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E. adenophorum Induces Cell Cycle and Apoptosis of Renal Cells through Mitochondrial Pathway and Caspase Activation in Saanen Goat

The cytotoxicity effects of E. adenophorum on cell cycle and apoptosis of renal cells in Saanen goat was evaluated by TUNEL, DAPI, AO/EB staining, DNA fragmentation assay, Caspase activity, Western-blot, qRT-PCR and flow cytometry analysis. 16 saanen goats randomly divided into four groups were fed...

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Detalles Bibliográficos
Autores principales: He, Yajun, Chen, Weihong, Hu, Yanchun, Luo, Biao, Wu, Lei, Qiao, Yan, Mo, Quan, Xu, Ruiguang, Zhou, Yancheng, Ren, Zhihua, Zuo, Zhicai, Deng, Junliang, Peng, Guangneng, He, Wei, Wei, Yahui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4575129/
https://www.ncbi.nlm.nih.gov/pubmed/26382060
http://dx.doi.org/10.1371/journal.pone.0138504
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author He, Yajun
Chen, Weihong
Hu, Yanchun
Luo, Biao
Wu, Lei
Qiao, Yan
Mo, Quan
Xu, Ruiguang
Zhou, Yancheng
Ren, Zhihua
Zuo, Zhicai
Deng, Junliang
Peng, Guangneng
He, Wei
Wei, Yahui
author_facet He, Yajun
Chen, Weihong
Hu, Yanchun
Luo, Biao
Wu, Lei
Qiao, Yan
Mo, Quan
Xu, Ruiguang
Zhou, Yancheng
Ren, Zhihua
Zuo, Zhicai
Deng, Junliang
Peng, Guangneng
He, Wei
Wei, Yahui
author_sort He, Yajun
collection PubMed
description The cytotoxicity effects of E. adenophorum on cell cycle and apoptosis of renal cells in Saanen goat was evaluated by TUNEL, DAPI, AO/EB staining, DNA fragmentation assay, Caspase activity, Western-blot, qRT-PCR and flow cytometry analysis. 16 saanen goats randomly divided into four groups were fed on 0%, 40%, 60% and 80% E. adenophorum diets. The Results showed that E. adenophorum induced typical apoptotic features of renal cells. E. adenophorum significantly suppressed renal cells viability, caused cell cycle activity arrest and induced typical apoptotic features in a dose-dependent manner. However, the protein levels of Fas/FasL, Bid and caspase-8 did not appear significant changes in the process of E. adenophorum-induced apoptosis. Moreover, E. adenophorum administration slightly decreased Bcl-2 expression, promoted Bax translocation to mitochondria, triggered the release of Cyt c from mitochondria into cytosol and activated caspase-9, -3, and cleaved PARP. The mitochondrial p53 translocation was significantly activated, accompanied by a significant increase in the loss of ΔΨm, Cyt c release and caspase-9 activation. Above all, these data suggest that E. adenophorum induces renal cells apoptosis via the activation of mitochondria-mediated apoptosis pathway in renal cells. These findings may provide new insights to understand the mechanisms involved in E. adenophorum-caused cytotoxicity of renal cells.
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spelling pubmed-45751292015-09-25 E. adenophorum Induces Cell Cycle and Apoptosis of Renal Cells through Mitochondrial Pathway and Caspase Activation in Saanen Goat He, Yajun Chen, Weihong Hu, Yanchun Luo, Biao Wu, Lei Qiao, Yan Mo, Quan Xu, Ruiguang Zhou, Yancheng Ren, Zhihua Zuo, Zhicai Deng, Junliang Peng, Guangneng He, Wei Wei, Yahui PLoS One Research Article The cytotoxicity effects of E. adenophorum on cell cycle and apoptosis of renal cells in Saanen goat was evaluated by TUNEL, DAPI, AO/EB staining, DNA fragmentation assay, Caspase activity, Western-blot, qRT-PCR and flow cytometry analysis. 16 saanen goats randomly divided into four groups were fed on 0%, 40%, 60% and 80% E. adenophorum diets. The Results showed that E. adenophorum induced typical apoptotic features of renal cells. E. adenophorum significantly suppressed renal cells viability, caused cell cycle activity arrest and induced typical apoptotic features in a dose-dependent manner. However, the protein levels of Fas/FasL, Bid and caspase-8 did not appear significant changes in the process of E. adenophorum-induced apoptosis. Moreover, E. adenophorum administration slightly decreased Bcl-2 expression, promoted Bax translocation to mitochondria, triggered the release of Cyt c from mitochondria into cytosol and activated caspase-9, -3, and cleaved PARP. The mitochondrial p53 translocation was significantly activated, accompanied by a significant increase in the loss of ΔΨm, Cyt c release and caspase-9 activation. Above all, these data suggest that E. adenophorum induces renal cells apoptosis via the activation of mitochondria-mediated apoptosis pathway in renal cells. These findings may provide new insights to understand the mechanisms involved in E. adenophorum-caused cytotoxicity of renal cells. Public Library of Science 2015-09-18 /pmc/articles/PMC4575129/ /pubmed/26382060 http://dx.doi.org/10.1371/journal.pone.0138504 Text en © 2015 He 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
He, Yajun
Chen, Weihong
Hu, Yanchun
Luo, Biao
Wu, Lei
Qiao, Yan
Mo, Quan
Xu, Ruiguang
Zhou, Yancheng
Ren, Zhihua
Zuo, Zhicai
Deng, Junliang
Peng, Guangneng
He, Wei
Wei, Yahui
E. adenophorum Induces Cell Cycle and Apoptosis of Renal Cells through Mitochondrial Pathway and Caspase Activation in Saanen Goat
title E. adenophorum Induces Cell Cycle and Apoptosis of Renal Cells through Mitochondrial Pathway and Caspase Activation in Saanen Goat
title_full E. adenophorum Induces Cell Cycle and Apoptosis of Renal Cells through Mitochondrial Pathway and Caspase Activation in Saanen Goat
title_fullStr E. adenophorum Induces Cell Cycle and Apoptosis of Renal Cells through Mitochondrial Pathway and Caspase Activation in Saanen Goat
title_full_unstemmed E. adenophorum Induces Cell Cycle and Apoptosis of Renal Cells through Mitochondrial Pathway and Caspase Activation in Saanen Goat
title_short E. adenophorum Induces Cell Cycle and Apoptosis of Renal Cells through Mitochondrial Pathway and Caspase Activation in Saanen Goat
title_sort e. adenophorum induces cell cycle and apoptosis of renal cells through mitochondrial pathway and caspase activation in saanen goat
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4575129/
https://www.ncbi.nlm.nih.gov/pubmed/26382060
http://dx.doi.org/10.1371/journal.pone.0138504
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