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Effect of Triptolide on Temporal Expression of Cell Cycle Regulators During Cardiac Hypertrophy

Adult mammalian cardiomyocytes may reenter the cell cycle and cause cardiac hypertrophy. Triptolide (TP) can regulate the expressions of various cell cycle regulators in cancer cells. However, its effects on cell cycle regulators during myocardial hypertrophy and mechanism are unclear. This study wa...

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Autores principales: Li, Jing-Mei, Pan, Xi-Chun, Ding, Yuan-Yuan, Tong, Yang-Fei, Chen, Xiao-Hong, Liu, Ya, Zhang, Hai-Gang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7498627/
https://www.ncbi.nlm.nih.gov/pubmed/33013405
http://dx.doi.org/10.3389/fphar.2020.566938
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author Li, Jing-Mei
Pan, Xi-Chun
Ding, Yuan-Yuan
Tong, Yang-Fei
Chen, Xiao-Hong
Liu, Ya
Zhang, Hai-Gang
author_facet Li, Jing-Mei
Pan, Xi-Chun
Ding, Yuan-Yuan
Tong, Yang-Fei
Chen, Xiao-Hong
Liu, Ya
Zhang, Hai-Gang
author_sort Li, Jing-Mei
collection PubMed
description Adult mammalian cardiomyocytes may reenter the cell cycle and cause cardiac hypertrophy. Triptolide (TP) can regulate the expressions of various cell cycle regulators in cancer cells. However, its effects on cell cycle regulators during myocardial hypertrophy and mechanism are unclear. This study was designed to explore the profile of cell cycle of cardiomyocytes and the temporal expression of their regulators during cardiac hypertrophy, as well as the effects of TP. The hypertrophy models employed were neonatal rat ventricular myocytes (NRVMs) stimulated with angiotensin II (Ang II) for scheduled times (from 5 min to 48 h) in vitro and mice treated with isoprenaline (Iso) for from 1 to 21 days, respectively. TP was used in vitro at 1 μg/L and in vivo at 10 μg/kg. NRVMs were analyzed using flow cytometry to detect the cell cycle, and the expression levels of mRNA and protein of various cell cycle regulators were determined using real-time PCR and Western blot. It was found NRVM numbers in phases S and G(2) increased, while that in the G(1) phase decreased significantly after Ang II stimulation. The mRNA expression levels of p21 and p27 increased soon after stimulation, and thereafter, mRNA expression levels of all cell cycle factors showed a decreasing trend and reached their lowest levels in 1–3 h, except for cyclin-dependent kinase 1 (CDK1) and CDK4 mRNA. The mRNA expression levels of CDK1, p21, and p27 increased markedly after stimulation with Ang II for 24–48 h. In myocardium tissue, CDK and cyclin expression levels peaked in 3–7 days, followed by a decreasing trend, while those of p21 and p27 mRNA remained at a high level on day 21. Expression levels of all protein were consistent with the results of mRNA in NRVMs or mice. The influence of Ang II or Iso on protein expression was more obvious than that on mRNA. TP treatment effectively prevented the imbalance in the expression of cell cycle regulators in the hypertrophy model group. In Conclusion, an imbalance in the expression of cell cycle regulators occurs during cardiac hypertrophy, and triptolide corrects these abnormal expression levels and attenuates cardiac hypertrophy.
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spelling pubmed-74986272020-10-02 Effect of Triptolide on Temporal Expression of Cell Cycle Regulators During Cardiac Hypertrophy Li, Jing-Mei Pan, Xi-Chun Ding, Yuan-Yuan Tong, Yang-Fei Chen, Xiao-Hong Liu, Ya Zhang, Hai-Gang Front Pharmacol Pharmacology Adult mammalian cardiomyocytes may reenter the cell cycle and cause cardiac hypertrophy. Triptolide (TP) can regulate the expressions of various cell cycle regulators in cancer cells. However, its effects on cell cycle regulators during myocardial hypertrophy and mechanism are unclear. This study was designed to explore the profile of cell cycle of cardiomyocytes and the temporal expression of their regulators during cardiac hypertrophy, as well as the effects of TP. The hypertrophy models employed were neonatal rat ventricular myocytes (NRVMs) stimulated with angiotensin II (Ang II) for scheduled times (from 5 min to 48 h) in vitro and mice treated with isoprenaline (Iso) for from 1 to 21 days, respectively. TP was used in vitro at 1 μg/L and in vivo at 10 μg/kg. NRVMs were analyzed using flow cytometry to detect the cell cycle, and the expression levels of mRNA and protein of various cell cycle regulators were determined using real-time PCR and Western blot. It was found NRVM numbers in phases S and G(2) increased, while that in the G(1) phase decreased significantly after Ang II stimulation. The mRNA expression levels of p21 and p27 increased soon after stimulation, and thereafter, mRNA expression levels of all cell cycle factors showed a decreasing trend and reached their lowest levels in 1–3 h, except for cyclin-dependent kinase 1 (CDK1) and CDK4 mRNA. The mRNA expression levels of CDK1, p21, and p27 increased markedly after stimulation with Ang II for 24–48 h. In myocardium tissue, CDK and cyclin expression levels peaked in 3–7 days, followed by a decreasing trend, while those of p21 and p27 mRNA remained at a high level on day 21. Expression levels of all protein were consistent with the results of mRNA in NRVMs or mice. The influence of Ang II or Iso on protein expression was more obvious than that on mRNA. TP treatment effectively prevented the imbalance in the expression of cell cycle regulators in the hypertrophy model group. In Conclusion, an imbalance in the expression of cell cycle regulators occurs during cardiac hypertrophy, and triptolide corrects these abnormal expression levels and attenuates cardiac hypertrophy. Frontiers Media S.A. 2020-09-04 /pmc/articles/PMC7498627/ /pubmed/33013405 http://dx.doi.org/10.3389/fphar.2020.566938 Text en Copyright © 2020 Li, Pan, Ding, Tong, Chen, Liu and Zhang 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) and the copyright owner(s) 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
Li, Jing-Mei
Pan, Xi-Chun
Ding, Yuan-Yuan
Tong, Yang-Fei
Chen, Xiao-Hong
Liu, Ya
Zhang, Hai-Gang
Effect of Triptolide on Temporal Expression of Cell Cycle Regulators During Cardiac Hypertrophy
title Effect of Triptolide on Temporal Expression of Cell Cycle Regulators During Cardiac Hypertrophy
title_full Effect of Triptolide on Temporal Expression of Cell Cycle Regulators During Cardiac Hypertrophy
title_fullStr Effect of Triptolide on Temporal Expression of Cell Cycle Regulators During Cardiac Hypertrophy
title_full_unstemmed Effect of Triptolide on Temporal Expression of Cell Cycle Regulators During Cardiac Hypertrophy
title_short Effect of Triptolide on Temporal Expression of Cell Cycle Regulators During Cardiac Hypertrophy
title_sort effect of triptolide on temporal expression of cell cycle regulators during cardiac hypertrophy
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7498627/
https://www.ncbi.nlm.nih.gov/pubmed/33013405
http://dx.doi.org/10.3389/fphar.2020.566938
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