Synergistic Effects of NDRG2 Overexpression and Radiotherapy on Cell Death of Human Prostate LNCaP Cells

Background: Radiation therapy is among the most conventional cancer therapeutic modalities with effective local tumor control. However, due to the development of radio-resistance, tumor recurrence and metastasis often occur following radiation therapy. In recent years, combination of radiotherapy an...

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Main Authors: Alizadeh Zarei M., Takhshid M. A., Behzad Behbahani A., Hosseini S. Y., Okhovat M. A., Rafiee Dehbidi Gh. R., Mosleh Shirazi M. A.
Format: Article
Language:English
Published: Shiraz University of Medical Sciences 2017-09-01
Series:Journal of Biomedical Physics and Engineering
Subjects:
Online Access:http://www.jbpe.org/Journal_OJS/JBPE/index.php/jbpe/article/view/601/324
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spelling doaj-b1e11274eb244332b74867d0759a386d2020-11-25T00:16:03ZengShiraz University of Medical SciencesJournal of Biomedical Physics and Engineering2251-72002251-72002017-09-0173257264Synergistic Effects of NDRG2 Overexpression and Radiotherapy on Cell Death of Human Prostate LNCaP CellsAlizadeh Zarei M.0Takhshid M. A.1Behzad Behbahani A.2Hosseini S. Y.3 Okhovat M. A.4Rafiee Dehbidi Gh. R.5Mosleh Shirazi M. A.6Diagnostic Laboratory Sciences and Technology Research Center, Shiraz University of Medical Sciences, Shiraz, Iran Diagnostic Laboratory Sciences and Technology Research Center, Shiraz University of Medical Sciences, Shiraz, Iran Diagnostic Laboratory Sciences and Technology Research Center, Shiraz University of Medical Sciences, Shiraz, Iran Bacteriology and Virology Department, Shiraz University of Medical Sciences, Shiraz, Iran Diagnostic Laboratory Sciences and Technology Research Center, Shiraz University of Medical Sciences, Shiraz, Iran Diagnostic Laboratory Sciences and Technology Research Center, Shiraz University of Medical Sciences, Shiraz, Iran Ionizing and Nonionizing Radiation Protection Research Center, Shiraz University of Medical Sciences, Shiraz, Iran | Department of Radiotherapy and Oncology, Shiraz University of Medical Sciences, Shiraz, IranBackground: Radiation therapy is among the most conventional cancer therapeutic modalities with effective local tumor control. However, due to the development of radio-resistance, tumor recurrence and metastasis often occur following radiation therapy. In recent years, combination of radiotherapy and gene therapy has been suggested to overcome this problem. The aim of the current study was to explore the potential synergistic effects of N-Myc Downstream-Regulated Gene 2 (NDRG2) overexpression, a newly identified candidate tumor suppressor gene, with radiotherapy against proliferation of prostate LNCaP cell line. Materials and Methods: In this study, LNCaP cells were exposed to X-ray radiation in the presence or absence of NDRG2 overexpression using plasmid PSES- pAdenoVator-PSA-NDRG2-IRES-GFP. The effects of NDRG2 overexpression, X-ray radiation or combination of both on the cell proliferation and apoptosis of LNCaP cells were then analyzed using MTT assay and flow cytometery, respectively. Results: Results of MTT assay showed that NDRG2 overexpression and X-ray radiation had a synergistic effect against proliferation of LNCaP cells. Moreover, NDRG2 overexpression increased apoptotic effect of X-ray radiation in LNCaP cells synergistically. Conclusion: Our findings suggested that NDRG2 overexpression in combination with radiotherapy may be an effective therapeutic option against prostate cancer. http://www.jbpe.org/Journal_OJS/JBPE/index.php/jbpe/article/view/601/324Gene TherapyRadiation TherapyProstate CancerN-Myc Downstream-Regulated Gene 2
collection DOAJ
language English
format Article
sources DOAJ
author Alizadeh Zarei M.
Takhshid M. A.
Behzad Behbahani A.
Hosseini S. Y.
Okhovat M. A.
Rafiee Dehbidi Gh. R.
Mosleh Shirazi M. A.
spellingShingle Alizadeh Zarei M.
Takhshid M. A.
Behzad Behbahani A.
Hosseini S. Y.
Okhovat M. A.
Rafiee Dehbidi Gh. R.
Mosleh Shirazi M. A.
Synergistic Effects of NDRG2 Overexpression and Radiotherapy on Cell Death of Human Prostate LNCaP Cells
Journal of Biomedical Physics and Engineering
Gene Therapy
Radiation Therapy
Prostate Cancer
N-Myc Downstream-Regulated Gene 2
author_facet Alizadeh Zarei M.
Takhshid M. A.
Behzad Behbahani A.
Hosseini S. Y.
Okhovat M. A.
Rafiee Dehbidi Gh. R.
Mosleh Shirazi M. A.
author_sort Alizadeh Zarei M.
title Synergistic Effects of NDRG2 Overexpression and Radiotherapy on Cell Death of Human Prostate LNCaP Cells
title_short Synergistic Effects of NDRG2 Overexpression and Radiotherapy on Cell Death of Human Prostate LNCaP Cells
title_full Synergistic Effects of NDRG2 Overexpression and Radiotherapy on Cell Death of Human Prostate LNCaP Cells
title_fullStr Synergistic Effects of NDRG2 Overexpression and Radiotherapy on Cell Death of Human Prostate LNCaP Cells
title_full_unstemmed Synergistic Effects of NDRG2 Overexpression and Radiotherapy on Cell Death of Human Prostate LNCaP Cells
title_sort synergistic effects of ndrg2 overexpression and radiotherapy on cell death of human prostate lncap cells
publisher Shiraz University of Medical Sciences
series Journal of Biomedical Physics and Engineering
issn 2251-7200
2251-7200
publishDate 2017-09-01
description Background: Radiation therapy is among the most conventional cancer therapeutic modalities with effective local tumor control. However, due to the development of radio-resistance, tumor recurrence and metastasis often occur following radiation therapy. In recent years, combination of radiotherapy and gene therapy has been suggested to overcome this problem. The aim of the current study was to explore the potential synergistic effects of N-Myc Downstream-Regulated Gene 2 (NDRG2) overexpression, a newly identified candidate tumor suppressor gene, with radiotherapy against proliferation of prostate LNCaP cell line. Materials and Methods: In this study, LNCaP cells were exposed to X-ray radiation in the presence or absence of NDRG2 overexpression using plasmid PSES- pAdenoVator-PSA-NDRG2-IRES-GFP. The effects of NDRG2 overexpression, X-ray radiation or combination of both on the cell proliferation and apoptosis of LNCaP cells were then analyzed using MTT assay and flow cytometery, respectively. Results: Results of MTT assay showed that NDRG2 overexpression and X-ray radiation had a synergistic effect against proliferation of LNCaP cells. Moreover, NDRG2 overexpression increased apoptotic effect of X-ray radiation in LNCaP cells synergistically. Conclusion: Our findings suggested that NDRG2 overexpression in combination with radiotherapy may be an effective therapeutic option against prostate cancer.
topic Gene Therapy
Radiation Therapy
Prostate Cancer
N-Myc Downstream-Regulated Gene 2
url http://www.jbpe.org/Journal_OJS/JBPE/index.php/jbpe/article/view/601/324
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