Induction of selective cytotoxicity and apoptosis in human T4-lymphoblastoid cell line (CEMss) by boesenbergin a isolated from boesenbergia rotunda rhizomes involves mitochondrial pathway, activation of caspase 3 and G2/M phase cell cycle arrest

Background Boesenbergia rotunda (Roxb.) Schlecht (family zingiberaceae) is a rhizomatous herb that is distributed from north-eastern India to south-east Asia, especially in Indonesia, Thailand and Malaysia. Previous research has shown that the crude extract of this plant has cytotoxic properties. T...

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Main Authors: Ng, Kuan Beng, Bustamam, Ahmad, Sukari, Mohd Aspollah, Abdelwahab, Siddig Ibrahim, Mohan, Syam, Buckle, Michael James Christopher, Kamalidehghan, Behnam, Muhammad Nadzri, Nabilah, Anasamy, Theebaa, A. Hadi, A. Hamid, Rahman, Heshu Sulaiman
Format: Article
Language:English
English
Published: BioMed Central 2013
Online Access:http://psasir.upm.edu.my/id/eprint/30027/1/Induction%20of%20selective%20cytotoxicity%20and%20apoptosis%20in%20human%20.pdf
http://psasir.upm.edu.my/id/eprint/30027/
http://www.biomedcentral.com/bmccomplementalternmed/content/13/February/2013
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spelling my.upm.eprints.300272015-12-07T08:18:42Z http://psasir.upm.edu.my/id/eprint/30027/ Induction of selective cytotoxicity and apoptosis in human T4-lymphoblastoid cell line (CEMss) by boesenbergin a isolated from boesenbergia rotunda rhizomes involves mitochondrial pathway, activation of caspase 3 and G2/M phase cell cycle arrest Ng, Kuan Beng Bustamam, Ahmad Sukari, Mohd Aspollah Abdelwahab, Siddig Ibrahim Mohan, Syam Buckle, Michael James Christopher Kamalidehghan, Behnam Muhammad Nadzri, Nabilah Anasamy, Theebaa A. Hadi, A. Hamid Rahman, Heshu Sulaiman Background Boesenbergia rotunda (Roxb.) Schlecht (family zingiberaceae) is a rhizomatous herb that is distributed from north-eastern India to south-east Asia, especially in Indonesia, Thailand and Malaysia. Previous research has shown that the crude extract of this plant has cytotoxic properties. The current study examines the cytotoxic properties of boesenbergin A isolated from Boesenbergia rotunda. Methods MTT assay was used to check the cytotoxicity of boesenbergin A. The morphological assessment of apoptosis was monitored using normal and fluorescence microscopy. The early and late phase of apoptosis was investigated using annexin V and DNA laddering assays, respectively. The mitochondrial membrane potential (MMP) was assessed by fluorescence microscopy. Human apoptosis proteome profiler assays were performed to investigate the mechanism of cell death. In addition, the protein levels of Bax, Bcl2 and HSP 70 were also analyzed using western blot. Assays of caspase =-3/7, -8 and =-9 were carried out in order to test for induction during treatment. Lastly, cell cycle progression was analyzed using flow cytometry. Results Boesenbergin A was found to have the highest toxicity towards CEMss cancer cells (IC50 = 8 μg/ml). The morphology of CEMss cells after treatment showed evidence of apoptosis that included blebbing and chromatin condensation. The annexin V assay revealed that early apoptosis is induced after treatment. The DNA laddering assay confirmed that DNA fragmentation had occurred during late apoptosis. The cell cycle analysis indicated that boesenbergin A was able to induce G2/M phase arrest in CEMss cells. The activity of caspases -3/7, -8 and -9 was increased after treatment which indicates both intrinsic and extrinsic pathways are induced during apoptosis. The involvement of mitochondria was established by increased mitochondrial membrane potential and up and down regulation of Bcl2 and Bax proteins as well as HSP70. Conclusion In conclusion, the results demonstrated that boesenbergin A induced apoptosis of CEMss cells through Bcl2/Bax signaling pathways with the involvement of caspases and G2/M phase cell cycle arrest. The current findings warrant further research on boesenbergin A as a novel chemotherapeutic agent for leukemia intervention including studies in animal models. BioMed Central 2013-02 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/30027/1/Induction%20of%20selective%20cytotoxicity%20and%20apoptosis%20in%20human%20.pdf Ng, Kuan Beng and Bustamam, Ahmad and Sukari, Mohd Aspollah and Abdelwahab, Siddig Ibrahim and Mohan, Syam and Buckle, Michael James Christopher and Kamalidehghan, Behnam and Muhammad Nadzri, Nabilah and Anasamy, Theebaa and A. Hadi, A. Hamid and Rahman, Heshu Sulaiman (2013) Induction of selective cytotoxicity and apoptosis in human T4-lymphoblastoid cell line (CEMss) by boesenbergin a isolated from boesenbergia rotunda rhizomes involves mitochondrial pathway, activation of caspase 3 and G2/M phase cell cycle arrest. BMC Complementary and Alternative Medicine, 13 (41). pp. 1-15. ISSN 1472-6882 http://www.biomedcentral.com/bmccomplementalternmed/content/13/February/2013 10.1186/1472-6882-13-41 English
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
English
description Background Boesenbergia rotunda (Roxb.) Schlecht (family zingiberaceae) is a rhizomatous herb that is distributed from north-eastern India to south-east Asia, especially in Indonesia, Thailand and Malaysia. Previous research has shown that the crude extract of this plant has cytotoxic properties. The current study examines the cytotoxic properties of boesenbergin A isolated from Boesenbergia rotunda. Methods MTT assay was used to check the cytotoxicity of boesenbergin A. The morphological assessment of apoptosis was monitored using normal and fluorescence microscopy. The early and late phase of apoptosis was investigated using annexin V and DNA laddering assays, respectively. The mitochondrial membrane potential (MMP) was assessed by fluorescence microscopy. Human apoptosis proteome profiler assays were performed to investigate the mechanism of cell death. In addition, the protein levels of Bax, Bcl2 and HSP 70 were also analyzed using western blot. Assays of caspase =-3/7, -8 and =-9 were carried out in order to test for induction during treatment. Lastly, cell cycle progression was analyzed using flow cytometry. Results Boesenbergin A was found to have the highest toxicity towards CEMss cancer cells (IC50 = 8 μg/ml). The morphology of CEMss cells after treatment showed evidence of apoptosis that included blebbing and chromatin condensation. The annexin V assay revealed that early apoptosis is induced after treatment. The DNA laddering assay confirmed that DNA fragmentation had occurred during late apoptosis. The cell cycle analysis indicated that boesenbergin A was able to induce G2/M phase arrest in CEMss cells. The activity of caspases -3/7, -8 and -9 was increased after treatment which indicates both intrinsic and extrinsic pathways are induced during apoptosis. The involvement of mitochondria was established by increased mitochondrial membrane potential and up and down regulation of Bcl2 and Bax proteins as well as HSP70. Conclusion In conclusion, the results demonstrated that boesenbergin A induced apoptosis of CEMss cells through Bcl2/Bax signaling pathways with the involvement of caspases and G2/M phase cell cycle arrest. The current findings warrant further research on boesenbergin A as a novel chemotherapeutic agent for leukemia intervention including studies in animal models.
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author Ng, Kuan Beng
Bustamam, Ahmad
Sukari, Mohd Aspollah
Abdelwahab, Siddig Ibrahim
Mohan, Syam
Buckle, Michael James Christopher
Kamalidehghan, Behnam
Muhammad Nadzri, Nabilah
Anasamy, Theebaa
A. Hadi, A. Hamid
Rahman, Heshu Sulaiman
spellingShingle Ng, Kuan Beng
Bustamam, Ahmad
Sukari, Mohd Aspollah
Abdelwahab, Siddig Ibrahim
Mohan, Syam
Buckle, Michael James Christopher
Kamalidehghan, Behnam
Muhammad Nadzri, Nabilah
Anasamy, Theebaa
A. Hadi, A. Hamid
Rahman, Heshu Sulaiman
Induction of selective cytotoxicity and apoptosis in human T4-lymphoblastoid cell line (CEMss) by boesenbergin a isolated from boesenbergia rotunda rhizomes involves mitochondrial pathway, activation of caspase 3 and G2/M phase cell cycle arrest
author_facet Ng, Kuan Beng
Bustamam, Ahmad
Sukari, Mohd Aspollah
Abdelwahab, Siddig Ibrahim
Mohan, Syam
Buckle, Michael James Christopher
Kamalidehghan, Behnam
Muhammad Nadzri, Nabilah
Anasamy, Theebaa
A. Hadi, A. Hamid
Rahman, Heshu Sulaiman
author_sort Ng, Kuan Beng
title Induction of selective cytotoxicity and apoptosis in human T4-lymphoblastoid cell line (CEMss) by boesenbergin a isolated from boesenbergia rotunda rhizomes involves mitochondrial pathway, activation of caspase 3 and G2/M phase cell cycle arrest
title_short Induction of selective cytotoxicity and apoptosis in human T4-lymphoblastoid cell line (CEMss) by boesenbergin a isolated from boesenbergia rotunda rhizomes involves mitochondrial pathway, activation of caspase 3 and G2/M phase cell cycle arrest
title_full Induction of selective cytotoxicity and apoptosis in human T4-lymphoblastoid cell line (CEMss) by boesenbergin a isolated from boesenbergia rotunda rhizomes involves mitochondrial pathway, activation of caspase 3 and G2/M phase cell cycle arrest
title_fullStr Induction of selective cytotoxicity and apoptosis in human T4-lymphoblastoid cell line (CEMss) by boesenbergin a isolated from boesenbergia rotunda rhizomes involves mitochondrial pathway, activation of caspase 3 and G2/M phase cell cycle arrest
title_full_unstemmed Induction of selective cytotoxicity and apoptosis in human T4-lymphoblastoid cell line (CEMss) by boesenbergin a isolated from boesenbergia rotunda rhizomes involves mitochondrial pathway, activation of caspase 3 and G2/M phase cell cycle arrest
title_sort induction of selective cytotoxicity and apoptosis in human t4-lymphoblastoid cell line (cemss) by boesenbergin a isolated from boesenbergia rotunda rhizomes involves mitochondrial pathway, activation of caspase 3 and g2/m phase cell cycle arrest
publisher BioMed Central
publishDate 2013
url http://psasir.upm.edu.my/id/eprint/30027/1/Induction%20of%20selective%20cytotoxicity%20and%20apoptosis%20in%20human%20.pdf
http://psasir.upm.edu.my/id/eprint/30027/
http://www.biomedcentral.com/bmccomplementalternmed/content/13/February/2013
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score 13.160551