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γ射线对肝癌细胞G2染色体的原初损伤
引用本文:王转子,李文建,杨建设,周利斌,魏巍,毛淑红.γ射线对肝癌细胞G2染色体的原初损伤[J].原子核物理评论,2006,23(1):43-45.
作者姓名:王转子  李文建  杨建设  周利斌  魏巍  毛淑红
作者单位:[1]中国科学院近代物理研究所,甘肃兰州730000 [2]中国科学院研究生院,北京100049
基金项目:中国科学院资助项目;国家重点基础研究发展计划(973计划)
摘    要:用Calyculin—A诱导的早熟染色体凝集技术研究了γ射线诱导人肝癌细胞株HepG2细胞G2期染色体的原初损伤。结果表明:G2等点染色单体断裂畸变与辐射剂量呈线性平方关系,G2染色单体断裂畸变和G2期染色单体断裂畸变总数与辐射剂量呈线性正相关关系,发生各类断裂畸变的细胞率与剂量也呈线性正相关关系。γ射线诱发的断裂畸变主要是G2染色单体断裂畸变,断裂畸变的细胞主要是发生G2染色单体断裂畸变。A chemically induced premature chromosome condensation technique with Calyculin-A has been employed to estimate the initial chromosome damage in HepG2 condensed in G2 phase and the percentage of aberrant cells after exposure to γ-rays. The results show that the dose-response for iso-chromatid breaks is linear-quadratic manner, while chromatid-type breaks and total chromatid breaks show a positive linear dose-response. The percent tages of all kinds of aberrant cells are increasing linearly with increasing doses. G2 chromatid-type breaks and the percentage of G2 chromatid-type aberrant cells are predominate in G2 total chromatid breaks induced b y γ-rays.

关 键 词:早熟染色体凝集技术    HepG2细胞    γ射线    G2染色单体断裂畸变断裂畸变细胞率
文章编号:1007-4627(2006)01-0043-03
收稿时间:2005-09-05
修稿时间:2005-09-052005-11-08

Initial Damage of G2-chromosome in Hepatoma Cells Induced by γ-rays
WANG Zhuan-zi,LI Wen-jian,YANG Jian-she,ZHOU Li-bin,WEI Wei,MAO Shu-hong.Initial Damage of G2-chromosome in Hepatoma Cells Induced by γ-rays[J].Nuclear Physics Review,2006,23(1):43-45.
Authors:WANG Zhuan-zi  LI Wen-jian  YANG Jian-she  ZHOU Li-bin  WEI Wei  MAO Shu-hong
Institution:1. Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, China; 2 .Graduate School of Chinese Academy of Sciences, Beijing 100049, China
Abstract:A chemically induced premature chromosome condensation technique with Calyculin-A has been employed to estimate the initial chromosome damage in HepG2 condensed in G2 phase and the percentage of aberrant cells after exposure to γ-rays. The results show that the dose-response for iso-chromatid breaks is linear-quadratic manner, while chromatid-type breaks and total chromatid breaks show a positive linear dose-response. The percent tages of all kinds of aberrant cells are increasing linearly with increasing doses. G2 chromatid-type breaks and the percentage of G2 chromatid-type aberrant cells are predominate in G2 total chromatid breaks induced b y γ-rays.
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