Dual regulation of cell death and cell survival upon induction of cellular stress by Isopimara-7, 15-Dien-19-Oic acid in cervical cancer, HeLa cells in vitro

The Fritillaria imperialis is an ornamental flower that can be found in various parts of the world including Iraq, Afghanistan, Pakistan, and the Himalayas. The use of this plant as traditional remedy is widely known. This study aims to unveil the anti-cancer potentials of Isopimara-7,15-Dien-19-Oic...

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Main Authors: Abu, Nadiah, Swee, K Yeap, Mat Pauzi, Ahmad Z, Akhtar, Muhammad Nadeem, Zamberi, Nur Rizi, Ismail, Jamil, Zareen, Seema, Alitheen, Noorjahan Banu
Format: Article
Language:English
Published: Frontiers Research Foundation 2016
Online Access:http://psasir.upm.edu.my/id/eprint/55569/1/Dual%20Regulation%20of%20Cell%20Death%20and%20Cell%20Survival%20upon%20induction%20of%20cellular%20stress%20by%20Isopimara.pdf
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author Abu, Nadiah
Swee, K Yeap
Mat Pauzi, Ahmad Z
Akhtar, Muhammad Nadeem
Zamberi, Nur Rizi
Ismail, Jamil
Zareen, Seema
Alitheen, Noorjahan Banu
author_facet Abu, Nadiah
Swee, K Yeap
Mat Pauzi, Ahmad Z
Akhtar, Muhammad Nadeem
Zamberi, Nur Rizi
Ismail, Jamil
Zareen, Seema
Alitheen, Noorjahan Banu
author_sort Abu, Nadiah
collection UPM
description The Fritillaria imperialis is an ornamental flower that can be found in various parts of the world including Iraq, Afghanistan, Pakistan, and the Himalayas. The use of this plant as traditional remedy is widely known. This study aims to unveil the anti-cancer potentials of Isopimara-7,15-Dien-19-Oic Acid, extracted from the bulbs of F. imperialis in cervical cancer cell line, HeLa cells. Flow cytometry analysis of cell death, gene expression analysis via cDNA microarray and protein array were performed. Based on the results, Isopimara-7,15-Dien-19-Oic acid simultaneously induced cell death and promoted cell survival. The execution of apoptosis was apparent based on the flow cytometry results and regulation of both pro and anti-apoptotic genes. Additionally, the regulation of anti-oxidant genes were up-regulated especially thioredoxin, glutathione and superoxide dismutase- related genes. Moreover, the treatment also induced the activation of pro-survival heat shock proteins. Collectively, Isopimara-7,15-Dien-19-Oic Acid managed to induce cellular stress in HeLa cells and activate several anti- and pro survival pathways.
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spelling upm.eprints-555692017-08-14T10:21:52Z http://psasir.upm.edu.my/id/eprint/55569/ Dual regulation of cell death and cell survival upon induction of cellular stress by Isopimara-7, 15-Dien-19-Oic acid in cervical cancer, HeLa cells in vitro Abu, Nadiah Swee, K Yeap Mat Pauzi, Ahmad Z Akhtar, Muhammad Nadeem Zamberi, Nur Rizi Ismail, Jamil Zareen, Seema Alitheen, Noorjahan Banu The Fritillaria imperialis is an ornamental flower that can be found in various parts of the world including Iraq, Afghanistan, Pakistan, and the Himalayas. The use of this plant as traditional remedy is widely known. This study aims to unveil the anti-cancer potentials of Isopimara-7,15-Dien-19-Oic Acid, extracted from the bulbs of F. imperialis in cervical cancer cell line, HeLa cells. Flow cytometry analysis of cell death, gene expression analysis via cDNA microarray and protein array were performed. Based on the results, Isopimara-7,15-Dien-19-Oic acid simultaneously induced cell death and promoted cell survival. The execution of apoptosis was apparent based on the flow cytometry results and regulation of both pro and anti-apoptotic genes. Additionally, the regulation of anti-oxidant genes were up-regulated especially thioredoxin, glutathione and superoxide dismutase- related genes. Moreover, the treatment also induced the activation of pro-survival heat shock proteins. Collectively, Isopimara-7,15-Dien-19-Oic Acid managed to induce cellular stress in HeLa cells and activate several anti- and pro survival pathways. Frontiers Research Foundation 2016 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/55569/1/Dual%20Regulation%20of%20Cell%20Death%20and%20Cell%20Survival%20upon%20induction%20of%20cellular%20stress%20by%20Isopimara.pdf Abu, Nadiah and Swee, K Yeap and Mat Pauzi, Ahmad Z and Akhtar, Muhammad Nadeem and Zamberi, Nur Rizi and Ismail, Jamil and Zareen, Seema and Alitheen, Noorjahan Banu (2016) Dual regulation of cell death and cell survival upon induction of cellular stress by Isopimara-7, 15-Dien-19-Oic acid in cervical cancer, HeLa cells in vitro. Frontiers in Pharmacology, 7 (89). pp. 1-11. ISSN ESSN: 1663-9812 10.3389/fphar.2016.00089
spellingShingle Abu, Nadiah
Swee, K Yeap
Mat Pauzi, Ahmad Z
Akhtar, Muhammad Nadeem
Zamberi, Nur Rizi
Ismail, Jamil
Zareen, Seema
Alitheen, Noorjahan Banu
Dual regulation of cell death and cell survival upon induction of cellular stress by Isopimara-7, 15-Dien-19-Oic acid in cervical cancer, HeLa cells in vitro
title Dual regulation of cell death and cell survival upon induction of cellular stress by Isopimara-7, 15-Dien-19-Oic acid in cervical cancer, HeLa cells in vitro
title_full Dual regulation of cell death and cell survival upon induction of cellular stress by Isopimara-7, 15-Dien-19-Oic acid in cervical cancer, HeLa cells in vitro
title_fullStr Dual regulation of cell death and cell survival upon induction of cellular stress by Isopimara-7, 15-Dien-19-Oic acid in cervical cancer, HeLa cells in vitro
title_full_unstemmed Dual regulation of cell death and cell survival upon induction of cellular stress by Isopimara-7, 15-Dien-19-Oic acid in cervical cancer, HeLa cells in vitro
title_short Dual regulation of cell death and cell survival upon induction of cellular stress by Isopimara-7, 15-Dien-19-Oic acid in cervical cancer, HeLa cells in vitro
title_sort dual regulation of cell death and cell survival upon induction of cellular stress by isopimara 7 15 dien 19 oic acid in cervical cancer hela cells in vitro
url http://psasir.upm.edu.my/id/eprint/55569/1/Dual%20Regulation%20of%20Cell%20Death%20and%20Cell%20Survival%20upon%20induction%20of%20cellular%20stress%20by%20Isopimara.pdf
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