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δ-Tocotrienol Induces Human Bladder Cancer Cell Growth Arrest, Apoptosis and Chemosensitization through Inhibition of STAT3 Pathway

Vitamin E intake has been implicated in reduction of bladder cancer risk. However, the mechanisms remain elusive. Here we reported that δ-tocotrienol (δ-T3), one of vitamin E isomers, possessed the most potent cytotoxic capacity against human bladder cancer cells, compared with other Vitamin E isome...

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Detalles Bibliográficos
Autores principales: Ye, Changxiao, Zhao, Wei, Li, Minghui, Zhuang, Junlong, Yan, Xiang, Lu, Qun, Chang, Cunjie, Huang, Xiaojing, Zhou, Ji, Xie, Bingxian, Zhang, Zhen, Yao, Xin, Yan, Jun, Guo, Hongqian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4388509/
https://www.ncbi.nlm.nih.gov/pubmed/25849286
http://dx.doi.org/10.1371/journal.pone.0122712
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author Ye, Changxiao
Zhao, Wei
Li, Minghui
Zhuang, Junlong
Yan, Xiang
Lu, Qun
Chang, Cunjie
Huang, Xiaojing
Zhou, Ji
Xie, Bingxian
Zhang, Zhen
Yao, Xin
Yan, Jun
Guo, Hongqian
author_facet Ye, Changxiao
Zhao, Wei
Li, Minghui
Zhuang, Junlong
Yan, Xiang
Lu, Qun
Chang, Cunjie
Huang, Xiaojing
Zhou, Ji
Xie, Bingxian
Zhang, Zhen
Yao, Xin
Yan, Jun
Guo, Hongqian
author_sort Ye, Changxiao
collection PubMed
description Vitamin E intake has been implicated in reduction of bladder cancer risk. However, the mechanisms remain elusive. Here we reported that δ-tocotrienol (δ-T3), one of vitamin E isomers, possessed the most potent cytotoxic capacity against human bladder cancer cells, compared with other Vitamin E isomers. δ-T3 inhibited cancer cell proliferation and colonogenicity through induction of G1 phase arrest and apoptosis. Western blotting assay revealed that δ-T3 increased the expression levels of cell cycle inhibitors (p21, p27), pro-apoptotic protein (Bax) and suppressed expression levels of cell cycle protein (Cyclin D1), anti-apoptotic proteins (Bcl-2, Bcl-x(L) and Mcl-1), resulting in the Caspase-3 activation and cleavage of PARP. Moreover, the δ-T3 treatment inhibited ETK phosphorylation level and induced SHP-1 expression, which was correlated with downregulation of STAT3 activation. In line with this, δ-T3 reduced the STAT3 protein level in nuclear fraction, as well as its transcription activity. Knockdown of SHP-1 partially reversed δ-T3-induced cell growth arrest. Importantly, low dose of δ-T3 sensitized Gemcitabine-induced cytotoxic effects on human bladder cancer cells. Overall, our findings demonstrated, for the first time, the cytotoxic effects of δ-T3 on bladder cancer cells and suggest that δ-T3 might be a promising chemosensitization reagent for Gemcitabine in bladder cancer treatment.
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spelling pubmed-43885092015-04-21 δ-Tocotrienol Induces Human Bladder Cancer Cell Growth Arrest, Apoptosis and Chemosensitization through Inhibition of STAT3 Pathway Ye, Changxiao Zhao, Wei Li, Minghui Zhuang, Junlong Yan, Xiang Lu, Qun Chang, Cunjie Huang, Xiaojing Zhou, Ji Xie, Bingxian Zhang, Zhen Yao, Xin Yan, Jun Guo, Hongqian PLoS One Research Article Vitamin E intake has been implicated in reduction of bladder cancer risk. However, the mechanisms remain elusive. Here we reported that δ-tocotrienol (δ-T3), one of vitamin E isomers, possessed the most potent cytotoxic capacity against human bladder cancer cells, compared with other Vitamin E isomers. δ-T3 inhibited cancer cell proliferation and colonogenicity through induction of G1 phase arrest and apoptosis. Western blotting assay revealed that δ-T3 increased the expression levels of cell cycle inhibitors (p21, p27), pro-apoptotic protein (Bax) and suppressed expression levels of cell cycle protein (Cyclin D1), anti-apoptotic proteins (Bcl-2, Bcl-x(L) and Mcl-1), resulting in the Caspase-3 activation and cleavage of PARP. Moreover, the δ-T3 treatment inhibited ETK phosphorylation level and induced SHP-1 expression, which was correlated with downregulation of STAT3 activation. In line with this, δ-T3 reduced the STAT3 protein level in nuclear fraction, as well as its transcription activity. Knockdown of SHP-1 partially reversed δ-T3-induced cell growth arrest. Importantly, low dose of δ-T3 sensitized Gemcitabine-induced cytotoxic effects on human bladder cancer cells. Overall, our findings demonstrated, for the first time, the cytotoxic effects of δ-T3 on bladder cancer cells and suggest that δ-T3 might be a promising chemosensitization reagent for Gemcitabine in bladder cancer treatment. Public Library of Science 2015-04-07 /pmc/articles/PMC4388509/ /pubmed/25849286 http://dx.doi.org/10.1371/journal.pone.0122712 Text en © 2015 Ye et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ye, Changxiao
Zhao, Wei
Li, Minghui
Zhuang, Junlong
Yan, Xiang
Lu, Qun
Chang, Cunjie
Huang, Xiaojing
Zhou, Ji
Xie, Bingxian
Zhang, Zhen
Yao, Xin
Yan, Jun
Guo, Hongqian
δ-Tocotrienol Induces Human Bladder Cancer Cell Growth Arrest, Apoptosis and Chemosensitization through Inhibition of STAT3 Pathway
title δ-Tocotrienol Induces Human Bladder Cancer Cell Growth Arrest, Apoptosis and Chemosensitization through Inhibition of STAT3 Pathway
title_full δ-Tocotrienol Induces Human Bladder Cancer Cell Growth Arrest, Apoptosis and Chemosensitization through Inhibition of STAT3 Pathway
title_fullStr δ-Tocotrienol Induces Human Bladder Cancer Cell Growth Arrest, Apoptosis and Chemosensitization through Inhibition of STAT3 Pathway
title_full_unstemmed δ-Tocotrienol Induces Human Bladder Cancer Cell Growth Arrest, Apoptosis and Chemosensitization through Inhibition of STAT3 Pathway
title_short δ-Tocotrienol Induces Human Bladder Cancer Cell Growth Arrest, Apoptosis and Chemosensitization through Inhibition of STAT3 Pathway
title_sort δ-tocotrienol induces human bladder cancer cell growth arrest, apoptosis and chemosensitization through inhibition of stat3 pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4388509/
https://www.ncbi.nlm.nih.gov/pubmed/25849286
http://dx.doi.org/10.1371/journal.pone.0122712
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