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Physiological and Pathological Role of TRPV1, TRPV2 and TRPV4 Channels in Heart

Transient receptor potential vanilloid channel 2 (TRPV2) is required for normal cardiac contractility. The stimulation of TRPV1 in isolated cardiomyocytes can aggravate the effect of hypoxia/reoxygenation (H/R) on H9C2 cells. The knockout of the TRPV1 gene promotes increased tolerance of the isolate...

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Autores principales: Gorbunov, Alexandr S., Maslov, Leonid N., Jaggi, Amteshwar S., Singh, Nirmal, De Petrocellis, Luciano, Boshchenko, Alla A., Roohbakhsh, Ali, Bezuglov, Vladimir V., Oeltgen, Peter R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bentham Science Publishers 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8142357/
https://www.ncbi.nlm.nih.gov/pubmed/30848206
http://dx.doi.org/10.2174/1573403X15666190307112326
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author Gorbunov, Alexandr S.
Maslov, Leonid N.
Jaggi, Amteshwar S.
Singh, Nirmal
De Petrocellis, Luciano
Boshchenko, Alla A.
Roohbakhsh, Ali
Bezuglov, Vladimir V.
Oeltgen, Peter R.
author_facet Gorbunov, Alexandr S.
Maslov, Leonid N.
Jaggi, Amteshwar S.
Singh, Nirmal
De Petrocellis, Luciano
Boshchenko, Alla A.
Roohbakhsh, Ali
Bezuglov, Vladimir V.
Oeltgen, Peter R.
author_sort Gorbunov, Alexandr S.
collection PubMed
description Transient receptor potential vanilloid channel 2 (TRPV2) is required for normal cardiac contractility. The stimulation of TRPV1 in isolated cardiomyocytes can aggravate the effect of hypoxia/reoxygenation (H/R) on H9C2 cells. The knockout of the TRPV1 gene promotes increased tolerance of the isolated perfused heart to the impact of ischemia/reperfusion (I/R). However, activation of TRPV1 increases the resistance of the heart to I/R due to calcitonin gene-related peptide (CGRP) release from afferent nerve endings. It has been established that TRPV1 and TRPV2 are involved in the pathogenesis of myocardial infarction and, in all likelihood, ensure the cardiac tolerance to the ischemia/reperfusion. It has also been documented that the activation of TRPV4 negatively affects the stability of cardiomyocytes to the H/R. The blockade of TRPV4 can be considered as a new approach to the prevention of I/R injury of the heart. Studies also indicate that TRPV1 is involved in the pathogenesis of cardiac hypertrophy and that TRPV2 channels participate in the pathogenesis of dilated cardiomyopathy. Excessive expression of TRPV2 leads to chronic Ca(2+)-overload of cardiomyocytes, which may contribute to the development of cardiomyopathy.
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spelling pubmed-81423572021-05-25 Physiological and Pathological Role of TRPV1, TRPV2 and TRPV4 Channels in Heart Gorbunov, Alexandr S. Maslov, Leonid N. Jaggi, Amteshwar S. Singh, Nirmal De Petrocellis, Luciano Boshchenko, Alla A. Roohbakhsh, Ali Bezuglov, Vladimir V. Oeltgen, Peter R. Curr Cardiol Rev Article Transient receptor potential vanilloid channel 2 (TRPV2) is required for normal cardiac contractility. The stimulation of TRPV1 in isolated cardiomyocytes can aggravate the effect of hypoxia/reoxygenation (H/R) on H9C2 cells. The knockout of the TRPV1 gene promotes increased tolerance of the isolated perfused heart to the impact of ischemia/reperfusion (I/R). However, activation of TRPV1 increases the resistance of the heart to I/R due to calcitonin gene-related peptide (CGRP) release from afferent nerve endings. It has been established that TRPV1 and TRPV2 are involved in the pathogenesis of myocardial infarction and, in all likelihood, ensure the cardiac tolerance to the ischemia/reperfusion. It has also been documented that the activation of TRPV4 negatively affects the stability of cardiomyocytes to the H/R. The blockade of TRPV4 can be considered as a new approach to the prevention of I/R injury of the heart. Studies also indicate that TRPV1 is involved in the pathogenesis of cardiac hypertrophy and that TRPV2 channels participate in the pathogenesis of dilated cardiomyopathy. Excessive expression of TRPV2 leads to chronic Ca(2+)-overload of cardiomyocytes, which may contribute to the development of cardiomyopathy. Bentham Science Publishers 2019-09 2019-09 /pmc/articles/PMC8142357/ /pubmed/30848206 http://dx.doi.org/10.2174/1573403X15666190307112326 Text en © 2019 Bentham Science Publishers https://creativecommons.org/licenses/by-nc/4.0/ This is an open access article licensed under the terms of the Creative Commons Attribution-Non-Commercial 4.0 International Public License (CC BY-NC 4.0) (https://creativecommons.org/licenses/by-nc/4.0/legalcode), which permits unrestricted, non-commercial use, distribution and reproduction in any medium, provided the work is properly cited.
spellingShingle Article
Gorbunov, Alexandr S.
Maslov, Leonid N.
Jaggi, Amteshwar S.
Singh, Nirmal
De Petrocellis, Luciano
Boshchenko, Alla A.
Roohbakhsh, Ali
Bezuglov, Vladimir V.
Oeltgen, Peter R.
Physiological and Pathological Role of TRPV1, TRPV2 and TRPV4 Channels in Heart
title Physiological and Pathological Role of TRPV1, TRPV2 and TRPV4 Channels in Heart
title_full Physiological and Pathological Role of TRPV1, TRPV2 and TRPV4 Channels in Heart
title_fullStr Physiological and Pathological Role of TRPV1, TRPV2 and TRPV4 Channels in Heart
title_full_unstemmed Physiological and Pathological Role of TRPV1, TRPV2 and TRPV4 Channels in Heart
title_short Physiological and Pathological Role of TRPV1, TRPV2 and TRPV4 Channels in Heart
title_sort physiological and pathological role of trpv1, trpv2 and trpv4 channels in heart
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8142357/
https://www.ncbi.nlm.nih.gov/pubmed/30848206
http://dx.doi.org/10.2174/1573403X15666190307112326
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