薛文成,王宝勤,苑宾,等.肿瘤细胞对p(35)Be快中子的辐射敏感性研究[J].中华放射医学与防护杂志,2001,21(1):16-18.XUE Wencheng,WANG Baoqin,YUAN Bin,et al.The radiosensitivities of 4 human tumor cell lines to p(35)Be neutron irradiation[J].Chin J Radiol Med Prot,2001,21(1):16-18
肿瘤细胞对p(35)Be快中子的辐射敏感性研究
The radiosensitivities of 4 human tumor cell lines to p(35)Be neutron irradiation
投稿时间:1999-11-12  
DOI:
中文关键词:  辐射敏感性  肿瘤细胞  快中子  DNA损伤  彗星电泳
英文关键词:Radiosensitivity  Tumor cells  Neutron irradiation  DNA damage  Comet assay
基金项目:国家攀登计划(B)基金资助项目(8545011)
作者单位
薛文成 110015 沈阳, 沈阳军区总医院检验科 
王宝勤 北京放射医学研究所 
苑宾 北京放射医学研究所 
唐锦华 中国科学院高能物理研究所 
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中文摘要:
      目的比较肿瘤细胞对p(35)Be快中子及γ射线的辐射敏感性,为肿瘤的快中子治疗提供理论依据。方法用细胞集落存活方法研究人黑色素瘤细胞(WM9839)、人口腔上皮癌细胞(KB)、人结肠腺癌细胞(LS-T-117)和人前列腺癌细胞(PC3M)等4种细胞对快中子及γ射线的辐射敏感性,用彗星电泳技术研究WM9839细胞在快中子及γ射线照射后DNA损伤的修复效应。结果细胞存活实验表明,p(35)Be快中子照射后4种肿瘤细胞的D0值(或SF2值)较γ射线照射后差异减小,即4种肿瘤细胞对快中子的辐射敏感性差异减小;快中子2Gy照射后,WM9839细胞DNA损伤修复曲线整体上下降较γ射线2Gy照射后慢,到180min时,DNA损伤残留率明显高于γ射线2Gy照射。结论快中子治疗肿瘤可以很好地弥补低LET射线放射治疗的不足,特别是对低LET射线较为耐受的肿瘤细胞,如KB细胞和WM9839细胞。
英文摘要:
      Objective The difference of radiosensitivity of 4 human tumor cell lines to p(35)Be fast neutron and gamma ray was studied in order to provide basis for clinical therapy of tumors. Methods The radiosensitivity of these cell lines after p(35)Be neutron or gamma ray irradiation was assayed with cell colonogenic survival assay.And the gamma ray-and p(35)Be neutron-induced DNA damage and its repair in human melanoma cell line WM9839 was studied by using the method of comet-electrophoresis assay. Results The difference of D0(or SF2) after p(35)Be neutron irradiation between these 4 human tumor cell lines was smaller than that after gamma ray irradiation.The repair rate of DNA damage in WM9839 cells after 2 Gy fast-neutron irradiation was lower than that after 2 Gy γ-ray irradiation.The residual DNA damage at 180 min after neutron-irradiation was obviously severer than that after 2 Gy γ-ray irradiation. Conclusion The fast neutron therapy may make up the defect of the low LET ray therapy,especially to those radioresistant tumor cells to low LET rays.
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