Protective role of Hsp27 protein against γ radiation-induced apoptosis and radiosensitization effects of Hsp27 gene silencing in different human tumor cells
被引:79
作者:
Aloy, Marie-Therese
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Univ Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, France
Ctr Hosp Lyon Sud, Serv Radiotherapie, Hosp Civil Lyon, F-69310 Pierre Benite, FranceUniv Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, France
Aloy, Marie-Therese
[1
,2
]
Hadchity, Elie
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Univ Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, FranceUniv Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, France
Hadchity, Elie
[1
]
Bionda, Clara
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Univ Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, FranceUniv Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, France
Bionda, Clara
[1
]
Diaz-Latoud, Chantal
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Univ Lyon 1, UMR CNRS 5534, Ctr Genet Mol & Cellulaire, Villeurbanne, FranceUniv Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, France
Diaz-Latoud, Chantal
[3
]
Claude, Line
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Univ Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, FranceUniv Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, France
Claude, Line
[1
]
Rousson, Robert
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Univ Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, FranceUniv Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, France
Rousson, Robert
[1
]
Arrigo, Andre-Patrick
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Univ Lyon 1, UMR CNRS 5534, Ctr Genet Mol & Cellulaire, Villeurbanne, FranceUniv Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, France
Arrigo, Andre-Patrick
[3
]
Rodriguez-Lafrasse, Claire
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Univ Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, FranceUniv Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, France
Rodriguez-Lafrasse, Claire
[1
]
机构:
[1] Univ Lyon 1, Lab Radiobiol Cellulaire & Mol, Fac Med Lyon Sud, Oullins, France
[2] Ctr Hosp Lyon Sud, Serv Radiotherapie, Hosp Civil Lyon, F-69310 Pierre Benite, France
[3] Univ Lyon 1, UMR CNRS 5534, Ctr Genet Mol & Cellulaire, Villeurbanne, France
来源:
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS
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2008年
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70卷
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02期
Purpose: The ability of heat shock protein 27 (Hsp27) to protect cells from stressful stimuli and its increased levels in tumors resistant to anticancer therapeutics suggest that it may represent a target for sensitization to radiotherapy. In this study, we investigate the protective role of Hsp27 against radiation-induced apoptosis and the effect of its attenuation in highly expressing radioresistant cancer cell lines. Methods and Materials: We examined clonogenic death and the kinetics of apoptotic events in different tumor cell lines overexpressing or underexpressing Hsp27 protein irradiated with photons. The radiosensitive Jurkat cell line, which does not express Hsp27 constitutively or in response to gamma-rays, was stably transfected with Hsp27 complementary DNA. Attenuation of Hsp27 expression was accomplished by antisense or RNAi (interfering RNA) strategies in SQ20B head-and-neck squamous carcinoma, PC3 prostate cancer, and U87 glioblastoma radioresistant cells. Results: We measured concentration-dependent protection against the cytotoxic effects of radiation in Jurkat-Hsp27 cells, which led to a 50% decrease in apoptotic cells at 48 hours in the highest expressing cells. Underlying mechanisms leading to radiation resistance involved a significant increase in glutathione levels associated with detoxification of reactive oxygen species, a delay in mitochondrial collapse, and caspase activation. Conversely, attenuation of Hsp27 in SQ20B cells, characterized by their resistance to apoptosis, sensitizes cells to irradiation. This was emphasized by increased apoptosis, decreased glutathione basal level, and clonogenic cell death. Sensitization to irradiation was confirmed in PC3 and U87 radioresistant cells. Conclusion: Hsp27 gene therapy offers a potential adjuvant to radiation-based therapy of resistant tumors. (C) 2008 Elsevier Inc.