrial function compared to Doxo-treated cells. Besides, Ica significantly prevented apoptotic cell death and downregulated the main pro-autophagic marker Beclin-1 and LC3 lipidation rate, restoring physiological levels of activation of the protective autophagic process. These results suggest that Ica might have beneficial cardioprotective effects in attenuating cardiotoxicity in patients requiring anthracycline chemotherapy through the inhibition of oxidative stress and, in particular, through the modulation of Cav-1 expression levels and the involvement of PDE5a activity, thereby leading to cardiac cell survival.
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spelling pubmed-86237942021-11-27 Icariin Protects H9c2 Rat Cardiomyoblasts from Doxorubicin-Induced Cardiotoxicity: Role of Caveolin-1 Upregulation and Enhanced Autophagic Response Scicchitano, Miriam Carresi, Cristina Nucera, Saverio Ruga, Stefano Maiuolo, Jessica Macrì, Roberta Scarano, Federica Bosco, Francesca Mollace, Rocco Cardamone, Antonio Coppoletta, Anna Rita Guarnieri, Lorenza Zito, Maria Caterina Bava, Irene Cariati, Luca Greco, Marta Foti, Daniela Patrizia Palma, Ernesto Gliozzi, Micaela Musolino, Vincenzo Mollace, Vincenzo Nutrients Article Doxorubicin (Doxo) is a widely used antineoplastic drug which often induces cardiomyopathy, leading to congestive heart failure through the intramyocardial production of reactive oxygen species (ROS). Icariin (Ica) is a flavonoid isolated from Epimedii Herba (Berberidaceae). Some reports on the pharmacological activity of Ica explained its antioxidant and cardioprotective effects. The aim of our study was to assess the protective activities of Ica against Doxo-detrimental effects on rat heart-tissue derived embryonic cardiac myoblasts (H9c2 cells) and to identify, at least in part, the molecular mechanisms involved. Our results showed that pretreatment of H9c2 cells with 1 μM and 5 μM of Ica, prior to Doxo exposure, resulted in an improvement in cell viability, a reduction in ROS generation, the prevention of mitochondrial dysfunction and mPTP opening. Furthermore, for the first time, we identified one feasible molecular mechanism through which Ica could exerts its cardioprotective effects. Indeed, our data showed a significant reduction in Caveolin-1(Cav-1) expression levels and a specific inhibitory effect on phosphodiesterase 5 (PDE5a) activity, improving mitochondrial function compared to Doxo-treated cells. Besides, Ica significantly prevented apoptotic cell death and downregulated the main pro-autophagic marker Beclin-1 and LC3 lipidation rate, restoring physiological levels of activation of the protective autophagic process. These results suggest that Ica might have beneficial cardioprotective effects in attenuating cardiotoxicity in patients requiring anthracycline chemotherapy through the inhibition of oxidative stress and, in particular, through the modulation of Cav-1 expression levels and the involvement of PDE5a activity, thereby leading to cardiac cell survival. MDPI 2021-11-14 /pmc/articles/PMC8623794/ /pubmed/34836326 http://dx.doi.org/10.3390/nu13114070 Text en © 2021 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
Scicchitano, Miriam
Carresi, Cristina
Nucera, Saverio
Ruga, Stefano
Maiuolo, Jessica
Macrì, Roberta
Scarano, Federica
Bosco, Francesca
Mollace, Rocco
Cardamone, Antonio
Coppoletta, Anna Rita
Guarnieri, Lorenza
Zito, Maria Caterina
Bava, Irene
Cariati, Luca
Greco, Marta
Foti, Daniela Patrizia
Palma, Ernesto
Gliozzi, Micaela
Musolino, Vincenzo
Mollace, Vincenzo
Icariin Protects H9c2 Rat Cardiomyoblasts from Doxorubicin-Induced Cardiotoxicity: Role of Caveolin-1 Upregulation and Enhanced Autophagic Response
title Icariin Protects H9c2 Rat Cardiomyoblasts from Doxorubicin-Induced Cardiotoxicity: Role of Caveolin-1 Upregulation and Enhanced Autophagic Response
title_full Icariin Protects H9c2 Rat Cardiomyoblasts from Doxorubicin-Induced Cardiotoxicity: Role of Caveolin-1 Upregulation and Enhanced Autophagic Response
title_fullStr Icariin Protects H9c2 Rat Cardiomyoblasts from Doxorubicin-Induced Cardiotoxicity: Role of Caveolin-1 Upregulation and Enhanced Autophagic Response
title_full_unstemmed Icariin Protects H9c2 Rat Cardiomyoblasts from Doxorubicin-Induced Cardiotoxicity: Role of Caveolin-1 Upregulation and Enhanced Autophagic Response
title_short Icariin Protects H9c2 Rat Cardiomyoblasts from Doxorubicin-Induced Cardiotoxicity: Role of Caveolin-1 Upregulation and Enhanced Autophagic Response
title_sort icariin protects h9c2 rat cardiomyoblasts from doxorubicin-induced cardiotoxicity: role of caveolin-1 upregulation and enhanced autophagic response
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8623794/
https://www.ncbi.nlm.nih.gov/pubmed/34836326
http://dx.doi.org/10.3390/nu13114070
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