Cargando…

The potential utility of acetyltanshinone IIA in the treatment of HER2-overexpressed breast cancer: Induction of cancer cell death by targeting apoptotic and metabolic signaling pathways

Increased lipogenesis and protein synthesis is a hallmark of cancer cell proliferation, survival, and metastatic progression and is under intense investigation as a potential antineoplastic target. Acetyltanshinone IIA (ATA) is a compound that was obtained from chemical modifications of tanshinone I...

Descripción completa

Detalles Bibliográficos
Autores principales: Guerram, Mounia, Jiang, Zhen-Zhou, Yousef, Bashir Alsiddig, Hamdi, Aida Mejda, Hassan, Hozeifa Mohamed, Yuan, Zi-Qiao, Luo, Hou-Wei, Zhu, Xiong, Zhang, Lu-Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4673132/
https://www.ncbi.nlm.nih.gov/pubmed/26068969
_version_ 1782404673598128128
author Guerram, Mounia
Jiang, Zhen-Zhou
Yousef, Bashir Alsiddig
Hamdi, Aida Mejda
Hassan, Hozeifa Mohamed
Yuan, Zi-Qiao
Luo, Hou-Wei
Zhu, Xiong
Zhang, Lu-Yong
author_facet Guerram, Mounia
Jiang, Zhen-Zhou
Yousef, Bashir Alsiddig
Hamdi, Aida Mejda
Hassan, Hozeifa Mohamed
Yuan, Zi-Qiao
Luo, Hou-Wei
Zhu, Xiong
Zhang, Lu-Yong
author_sort Guerram, Mounia
collection PubMed
description Increased lipogenesis and protein synthesis is a hallmark of cancer cell proliferation, survival, and metastatic progression and is under intense investigation as a potential antineoplastic target. Acetyltanshinone IIA (ATA) is a compound that was obtained from chemical modifications of tanshinone IIA (TIIA), a potent anticancer agent extracted from the dried roots of the Chinese herbal medicine Salvia miltiorrhiza Bunge. A previous investigation indicated that ATA is more effective in inhibiting the growth of breast cancer especially cells with HER2 overexpression. However, the molecular mechanism(s) mediating this cytotoxic effect on HER2-positive breast cancer remained undefined. Studies described here report that ATA induced G1/S phase arrest and apoptosis in the HER2-positive MDA-MB-453, SK-BR-3, and BT-474 breast cancer cell lines. Mechanistic investigations revealed that the ATA-induced apoptosis effect is associated with remarkably down-regulation of receptor tyrosine kinases (RTKs) EGFR/HER2 and inhibition of their downstream pro-survival signaling pathways. Interestingly, ATA was found to trigger oxidative and endoplasmic reticulum (ER) stresses and to activate AMP activated protein kinase (AMPK) leading to inactivation of key enzymes involved in lipid and protein biogenesis. Intraperitoneal administration of ATA significantly inhibited the growth of MDA-MB-453 xenografts in athymic mice without causing weight loss and any other side effects. Additionally, transwell migration, invasion, and wound healing assays revealed that ATA could suppress tumor angiogenesis in vitro. Taken together, our data suggest that ATA may have broad utility in the treatment of HER2-overexpressed breast cancers.
format Online
Article
Text
id pubmed-4673132
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-46731322015-12-23 The potential utility of acetyltanshinone IIA in the treatment of HER2-overexpressed breast cancer: Induction of cancer cell death by targeting apoptotic and metabolic signaling pathways Guerram, Mounia Jiang, Zhen-Zhou Yousef, Bashir Alsiddig Hamdi, Aida Mejda Hassan, Hozeifa Mohamed Yuan, Zi-Qiao Luo, Hou-Wei Zhu, Xiong Zhang, Lu-Yong Oncotarget Research Paper Increased lipogenesis and protein synthesis is a hallmark of cancer cell proliferation, survival, and metastatic progression and is under intense investigation as a potential antineoplastic target. Acetyltanshinone IIA (ATA) is a compound that was obtained from chemical modifications of tanshinone IIA (TIIA), a potent anticancer agent extracted from the dried roots of the Chinese herbal medicine Salvia miltiorrhiza Bunge. A previous investigation indicated that ATA is more effective in inhibiting the growth of breast cancer especially cells with HER2 overexpression. However, the molecular mechanism(s) mediating this cytotoxic effect on HER2-positive breast cancer remained undefined. Studies described here report that ATA induced G1/S phase arrest and apoptosis in the HER2-positive MDA-MB-453, SK-BR-3, and BT-474 breast cancer cell lines. Mechanistic investigations revealed that the ATA-induced apoptosis effect is associated with remarkably down-regulation of receptor tyrosine kinases (RTKs) EGFR/HER2 and inhibition of their downstream pro-survival signaling pathways. Interestingly, ATA was found to trigger oxidative and endoplasmic reticulum (ER) stresses and to activate AMP activated protein kinase (AMPK) leading to inactivation of key enzymes involved in lipid and protein biogenesis. Intraperitoneal administration of ATA significantly inhibited the growth of MDA-MB-453 xenografts in athymic mice without causing weight loss and any other side effects. Additionally, transwell migration, invasion, and wound healing assays revealed that ATA could suppress tumor angiogenesis in vitro. Taken together, our data suggest that ATA may have broad utility in the treatment of HER2-overexpressed breast cancers. Impact Journals LLC 2015-05-28 /pmc/articles/PMC4673132/ /pubmed/26068969 Text en Copyright: © 2015 Guerram et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Guerram, Mounia
Jiang, Zhen-Zhou
Yousef, Bashir Alsiddig
Hamdi, Aida Mejda
Hassan, Hozeifa Mohamed
Yuan, Zi-Qiao
Luo, Hou-Wei
Zhu, Xiong
Zhang, Lu-Yong
The potential utility of acetyltanshinone IIA in the treatment of HER2-overexpressed breast cancer: Induction of cancer cell death by targeting apoptotic and metabolic signaling pathways
title The potential utility of acetyltanshinone IIA in the treatment of HER2-overexpressed breast cancer: Induction of cancer cell death by targeting apoptotic and metabolic signaling pathways
title_full The potential utility of acetyltanshinone IIA in the treatment of HER2-overexpressed breast cancer: Induction of cancer cell death by targeting apoptotic and metabolic signaling pathways
title_fullStr The potential utility of acetyltanshinone IIA in the treatment of HER2-overexpressed breast cancer: Induction of cancer cell death by targeting apoptotic and metabolic signaling pathways
title_full_unstemmed The potential utility of acetyltanshinone IIA in the treatment of HER2-overexpressed breast cancer: Induction of cancer cell death by targeting apoptotic and metabolic signaling pathways
title_short The potential utility of acetyltanshinone IIA in the treatment of HER2-overexpressed breast cancer: Induction of cancer cell death by targeting apoptotic and metabolic signaling pathways
title_sort potential utility of acetyltanshinone iia in the treatment of her2-overexpressed breast cancer: induction of cancer cell death by targeting apoptotic and metabolic signaling pathways
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4673132/
https://www.ncbi.nlm.nih.gov/pubmed/26068969
work_keys_str_mv AT guerrammounia thepotentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT jiangzhenzhou thepotentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT yousefbashiralsiddig thepotentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT hamdiaidamejda thepotentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT hassanhozeifamohamed thepotentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT yuanziqiao thepotentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT luohouwei thepotentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT zhuxiong thepotentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT zhangluyong thepotentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT guerrammounia potentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT jiangzhenzhou potentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT yousefbashiralsiddig potentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT hamdiaidamejda potentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT hassanhozeifamohamed potentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT yuanziqiao potentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT luohouwei potentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT zhuxiong potentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways
AT zhangluyong potentialutilityofacetyltanshinoneiiainthetreatmentofher2overexpressedbreastcancerinductionofcancercelldeathbytargetingapoptoticandmetabolicsignalingpathways