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Simultaneous Inhibition of Cell-Cycle, Proliferation, Survival, Metastatic Pathways and Induction of Apoptosis in Breast Cancer Cells by a Phytochemical Super-Cocktail: Genes That Underpin Its Mode of Action

Traditional chemotherapy and radiotherapy for cancer treatment face serious challenges such as drug resistance and toxic side effects. Complementary / Alternative medicine is increasingly being practiced worldwide due to its safety beneficial therapeutic effects. We hypothesized that a super combina...

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Autores principales: Ouhtit, Allal, Gaur, Rajiv Lochan, Abdraboh, Mohamed, Ireland, Shubha K., Rao, Prakash N, Raj, Shailaja G, Al-Riyami, Hamad, Shanmuganathan, Somya, Gupta, Ishita, Murthy, Subramanyam N, Hollenbach, Andrew, Raj, Madhwa HG
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3842439/
https://www.ncbi.nlm.nih.gov/pubmed/24312140
http://dx.doi.org/10.7150/jca.7235
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author Ouhtit, Allal
Gaur, Rajiv Lochan
Abdraboh, Mohamed
Ireland, Shubha K.
Rao, Prakash N
Raj, Shailaja G
Al-Riyami, Hamad
Shanmuganathan, Somya
Gupta, Ishita
Murthy, Subramanyam N
Hollenbach, Andrew
Raj, Madhwa HG
author_facet Ouhtit, Allal
Gaur, Rajiv Lochan
Abdraboh, Mohamed
Ireland, Shubha K.
Rao, Prakash N
Raj, Shailaja G
Al-Riyami, Hamad
Shanmuganathan, Somya
Gupta, Ishita
Murthy, Subramanyam N
Hollenbach, Andrew
Raj, Madhwa HG
author_sort Ouhtit, Allal
collection PubMed
description Traditional chemotherapy and radiotherapy for cancer treatment face serious challenges such as drug resistance and toxic side effects. Complementary / Alternative medicine is increasingly being practiced worldwide due to its safety beneficial therapeutic effects. We hypothesized that a super combination (SC) of known phytochemicals used at bioavailable levels could induce 100% killing of breast cancer (BC) cells without toxic effects on normal cells and that microarray analysis would identify potential genes for targeted therapy of BC. Mesenchymal Stems cells (MSC, control) and two BC cell lines were treated with six well established pro-apoptotic phytochemicals individually and in combination (super cocktail), at bioavailable levels. The compounds were ineffective individually. In combination, they significantly suppressed BC cell proliferation (>80%), inhibited migration and invasion, caused cell cycle arrest and induced apoptosis resulting in 100% cell death. However, there were no deleterious effects on MSC cells used as control. Furthermore, the SC down-regulated the expression of PCNA, Rb, CDK4, BcL-2, SVV, and CD44 (metastasis inducing stem cell factor) in the BC cell lines. Microarray analysis revealed several differentially expressed key genes (PCNA, Rb, CDK4, Bcl-2, SVV, P53 and CD44) underpinning SC-promoted BC cell death and motility. Four unique genes were highly up-regulated (ARC, GADD45B, MYLIP and CDKN1C). This investigation indicates the potential for development of a highly effective phytochemical combination for breast cancer chemoprevention / chemotherapy. The novel over-expressed genes hold the potential for development as markers to follow efficacy of therapy.
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spelling pubmed-38424392013-12-05 Simultaneous Inhibition of Cell-Cycle, Proliferation, Survival, Metastatic Pathways and Induction of Apoptosis in Breast Cancer Cells by a Phytochemical Super-Cocktail: Genes That Underpin Its Mode of Action Ouhtit, Allal Gaur, Rajiv Lochan Abdraboh, Mohamed Ireland, Shubha K. Rao, Prakash N Raj, Shailaja G Al-Riyami, Hamad Shanmuganathan, Somya Gupta, Ishita Murthy, Subramanyam N Hollenbach, Andrew Raj, Madhwa HG J Cancer Research Paper Traditional chemotherapy and radiotherapy for cancer treatment face serious challenges such as drug resistance and toxic side effects. Complementary / Alternative medicine is increasingly being practiced worldwide due to its safety beneficial therapeutic effects. We hypothesized that a super combination (SC) of known phytochemicals used at bioavailable levels could induce 100% killing of breast cancer (BC) cells without toxic effects on normal cells and that microarray analysis would identify potential genes for targeted therapy of BC. Mesenchymal Stems cells (MSC, control) and two BC cell lines were treated with six well established pro-apoptotic phytochemicals individually and in combination (super cocktail), at bioavailable levels. The compounds were ineffective individually. In combination, they significantly suppressed BC cell proliferation (>80%), inhibited migration and invasion, caused cell cycle arrest and induced apoptosis resulting in 100% cell death. However, there were no deleterious effects on MSC cells used as control. Furthermore, the SC down-regulated the expression of PCNA, Rb, CDK4, BcL-2, SVV, and CD44 (metastasis inducing stem cell factor) in the BC cell lines. Microarray analysis revealed several differentially expressed key genes (PCNA, Rb, CDK4, Bcl-2, SVV, P53 and CD44) underpinning SC-promoted BC cell death and motility. Four unique genes were highly up-regulated (ARC, GADD45B, MYLIP and CDKN1C). This investigation indicates the potential for development of a highly effective phytochemical combination for breast cancer chemoprevention / chemotherapy. The novel over-expressed genes hold the potential for development as markers to follow efficacy of therapy. Ivyspring International Publisher 2013-11-14 /pmc/articles/PMC3842439/ /pubmed/24312140 http://dx.doi.org/10.7150/jca.7235 Text en © Ivyspring International Publisher. This is an open-access article distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited.
spellingShingle Research Paper
Ouhtit, Allal
Gaur, Rajiv Lochan
Abdraboh, Mohamed
Ireland, Shubha K.
Rao, Prakash N
Raj, Shailaja G
Al-Riyami, Hamad
Shanmuganathan, Somya
Gupta, Ishita
Murthy, Subramanyam N
Hollenbach, Andrew
Raj, Madhwa HG
Simultaneous Inhibition of Cell-Cycle, Proliferation, Survival, Metastatic Pathways and Induction of Apoptosis in Breast Cancer Cells by a Phytochemical Super-Cocktail: Genes That Underpin Its Mode of Action
title Simultaneous Inhibition of Cell-Cycle, Proliferation, Survival, Metastatic Pathways and Induction of Apoptosis in Breast Cancer Cells by a Phytochemical Super-Cocktail: Genes That Underpin Its Mode of Action
title_full Simultaneous Inhibition of Cell-Cycle, Proliferation, Survival, Metastatic Pathways and Induction of Apoptosis in Breast Cancer Cells by a Phytochemical Super-Cocktail: Genes That Underpin Its Mode of Action
title_fullStr Simultaneous Inhibition of Cell-Cycle, Proliferation, Survival, Metastatic Pathways and Induction of Apoptosis in Breast Cancer Cells by a Phytochemical Super-Cocktail: Genes That Underpin Its Mode of Action
title_full_unstemmed Simultaneous Inhibition of Cell-Cycle, Proliferation, Survival, Metastatic Pathways and Induction of Apoptosis in Breast Cancer Cells by a Phytochemical Super-Cocktail: Genes That Underpin Its Mode of Action
title_short Simultaneous Inhibition of Cell-Cycle, Proliferation, Survival, Metastatic Pathways and Induction of Apoptosis in Breast Cancer Cells by a Phytochemical Super-Cocktail: Genes That Underpin Its Mode of Action
title_sort simultaneous inhibition of cell-cycle, proliferation, survival, metastatic pathways and induction of apoptosis in breast cancer cells by a phytochemical super-cocktail: genes that underpin its mode of action
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3842439/
https://www.ncbi.nlm.nih.gov/pubmed/24312140
http://dx.doi.org/10.7150/jca.7235
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