Cargando…

Induction of Apoptosis in MCF-7 Cells via Oxidative Stress Generation, Mitochondria-Dependent and Caspase-Independent Pathway by Ethyl Acetate Extract of Dillenia suffruticosa and Its Chemical Profile

Dillenia suffruticosa, which is locally known as Simpoh air, has been traditionally used to treat cancerous growth. The ethyl acetate extract of D. suffruticosa (EADs) has been shown to induce apoptosis in MCF-7 breast cancer cells in our previous study. The present study aimed to elucidate the mole...

Descripción completa

Detalles Bibliográficos
Autores principales: Tor, Yin Sim, Yazan, Latifah Saiful, Foo, Jhi Biau, Wibowo, Agustono, Ismail, Norsharina, Cheah, Yoke Kqueen, Abdullah, Rasedee, Ismail, Maznah, Ismail, Intan Safinar, Yeap, Swee Keong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4457850/
https://www.ncbi.nlm.nih.gov/pubmed/26047480
http://dx.doi.org/10.1371/journal.pone.0127441
_version_ 1782375007927664640
author Tor, Yin Sim
Yazan, Latifah Saiful
Foo, Jhi Biau
Wibowo, Agustono
Ismail, Norsharina
Cheah, Yoke Kqueen
Abdullah, Rasedee
Ismail, Maznah
Ismail, Intan Safinar
Yeap, Swee Keong
author_facet Tor, Yin Sim
Yazan, Latifah Saiful
Foo, Jhi Biau
Wibowo, Agustono
Ismail, Norsharina
Cheah, Yoke Kqueen
Abdullah, Rasedee
Ismail, Maznah
Ismail, Intan Safinar
Yeap, Swee Keong
author_sort Tor, Yin Sim
collection PubMed
description Dillenia suffruticosa, which is locally known as Simpoh air, has been traditionally used to treat cancerous growth. The ethyl acetate extract of D. suffruticosa (EADs) has been shown to induce apoptosis in MCF-7 breast cancer cells in our previous study. The present study aimed to elucidate the molecular mechanisms involved in EADs-induced apoptosis and to identify the major compounds in the extract. EADs was found to promote oxidative stress in MCF-7 cells that led to cell death because the pre-treatment with antioxidants α-tocopherol and ascorbic acid significantly reduced the cytotoxicity of the extract (P<0.05). DCFH-DA assay revealed that treatment with EADs attenuated the generation of intracellular ROS. Apoptosis induced by EADs was not inhibited by the use of caspase-inhibitor Z-VAD-FMK, suggesting that the cell death is caspase-independent. The use of JC-1 dye reflected that EADs caused disruption in the mitochondrial membrane potential. The related molecular pathways involved in EADs-induced apoptosis were determined by GeXP multiplex system and Western blot analysis. EADs is postulated to induce cell cycle arrest that is p53- and p21-dependent based on the upregulated expression of p53 and p21 (P<0.05). The expression of Bax was upregulated with downregulation of Bcl-2 following treatment with EADs. The elevated Bax/Bcl-2 ratio and the depolarization of mitochondrial membrane potential suggest that EADs-induced apoptosis is mitochondria-dependent. The expression of oxidative stress-related AKT, p-AKT, ERK, and p-ERK was downregulated with upregulation of JNK and p-JNK. The data indicate that induction of oxidative-stress related apoptosis by EADs was mediated by inhibition of AKT and ERK, and activation of JNK. The isolation of compounds in EADs was carried out using column chromatography and elucidated using the nuclear resonance magnetic analysis producing a total of six compounds including 3-epimaslinic acid, kaempferol, kaempferide, protocatechuic acid, gallic acid and β-sitosterol-3-O-β-D-glucopyranoside. The cytotoxicity of the isolated compounds was determined using MTT assay. Gallic acid was found to be most cytotoxic against MCF-7 cell line compared to others, with IC(50) of 36 ± 1.7 μg/mL (P<0.05). In summary, EADs generated oxidative stress, induced cell cycle arrest and apoptosis in MCF-7 cells by regulating numerous genes and proteins that are involved in the apoptotic signal transduction pathway. Therefore, EADs has the potential to be developed as an anti-cancer agent against breast cancer.
format Online
Article
Text
id pubmed-4457850
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-44578502015-06-09 Induction of Apoptosis in MCF-7 Cells via Oxidative Stress Generation, Mitochondria-Dependent and Caspase-Independent Pathway by Ethyl Acetate Extract of Dillenia suffruticosa and Its Chemical Profile Tor, Yin Sim Yazan, Latifah Saiful Foo, Jhi Biau Wibowo, Agustono Ismail, Norsharina Cheah, Yoke Kqueen Abdullah, Rasedee Ismail, Maznah Ismail, Intan Safinar Yeap, Swee Keong PLoS One Research Article Dillenia suffruticosa, which is locally known as Simpoh air, has been traditionally used to treat cancerous growth. The ethyl acetate extract of D. suffruticosa (EADs) has been shown to induce apoptosis in MCF-7 breast cancer cells in our previous study. The present study aimed to elucidate the molecular mechanisms involved in EADs-induced apoptosis and to identify the major compounds in the extract. EADs was found to promote oxidative stress in MCF-7 cells that led to cell death because the pre-treatment with antioxidants α-tocopherol and ascorbic acid significantly reduced the cytotoxicity of the extract (P<0.05). DCFH-DA assay revealed that treatment with EADs attenuated the generation of intracellular ROS. Apoptosis induced by EADs was not inhibited by the use of caspase-inhibitor Z-VAD-FMK, suggesting that the cell death is caspase-independent. The use of JC-1 dye reflected that EADs caused disruption in the mitochondrial membrane potential. The related molecular pathways involved in EADs-induced apoptosis were determined by GeXP multiplex system and Western blot analysis. EADs is postulated to induce cell cycle arrest that is p53- and p21-dependent based on the upregulated expression of p53 and p21 (P<0.05). The expression of Bax was upregulated with downregulation of Bcl-2 following treatment with EADs. The elevated Bax/Bcl-2 ratio and the depolarization of mitochondrial membrane potential suggest that EADs-induced apoptosis is mitochondria-dependent. The expression of oxidative stress-related AKT, p-AKT, ERK, and p-ERK was downregulated with upregulation of JNK and p-JNK. The data indicate that induction of oxidative-stress related apoptosis by EADs was mediated by inhibition of AKT and ERK, and activation of JNK. The isolation of compounds in EADs was carried out using column chromatography and elucidated using the nuclear resonance magnetic analysis producing a total of six compounds including 3-epimaslinic acid, kaempferol, kaempferide, protocatechuic acid, gallic acid and β-sitosterol-3-O-β-D-glucopyranoside. The cytotoxicity of the isolated compounds was determined using MTT assay. Gallic acid was found to be most cytotoxic against MCF-7 cell line compared to others, with IC(50) of 36 ± 1.7 μg/mL (P<0.05). In summary, EADs generated oxidative stress, induced cell cycle arrest and apoptosis in MCF-7 cells by regulating numerous genes and proteins that are involved in the apoptotic signal transduction pathway. Therefore, EADs has the potential to be developed as an anti-cancer agent against breast cancer. Public Library of Science 2015-06-05 /pmc/articles/PMC4457850/ /pubmed/26047480 http://dx.doi.org/10.1371/journal.pone.0127441 Text en © 2015 Tor 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
Tor, Yin Sim
Yazan, Latifah Saiful
Foo, Jhi Biau
Wibowo, Agustono
Ismail, Norsharina
Cheah, Yoke Kqueen
Abdullah, Rasedee
Ismail, Maznah
Ismail, Intan Safinar
Yeap, Swee Keong
Induction of Apoptosis in MCF-7 Cells via Oxidative Stress Generation, Mitochondria-Dependent and Caspase-Independent Pathway by Ethyl Acetate Extract of Dillenia suffruticosa and Its Chemical Profile
title Induction of Apoptosis in MCF-7 Cells via Oxidative Stress Generation, Mitochondria-Dependent and Caspase-Independent Pathway by Ethyl Acetate Extract of Dillenia suffruticosa and Its Chemical Profile
title_full Induction of Apoptosis in MCF-7 Cells via Oxidative Stress Generation, Mitochondria-Dependent and Caspase-Independent Pathway by Ethyl Acetate Extract of Dillenia suffruticosa and Its Chemical Profile
title_fullStr Induction of Apoptosis in MCF-7 Cells via Oxidative Stress Generation, Mitochondria-Dependent and Caspase-Independent Pathway by Ethyl Acetate Extract of Dillenia suffruticosa and Its Chemical Profile
title_full_unstemmed Induction of Apoptosis in MCF-7 Cells via Oxidative Stress Generation, Mitochondria-Dependent and Caspase-Independent Pathway by Ethyl Acetate Extract of Dillenia suffruticosa and Its Chemical Profile
title_short Induction of Apoptosis in MCF-7 Cells via Oxidative Stress Generation, Mitochondria-Dependent and Caspase-Independent Pathway by Ethyl Acetate Extract of Dillenia suffruticosa and Its Chemical Profile
title_sort induction of apoptosis in mcf-7 cells via oxidative stress generation, mitochondria-dependent and caspase-independent pathway by ethyl acetate extract of dillenia suffruticosa and its chemical profile
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4457850/
https://www.ncbi.nlm.nih.gov/pubmed/26047480
http://dx.doi.org/10.1371/journal.pone.0127441
work_keys_str_mv AT toryinsim inductionofapoptosisinmcf7cellsviaoxidativestressgenerationmitochondriadependentandcaspaseindependentpathwaybyethylacetateextractofdilleniasuffruticosaanditschemicalprofile
AT yazanlatifahsaiful inductionofapoptosisinmcf7cellsviaoxidativestressgenerationmitochondriadependentandcaspaseindependentpathwaybyethylacetateextractofdilleniasuffruticosaanditschemicalprofile
AT foojhibiau inductionofapoptosisinmcf7cellsviaoxidativestressgenerationmitochondriadependentandcaspaseindependentpathwaybyethylacetateextractofdilleniasuffruticosaanditschemicalprofile
AT wibowoagustono inductionofapoptosisinmcf7cellsviaoxidativestressgenerationmitochondriadependentandcaspaseindependentpathwaybyethylacetateextractofdilleniasuffruticosaanditschemicalprofile
AT ismailnorsharina inductionofapoptosisinmcf7cellsviaoxidativestressgenerationmitochondriadependentandcaspaseindependentpathwaybyethylacetateextractofdilleniasuffruticosaanditschemicalprofile
AT cheahyokekqueen inductionofapoptosisinmcf7cellsviaoxidativestressgenerationmitochondriadependentandcaspaseindependentpathwaybyethylacetateextractofdilleniasuffruticosaanditschemicalprofile
AT abdullahrasedee inductionofapoptosisinmcf7cellsviaoxidativestressgenerationmitochondriadependentandcaspaseindependentpathwaybyethylacetateextractofdilleniasuffruticosaanditschemicalprofile
AT ismailmaznah inductionofapoptosisinmcf7cellsviaoxidativestressgenerationmitochondriadependentandcaspaseindependentpathwaybyethylacetateextractofdilleniasuffruticosaanditschemicalprofile
AT ismailintansafinar inductionofapoptosisinmcf7cellsviaoxidativestressgenerationmitochondriadependentandcaspaseindependentpathwaybyethylacetateextractofdilleniasuffruticosaanditschemicalprofile
AT yeapsweekeong inductionofapoptosisinmcf7cellsviaoxidativestressgenerationmitochondriadependentandcaspaseindependentpathwaybyethylacetateextractofdilleniasuffruticosaanditschemicalprofile