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剂量率对体外暴露于γ辐射的人G0淋巴细胞中HPRT突变体诱导的影响。

Dose-rate effect on the induction of HPRT mutants in human G0 lymphocytes exposed in vitro to gamma radiation.

作者信息

Kumar P R Vivek, Mohankumar Mary N, Hamza V Zareena, Jeevanram R K

机构信息

Radiological Safety Division, Indira Gandhi Centre for Atomic Research, Kalpakkam-603 102, Tamilnadu, India.

出版信息

Radiat Res. 2006 Jan;165(1):43-50. doi: 10.1667/rr-3467.1.

Abstract

The influence of dose rate on expression time, cell survival and mutant frequency at the hypoxanthine-guanine phosphoribosyltransferase (HPRT) locus was evaluated in human G(0) peripheral blood lymphocytes exposed in vitro to gamma rays at low (0.0014 Gy/min) and high (0.85 Gy/min) dose rates. A cloning assay performed on different days of postirradiation incubation indicated an 8-day maximum expression period for the induction of HPRT mutants at both high and low dose rates. Cell survival increased markedly with decreasing dose rate, yielding D(0) values of 3.04 Gy and 1.3 Gy at low and high dose rates, respectively. The D(0) of 3.04 Gy obtained at low dose rate could be attributed to the repair of sublethal DNA damage taking place during prolonged exposure to low-LET radiation. Regression analysis of the mutant frequency yielded slopes of 12.35 x 10(-6) and 3.66 x 10(-6) mutants per gray at high and low dose rate, respectively. A dose and dose-rate effectiveness factor of 3.4 indicated a marked dose-rate effect on the induced HPRT mutant frequency. The results indicate that information obtained from in vitro measurements of dose-rate effects in human G(0) lymphocytes may be a useful parameter for risk estimation in radiation protection.

摘要

在体外将人G(0)外周血淋巴细胞暴露于低剂量率(0.0014 Gy/分钟)和高剂量率(0.85 Gy/分钟)的γ射线,评估剂量率对次黄嘌呤 - 鸟嘌呤磷酸核糖转移酶(HPRT)基因座的表达时间、细胞存活和突变频率的影响。在照射后培养的不同天数进行的克隆试验表明,高剂量率和低剂量率下诱导HPRT突变体的最长表达期均为8天。细胞存活随着剂量率的降低而显著增加,低剂量率和高剂量率下的D(0)值分别为3.04 Gy和1.3 Gy。低剂量率下获得的3.04 Gy的D(0)可归因于在长时间暴露于低LET辐射期间发生的亚致死性DNA损伤的修复。突变频率的回归分析得出,高剂量率和低剂量率下每格雷的斜率分别为12.35×10(-6)和3.66×10(-6)个突变体。3.4的剂量和剂量率有效性因子表明剂量率对诱导的HPRT突变频率有显著影响。结果表明,从体外测量人G(0)淋巴细胞剂量率效应获得的信息可能是辐射防护中风险估计的有用参数。

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