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人淋巴细胞中γ-H2AX 焦点的定量:电离辐射暴露后生物剂量测定的一种方法。

Quantification of gamma-H2AX foci in human lymphocytes: a method for biological dosimetry after ionizing radiation exposure.

机构信息

Institut de Radioprotection et de Sûreté Nucléaire, 92262 Fontenay-aux-Roses, France.

出版信息

Radiat Res. 2010 Aug;174(2):185-94. doi: 10.1667/RR1775.1.

Abstract

Recent studies have suggested that visualization of gamma-H2AX nuclear foci can be used to estimate exposure to very low doses of ionizing radiation. Although this approach is widely used for various purposes, its suitability for individual human biodosimetry has not yet been assessed. We therefore conducted such an assessment with the help of available software for observing and automatically scoring gamma-H2AX foci. The presence of gamma-H2AX foci was evaluated in human peripheral blood lymphocytes exposed ex vivo to gamma rays in a dose range of 0.02 to 2 Gy. We analyzed the response of gamma-H2AX to ionizing radiation in relation to dose, time after exposure, and individual variability. We constructed dose-effect calibration curves at 0.5, 8 and 16 h after exposure and evaluated the threshold of detection of the technique. The results show the promise of automatic gamma-H2AX scoring for a reliable assessment of radiation doses in a dose range of 0.6 Gy to 2 Gy up to 16 h after exposure. This gamma-H2AX-based assay may be useful for biodosimetry, especially for triage to distinguish promptly among individuals the ones who have received negligible doses from those with significantly exposures who are in need of immediate medical attention. However, additional in vivo experiments are needed for validation.

摘要

最近的研究表明,γ-H2AX 核焦点的可视化可用于估计极低剂量电离辐射的暴露。尽管这种方法被广泛用于各种目的,但尚未评估其对个体人类生物剂量测定的适用性。因此,我们借助现有的观察和自动评分 γ-H2AX 焦点的软件进行了这样的评估。评估了体外暴露于 γ 射线的人类外周血淋巴细胞中 γ-H2AX 焦点的存在,γ 射线剂量范围为 0.02 至 2 Gy。我们分析了 γ-H2AX 对电离辐射的反应与剂量、暴露后时间和个体变异性的关系。我们在暴露后 0.5、8 和 16 小时构建了剂量效应校准曲线,并评估了该技术的检测阈值。结果表明,自动 γ-H2AX 评分在 0.6 至 2 Gy 的剂量范围内具有很大的应用潜力,在暴露后 16 小时内可用于可靠评估辐射剂量。基于 γ-H2AX 的测定法可能对生物剂量测定有用,特别是用于分类,以便迅速区分接受可忽略剂量的个体与需要立即医疗关注的显著暴露个体。然而,还需要进行额外的体内实验来验证。

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