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Pre-irradiation with low-dose ~(12)C~(6+) beam significantly enhances the efficacy of AdCMV-p53 gene therapy in human non-small lung cancer
作者姓名:LIU Bing    ZHANG Hong  LI WenJian  LI Qiang  ZHOU GuangMing  XIE Yi    HAO JiFang  MIN FengLing    ZHOU QingMing  & DUAN Xin  Institute of Modern Physics  Chinese Academy of Sciences  Lanzhou  China  Graduate University of Chinese Academy of Sciences  Beijing  China
作者单位:LIU Bing1,2,ZHANG Hong1,LI WenJian1,LI Qiang1,ZHOU GuangMing1,XIE Yi1,2,HAO JiFang1,MIN FengLing1,2,ZHOU QingMing1,2 & DUAN Xin1,21 Institute of Modern Physics,Chinese Academy of Sciences,Lanzhou 730000,China;2 Graduate University of Chinese Academy of Sciences,Beijing 100039,China
摘    要:The combination of ionizing radiation and gene therapy has been investigated. However, there are very few reports about the combination of heavy-ion irradiation and gene therapy. To determine if the pre-exposure to low-dose heavy ion beam enhances the suppression of AdCMV-p53 on non-small lung cancer (NSLC), the cells pre-irradiated or non-irradiated were infected with 20, 40 MOI of AdCMV-p53. Survival fraction and the relative biology effect (RBE) were determined by clonogenic assay. The results showed that the proportions of p53 positive cells in 12C6+ beam induced AdCMV-p53 infected cells were more than 90%, which were signifi-cantly more than those in γ-ray induced AdCMV-p53 infected cells. The pre-exposure to low-dose 12C6+ beam significantly prevented the G0/G1 arrest and activated G2/M checkpoints. The pre-exposure to 12C6+ beam significantly improved cell to apoptosis. RBEs for the 12C6+ + AdCMV-p53 infection groups were 30%-60%, 20%-130% and 30%-70% more than those for the 12C6+-irradiated only, AdCMV-p53 infected only, and γ-irradiation induced AdCMVp53 infected groups, respectively. The data suggested that the pre-exposure to low-dose 12C6+ beam significantly promotes exogenous p53 expression in NSLC, and the suppression of AdCMV-p53 gene therapy on NSLC.


Pre-irradiation with low-dose ~(12)C~(6+)beam significantly enhances the efficacy of AdCMV-p53 gene therapy in human non-small lung cancer
LIU Bing,,ZHANG Hong,LI WenJian,LI Qiang,ZHOU GuangMing,XIE Yi,,HAO JiFang,MIN FengLing,,ZHOU QingMing, & DUAN Xin, Institute of Modern Physics,Chinese Academy of Sciences,Lanzhou ,China, Graduate University of Chinese Academy of Sciences,Beijing ,China.Pre-irradiation with low-dose ~(12)C~(6+) beam significantly enhances the efficacy of AdCMV-p53 gene therapy in human non-small lung cancer[J].Science in China(Physics Astronomy),2007,50(2).
Authors:LIU Bing  ZHANG Hong  LI WenJian  LI Qiang  ZHOU GuangMing  XIE Yi  HAO JiFang  MIN FengLing  ZHOU QingMing  DUAN Xin
Institution:1. Institute of Modern Physics,Chinese Academy of Sciences,Lanzhou 730000,China;Graduate University of Chinese Academy of Sciences,Beijing 100039,China
2. Institute of Modern Physics,Chinese Academy of Sciences,Lanzhou 730000,China
Abstract:The combination of ionizing radiation and gene therapy has been investigated. However, there are very few reports about the combination of heavy-ion irradiation and gene therapy. To determine if the pre-exposure to low-dose heavy ion beam enhances the suppression of AdCMV-p53 on non-small lung cancer (NSLC), the cells pre-irradiated or non-irradiated were infected with 20, 40 MOl of AdCMV-p53. Survival fraction and the relative biology effect (RBE) were determined by clonogenic assay. The results showed that the proportions of p53 positive cells in 12C6+ beam induced AdCMV-p53 infected cells were more than 90%, which were significantly more than those in γ-ray induced AdCMV-p53 infected cells. The pre-exposure to low-dose 12C6+ beam significantly prevented the G0/G1 arrest and activated G2/M checkpoints. The pre-exposure to 12C6+ beam significantly improved cell to apoptosis. RBEs for the 12C6+ + AdCMV-p53 infection groups were 30%-60%, 20% -130% and 30%-70% more than those for the 12C6+-irradiated only, AdCMV-p53 infected only, and γ-irradiation induced AdCMVp53 infected groups, respectively. The data suggested that the pre-exposure to low-dose 12C6+ beam significantly promotes exogenous p53 expression in NSLC, and the suppression of AdCMV-p53 gene therapy on NSLC.
Keywords:heavy-ion beam  gene therapy  p53  non-small lung cancer  adenoviral vector  low dose
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