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TRPV1 Contributes to Modulate the Nitric Oxide Pathway and Oxidative Stress in the Isolated and Perfused Rat Heart during Ischemia and Reperfusion

The transient vanilloid receptor potential type 1 (TRPV1) regulates neuronal and vascular functions mediated by nitric oxide (NO) and by the calcitonin gene-related peptide (CGRP). Here, we study the participation of TRPV1 in the regulation of myocardial injury caused by ischemia-reperfusion and in...

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Autores principales: Castrejón-Téllez, Vicente, del Valle-Mondragón, Leonardo, Pérez-Torres, Israel, Guarner-Lans, Verónica, Pastelín-Hernández, Gustavo, Ruiz-Ramírez, Angélica, Díaz-Juárez, Julieta Anabell, Varela-López, Elvira, Oidor-Chan, Víctor Hugo, Vargas-González, Alvaro, Martínez-Memije, Raúl, Flores-Chávez, Pedro, León-Ruíz, Bruno, Arriaga-Carrillo, Sergio, Torres-Narváez, Juan Carlos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839190/
https://www.ncbi.nlm.nih.gov/pubmed/35164296
http://dx.doi.org/10.3390/molecules27031031
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author Castrejón-Téllez, Vicente
del Valle-Mondragón, Leonardo
Pérez-Torres, Israel
Guarner-Lans, Verónica
Pastelín-Hernández, Gustavo
Ruiz-Ramírez, Angélica
Díaz-Juárez, Julieta Anabell
Varela-López, Elvira
Oidor-Chan, Víctor Hugo
Vargas-González, Alvaro
Martínez-Memije, Raúl
Flores-Chávez, Pedro
León-Ruíz, Bruno
Arriaga-Carrillo, Sergio
Torres-Narváez, Juan Carlos
author_facet Castrejón-Téllez, Vicente
del Valle-Mondragón, Leonardo
Pérez-Torres, Israel
Guarner-Lans, Verónica
Pastelín-Hernández, Gustavo
Ruiz-Ramírez, Angélica
Díaz-Juárez, Julieta Anabell
Varela-López, Elvira
Oidor-Chan, Víctor Hugo
Vargas-González, Alvaro
Martínez-Memije, Raúl
Flores-Chávez, Pedro
León-Ruíz, Bruno
Arriaga-Carrillo, Sergio
Torres-Narváez, Juan Carlos
author_sort Castrejón-Téllez, Vicente
collection PubMed
description The transient vanilloid receptor potential type 1 (TRPV1) regulates neuronal and vascular functions mediated by nitric oxide (NO) and by the calcitonin gene-related peptide (CGRP). Here, we study the participation of TRPV1 in the regulation of myocardial injury caused by ischemia-reperfusion and in the control of NO, tetrahydrobiopterin (BH4), the cGMP pathway, CGRP, total antioxidant capacity (TAC), malondialdehyde (MDA) and phosphodiesterase-3 (PDE-3). Isolated hearts of Wistar rats perfused according to the Langendorff technique were used to study the effects of an agonist of TRPV1, capsaicin (CS), an antagonist, capsazepine (CZ), and their combination CZ+CS. The hearts were subjected to three conditions: (1) control, (2) ischemia and (3) ischemia-reperfusion. We determined cardiac mechanical activity and the levels of NO, cGMP, BH4, CGRP, TAC, MDA and PDE-3 in ventricular tissue after administration of CS, CZ and CZ+CS. Western blots were used to study the expressions of eNOS, iNOS and phosphorylated NOS (pNOS). Structural changes were determined by histological evaluation. CS prevented damage caused by ischemia-reperfusion by improving cardiac mechanical activity and elevating the levels of NO, cGMP, BH4, TAC and CGRP. TRPV1 and iNOS expression were increased under ischemic conditions, while eNOS and pNOS were not modified. We conclude that the activation of TRPV1 constitutes a therapeutic possibility to counteract the damage caused by ischemia and reperfusion by regulating the NO pathway through CGRP.
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spelling pubmed-88391902022-02-13 TRPV1 Contributes to Modulate the Nitric Oxide Pathway and Oxidative Stress in the Isolated and Perfused Rat Heart during Ischemia and Reperfusion Castrejón-Téllez, Vicente del Valle-Mondragón, Leonardo Pérez-Torres, Israel Guarner-Lans, Verónica Pastelín-Hernández, Gustavo Ruiz-Ramírez, Angélica Díaz-Juárez, Julieta Anabell Varela-López, Elvira Oidor-Chan, Víctor Hugo Vargas-González, Alvaro Martínez-Memije, Raúl Flores-Chávez, Pedro León-Ruíz, Bruno Arriaga-Carrillo, Sergio Torres-Narváez, Juan Carlos Molecules Article The transient vanilloid receptor potential type 1 (TRPV1) regulates neuronal and vascular functions mediated by nitric oxide (NO) and by the calcitonin gene-related peptide (CGRP). Here, we study the participation of TRPV1 in the regulation of myocardial injury caused by ischemia-reperfusion and in the control of NO, tetrahydrobiopterin (BH4), the cGMP pathway, CGRP, total antioxidant capacity (TAC), malondialdehyde (MDA) and phosphodiesterase-3 (PDE-3). Isolated hearts of Wistar rats perfused according to the Langendorff technique were used to study the effects of an agonist of TRPV1, capsaicin (CS), an antagonist, capsazepine (CZ), and their combination CZ+CS. The hearts were subjected to three conditions: (1) control, (2) ischemia and (3) ischemia-reperfusion. We determined cardiac mechanical activity and the levels of NO, cGMP, BH4, CGRP, TAC, MDA and PDE-3 in ventricular tissue after administration of CS, CZ and CZ+CS. Western blots were used to study the expressions of eNOS, iNOS and phosphorylated NOS (pNOS). Structural changes were determined by histological evaluation. CS prevented damage caused by ischemia-reperfusion by improving cardiac mechanical activity and elevating the levels of NO, cGMP, BH4, TAC and CGRP. TRPV1 and iNOS expression were increased under ischemic conditions, while eNOS and pNOS were not modified. We conclude that the activation of TRPV1 constitutes a therapeutic possibility to counteract the damage caused by ischemia and reperfusion by regulating the NO pathway through CGRP. MDPI 2022-02-03 /pmc/articles/PMC8839190/ /pubmed/35164296 http://dx.doi.org/10.3390/molecules27031031 Text en © 2022 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
Castrejón-Téllez, Vicente
del Valle-Mondragón, Leonardo
Pérez-Torres, Israel
Guarner-Lans, Verónica
Pastelín-Hernández, Gustavo
Ruiz-Ramírez, Angélica
Díaz-Juárez, Julieta Anabell
Varela-López, Elvira
Oidor-Chan, Víctor Hugo
Vargas-González, Alvaro
Martínez-Memije, Raúl
Flores-Chávez, Pedro
León-Ruíz, Bruno
Arriaga-Carrillo, Sergio
Torres-Narváez, Juan Carlos
TRPV1 Contributes to Modulate the Nitric Oxide Pathway and Oxidative Stress in the Isolated and Perfused Rat Heart during Ischemia and Reperfusion
title TRPV1 Contributes to Modulate the Nitric Oxide Pathway and Oxidative Stress in the Isolated and Perfused Rat Heart during Ischemia and Reperfusion
title_full TRPV1 Contributes to Modulate the Nitric Oxide Pathway and Oxidative Stress in the Isolated and Perfused Rat Heart during Ischemia and Reperfusion
title_fullStr TRPV1 Contributes to Modulate the Nitric Oxide Pathway and Oxidative Stress in the Isolated and Perfused Rat Heart during Ischemia and Reperfusion
title_full_unstemmed TRPV1 Contributes to Modulate the Nitric Oxide Pathway and Oxidative Stress in the Isolated and Perfused Rat Heart during Ischemia and Reperfusion
title_short TRPV1 Contributes to Modulate the Nitric Oxide Pathway and Oxidative Stress in the Isolated and Perfused Rat Heart during Ischemia and Reperfusion
title_sort trpv1 contributes to modulate the nitric oxide pathway and oxidative stress in the isolated and perfused rat heart during ischemia and reperfusion
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839190/
https://www.ncbi.nlm.nih.gov/pubmed/35164296
http://dx.doi.org/10.3390/molecules27031031
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