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一名放射工作人员意外暴露的细胞遗传学生物剂量测定:采用多种检测方法

Cytogenetic biodosimetry of an accidental exposure of a radiological worker using multiple assays.

作者信息

Thierens H, De Ruyck K, Vral A, de Gelder V, Whitehouse C A, Tawn E J, Boesman I

机构信息

Department of Anatomy, Embryology, Histology and Medical Physics, University Ghent, Proeftuinstraat 86, B-9000 Gent, Belgium.

出版信息

Radiat Prot Dosimetry. 2005;113(4):408-14. doi: 10.1093/rpd/nch483. Epub 2005 Mar 29.

Abstract

A technician involved in the maintenance of X-ray equipment visited the occupational medicine service with complaints of skin lesions, apparently caused by an accidental exposure three months earlier. To estimate the dose received by the technician in the accident, biodosimetry was performed 6 and 18 months post-exposure with the dicentric and micronucleus assays. Part of the latest blood sample was also used for retrospective dosimetry by fluorescence in situ hybridisation (FISH) analysis for translocations. The data obtained 6 and 18 months post-exposure indicate that both dicentrics and micronuclei disappear with a half-time of 1 y. After correction for delayed blood sampling, dose values of 0.75 Gy (95% confidence limits 0.56-1.05 Gy) from dicentrics and 0.96 Gy (95% confidence limits 0.79-1.18 Gy) from micronuclei were obtained. FISH analysis of translocations resulted in a dose estimate of 0.79 Gy (95% confidence limits 0.61-0.99 Gy). The satisfactory agreement between the three cytogenetic endpoints supports the use of the micronucleus assay for triage purposes in the case of large scale radiological accidents and provides further evidence for the valid use of FISH for translocations as a reliable retrospective biological dosimeter.

摘要

一名参与X射线设备维护的技术人员前往职业医学服务部门就诊,主诉皮肤损伤,显然是三个月前一次意外照射所致。为估算该技术人员在事故中接受的剂量,在照射后6个月和18个月分别采用双着丝粒体和微核试验进行生物剂量测定。最新血液样本的一部分还用于通过荧光原位杂交(FISH)分析易位情况进行回顾性剂量测定。照射后6个月和18个月获得的数据表明,双着丝粒体和微核均以1年的半衰期消失。校正延迟采血后,双着丝粒体测定的剂量值为0.75 Gy(95%置信限0.56 - 1.05 Gy),微核测定的剂量值为0.96 Gy(95%置信限0.79 - 1.18 Gy)。FISH分析易位情况得出的剂量估计值为0.79 Gy(95%置信限0.61 - 0.99 Gy)。三个细胞遗传学终点之间令人满意的一致性支持在大规模放射性事故情况下将微核试验用于分类目的,并为将FISH分析易位情况作为可靠的回顾性生物剂量计有效使用提供了进一步证据。

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