Cargando…

An Ingenol Derived from Euphorbia kansui Induces Hepatocyte Cytotoxicity by Triggering G0/G1 Cell Cycle Arrest and Regulating the Mitochondrial Apoptosis Pathway in Vitro

Natural product lingenol, a purified diterpenoid compound derived from the root of Euphorbia kansui, exerts serious hepatotoxicity; however, the molecular mechanisms remain to be defined. In the present study, cell counting Kit-8 (CCK-8), inverted phase contrast microscope and flow cytometry were us...

Descripción completa

Detalles Bibliográficos
Autores principales: Yan, Xiaojing, Zhang, Li, Cao, Yudan, Yao, Weifeng, Tang, Yuping, Ding, Anwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6274136/
https://www.ncbi.nlm.nih.gov/pubmed/27338329
http://dx.doi.org/10.3390/molecules21060813
_version_ 1783377549131251712
author Yan, Xiaojing
Zhang, Li
Cao, Yudan
Yao, Weifeng
Tang, Yuping
Ding, Anwei
author_facet Yan, Xiaojing
Zhang, Li
Cao, Yudan
Yao, Weifeng
Tang, Yuping
Ding, Anwei
author_sort Yan, Xiaojing
collection PubMed
description Natural product lingenol, a purified diterpenoid compound derived from the root of Euphorbia kansui, exerts serious hepatotoxicity; however, the molecular mechanisms remain to be defined. In the present study, cell counting Kit-8 (CCK-8), inverted phase contrast microscope and flow cytometry were used to demonstrate that lingenol significantly inhibited L-O2 cells proliferation, and induced cell cycle arrest and apoptosis. Moreover, the results investigated that lingenol markedly disrupted mitochondrial functions by high content screening (HCS). In addition, the up-regulation of cytochrome c, AIF and Apaf-1 and activation of caspases were found in L-O2 cells detected by Western blotting and ELISA assay, which was required for lingenol activation of cytochrome c-mediated caspase cascades and AIF-mediated DNA damage. Mechanistic investigations revealed that lingenol significantly down-regulated the Bcl-2/Bax ratio and enhanced the reactive oxygen species (ROS) in L-O2 cells. These data collectively indicated that lingenol modulation of ROS and Bcl-2/Bax ratio led to cell cycle arrest and mitochondrial-mediated apoptosis in L-O2 cells in vitro. All of these results will be helpful to reveal the hepatotoxicity mechanism of Euphorbia kansui and to effectively guide safer and better clinical application of this herb.
format Online
Article
Text
id pubmed-6274136
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-62741362018-12-28 An Ingenol Derived from Euphorbia kansui Induces Hepatocyte Cytotoxicity by Triggering G0/G1 Cell Cycle Arrest and Regulating the Mitochondrial Apoptosis Pathway in Vitro Yan, Xiaojing Zhang, Li Cao, Yudan Yao, Weifeng Tang, Yuping Ding, Anwei Molecules Article Natural product lingenol, a purified diterpenoid compound derived from the root of Euphorbia kansui, exerts serious hepatotoxicity; however, the molecular mechanisms remain to be defined. In the present study, cell counting Kit-8 (CCK-8), inverted phase contrast microscope and flow cytometry were used to demonstrate that lingenol significantly inhibited L-O2 cells proliferation, and induced cell cycle arrest and apoptosis. Moreover, the results investigated that lingenol markedly disrupted mitochondrial functions by high content screening (HCS). In addition, the up-regulation of cytochrome c, AIF and Apaf-1 and activation of caspases were found in L-O2 cells detected by Western blotting and ELISA assay, which was required for lingenol activation of cytochrome c-mediated caspase cascades and AIF-mediated DNA damage. Mechanistic investigations revealed that lingenol significantly down-regulated the Bcl-2/Bax ratio and enhanced the reactive oxygen species (ROS) in L-O2 cells. These data collectively indicated that lingenol modulation of ROS and Bcl-2/Bax ratio led to cell cycle arrest and mitochondrial-mediated apoptosis in L-O2 cells in vitro. All of these results will be helpful to reveal the hepatotoxicity mechanism of Euphorbia kansui and to effectively guide safer and better clinical application of this herb. MDPI 2016-06-22 /pmc/articles/PMC6274136/ /pubmed/27338329 http://dx.doi.org/10.3390/molecules21060813 Text en © 2016 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yan, Xiaojing
Zhang, Li
Cao, Yudan
Yao, Weifeng
Tang, Yuping
Ding, Anwei
An Ingenol Derived from Euphorbia kansui Induces Hepatocyte Cytotoxicity by Triggering G0/G1 Cell Cycle Arrest and Regulating the Mitochondrial Apoptosis Pathway in Vitro
title An Ingenol Derived from Euphorbia kansui Induces Hepatocyte Cytotoxicity by Triggering G0/G1 Cell Cycle Arrest and Regulating the Mitochondrial Apoptosis Pathway in Vitro
title_full An Ingenol Derived from Euphorbia kansui Induces Hepatocyte Cytotoxicity by Triggering G0/G1 Cell Cycle Arrest and Regulating the Mitochondrial Apoptosis Pathway in Vitro
title_fullStr An Ingenol Derived from Euphorbia kansui Induces Hepatocyte Cytotoxicity by Triggering G0/G1 Cell Cycle Arrest and Regulating the Mitochondrial Apoptosis Pathway in Vitro
title_full_unstemmed An Ingenol Derived from Euphorbia kansui Induces Hepatocyte Cytotoxicity by Triggering G0/G1 Cell Cycle Arrest and Regulating the Mitochondrial Apoptosis Pathway in Vitro
title_short An Ingenol Derived from Euphorbia kansui Induces Hepatocyte Cytotoxicity by Triggering G0/G1 Cell Cycle Arrest and Regulating the Mitochondrial Apoptosis Pathway in Vitro
title_sort ingenol derived from euphorbia kansui induces hepatocyte cytotoxicity by triggering g0/g1 cell cycle arrest and regulating the mitochondrial apoptosis pathway in vitro
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6274136/
https://www.ncbi.nlm.nih.gov/pubmed/27338329
http://dx.doi.org/10.3390/molecules21060813
work_keys_str_mv AT yanxiaojing aningenolderivedfromeuphorbiakansuiinduceshepatocytecytotoxicitybytriggeringg0g1cellcyclearrestandregulatingthemitochondrialapoptosispathwayinvitro
AT zhangli aningenolderivedfromeuphorbiakansuiinduceshepatocytecytotoxicitybytriggeringg0g1cellcyclearrestandregulatingthemitochondrialapoptosispathwayinvitro
AT caoyudan aningenolderivedfromeuphorbiakansuiinduceshepatocytecytotoxicitybytriggeringg0g1cellcyclearrestandregulatingthemitochondrialapoptosispathwayinvitro
AT yaoweifeng aningenolderivedfromeuphorbiakansuiinduceshepatocytecytotoxicitybytriggeringg0g1cellcyclearrestandregulatingthemitochondrialapoptosispathwayinvitro
AT tangyuping aningenolderivedfromeuphorbiakansuiinduceshepatocytecytotoxicitybytriggeringg0g1cellcyclearrestandregulatingthemitochondrialapoptosispathwayinvitro
AT dinganwei aningenolderivedfromeuphorbiakansuiinduceshepatocytecytotoxicitybytriggeringg0g1cellcyclearrestandregulatingthemitochondrialapoptosispathwayinvitro
AT yanxiaojing ingenolderivedfromeuphorbiakansuiinduceshepatocytecytotoxicitybytriggeringg0g1cellcyclearrestandregulatingthemitochondrialapoptosispathwayinvitro
AT zhangli ingenolderivedfromeuphorbiakansuiinduceshepatocytecytotoxicitybytriggeringg0g1cellcyclearrestandregulatingthemitochondrialapoptosispathwayinvitro
AT caoyudan ingenolderivedfromeuphorbiakansuiinduceshepatocytecytotoxicitybytriggeringg0g1cellcyclearrestandregulatingthemitochondrialapoptosispathwayinvitro
AT yaoweifeng ingenolderivedfromeuphorbiakansuiinduceshepatocytecytotoxicitybytriggeringg0g1cellcyclearrestandregulatingthemitochondrialapoptosispathwayinvitro
AT tangyuping ingenolderivedfromeuphorbiakansuiinduceshepatocytecytotoxicitybytriggeringg0g1cellcyclearrestandregulatingthemitochondrialapoptosispathwayinvitro
AT dinganwei ingenolderivedfromeuphorbiakansuiinduceshepatocytecytotoxicitybytriggeringg0g1cellcyclearrestandregulatingthemitochondrialapoptosispathwayinvitro