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Effect of Celastrol on Growth Inhibition of Prostate Cancer Cells through the Regulation of hERG Channel In Vitro

Objective. To explore the antiprostate cancer effects of Celastrol on prostate cancer cells' proliferation, apoptosis, and cell cycle distribution, as well as the correlation to the regulation of hERG. Methods. DU145 cells were treated with various concentrations of Celastrol (0.25–16.0 μmol/L)...

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Autores principales: Ji, Nan, Li, Jinjun, Wei, Zexiong, Kong, Fanhu, Jin, Hongyan, Chen, Xiaoya, Li, Yan, Deng, Youping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4383143/
https://www.ncbi.nlm.nih.gov/pubmed/25866772
http://dx.doi.org/10.1155/2015/308475
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author Ji, Nan
Li, Jinjun
Wei, Zexiong
Kong, Fanhu
Jin, Hongyan
Chen, Xiaoya
Li, Yan
Deng, Youping
author_facet Ji, Nan
Li, Jinjun
Wei, Zexiong
Kong, Fanhu
Jin, Hongyan
Chen, Xiaoya
Li, Yan
Deng, Youping
author_sort Ji, Nan
collection PubMed
description Objective. To explore the antiprostate cancer effects of Celastrol on prostate cancer cells' proliferation, apoptosis, and cell cycle distribution, as well as the correlation to the regulation of hERG. Methods. DU145 cells were treated with various concentrations of Celastrol (0.25–16.0 μmol/L) for 0–72 hours. MTT assay was used to evaluate the inhibition effect of Celastrol on the growth of DU145 cells. Cell apoptosis was detected through both Annexin-V FITC/PI double-labeled cytometry and Hoechst 33258. Cell cycle regulation was examined by a propidium iodide method. Western blot and RT-PCR technologies were applied to assess the expression level of hERG in DU145 cells. Results. Celastrol presented striking growth inhibition and apoptosis induction potency on DU145 cells in vitro in a time- and dose-dependent manner. The IC(50) value of Celastrol for 24 hours was 2.349 ± 0.213 μmol/L. Moreover, Celastrol induced DU145 cell apoptosis in a cell cycle-dependent manner, which means Celastrol could arrest DU145 cells in G(0)/G(1) phase; accordingly, cells in S phase decreased gradually and no obvious changes were found in G(2)/M phase cells. Through transmission electron microscope, apoptotic bodies containing nuclear fragments were found in Celastrol-treated DU145 cells. Overexpression of hERG channel was found in DU145 cells, while Celastrol could downregulate it at both protein and mRNA level in a dose-dependent manner (P < 0.01). Conclusions. Celastrol exhibits its antiprostate cancer effects partially through the downregulation of the expression level of hERG channel in DU145 cells, suggesting that Celastrol may be a potential agent against prostate cancer with a mechanism of blocking the hERG channel.
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spelling pubmed-43831432015-04-12 Effect of Celastrol on Growth Inhibition of Prostate Cancer Cells through the Regulation of hERG Channel In Vitro Ji, Nan Li, Jinjun Wei, Zexiong Kong, Fanhu Jin, Hongyan Chen, Xiaoya Li, Yan Deng, Youping Biomed Res Int Research Article Objective. To explore the antiprostate cancer effects of Celastrol on prostate cancer cells' proliferation, apoptosis, and cell cycle distribution, as well as the correlation to the regulation of hERG. Methods. DU145 cells were treated with various concentrations of Celastrol (0.25–16.0 μmol/L) for 0–72 hours. MTT assay was used to evaluate the inhibition effect of Celastrol on the growth of DU145 cells. Cell apoptosis was detected through both Annexin-V FITC/PI double-labeled cytometry and Hoechst 33258. Cell cycle regulation was examined by a propidium iodide method. Western blot and RT-PCR technologies were applied to assess the expression level of hERG in DU145 cells. Results. Celastrol presented striking growth inhibition and apoptosis induction potency on DU145 cells in vitro in a time- and dose-dependent manner. The IC(50) value of Celastrol for 24 hours was 2.349 ± 0.213 μmol/L. Moreover, Celastrol induced DU145 cell apoptosis in a cell cycle-dependent manner, which means Celastrol could arrest DU145 cells in G(0)/G(1) phase; accordingly, cells in S phase decreased gradually and no obvious changes were found in G(2)/M phase cells. Through transmission electron microscope, apoptotic bodies containing nuclear fragments were found in Celastrol-treated DU145 cells. Overexpression of hERG channel was found in DU145 cells, while Celastrol could downregulate it at both protein and mRNA level in a dose-dependent manner (P < 0.01). Conclusions. Celastrol exhibits its antiprostate cancer effects partially through the downregulation of the expression level of hERG channel in DU145 cells, suggesting that Celastrol may be a potential agent against prostate cancer with a mechanism of blocking the hERG channel. Hindawi Publishing Corporation 2015 2015-03-19 /pmc/articles/PMC4383143/ /pubmed/25866772 http://dx.doi.org/10.1155/2015/308475 Text en Copyright © 2015 Nan Ji et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ji, Nan
Li, Jinjun
Wei, Zexiong
Kong, Fanhu
Jin, Hongyan
Chen, Xiaoya
Li, Yan
Deng, Youping
Effect of Celastrol on Growth Inhibition of Prostate Cancer Cells through the Regulation of hERG Channel In Vitro
title Effect of Celastrol on Growth Inhibition of Prostate Cancer Cells through the Regulation of hERG Channel In Vitro
title_full Effect of Celastrol on Growth Inhibition of Prostate Cancer Cells through the Regulation of hERG Channel In Vitro
title_fullStr Effect of Celastrol on Growth Inhibition of Prostate Cancer Cells through the Regulation of hERG Channel In Vitro
title_full_unstemmed Effect of Celastrol on Growth Inhibition of Prostate Cancer Cells through the Regulation of hERG Channel In Vitro
title_short Effect of Celastrol on Growth Inhibition of Prostate Cancer Cells through the Regulation of hERG Channel In Vitro
title_sort effect of celastrol on growth inhibition of prostate cancer cells through the regulation of herg channel in vitro
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4383143/
https://www.ncbi.nlm.nih.gov/pubmed/25866772
http://dx.doi.org/10.1155/2015/308475
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