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用于批量伤亡事故中剂量评估的早熟染色体凝聚(PCC)检测。

Premature chromosome condensation (PCC) assay for dose assessment in mass casualty accidents.

机构信息

Radiation and Nuclear Safety Authority, STUK, Helsinki, Finland.

出版信息

Radiat Res. 2010 Jan;173(1):71-8. doi: 10.1667/RR1843.1.

Abstract

The study was undertaken to establish a dose calibration curve for a practical PCC ring assay and to apply it in a simulated mass casualty accident. The PCC assay was validated against the conventional dicentric assay. A linear relationship was established for PCC rings after (60)Co gamma irradiation with doses up to 20 Gy. In the simulated accident experiment, 62 blood samples were analyzed with both the PCC ring assay and the conventional dicentric assay, applying a triage approach. Samples received various uniform and non-uniform (10-40% partial-body) irradiations up to doses of 13 Gy. The results indicated that both assays yielded good dose estimates for the whole-body exposure scenario, although in the lower-dose range (0-6 Gy) dicentric scoring resulted in more accurate whole-body estimates, whereas PCC rings were better in the high-dose range (>6 Gy). Neither assay was successful in identifying partial-body exposures, most likely due to the low numbers of cells scored in the triage mode. In conclusion, the study confirmed that the PCC ring assay is suitable for use as a biodosimeter after whole-body exposure to high doses of radiation. However, there are limitations for its use in the triage of people exposed to high, partial-body doses.

摘要

本研究旨在建立实用的 PCC 环分析剂量校准曲线,并将其应用于模拟的大规模伤亡事故中。该 PCC 分析方法通过与传统的双着丝粒分析方法进行比较得到验证。结果表明,在(60)Coγ射线照射下,PCC 环与剂量呈线性关系,照射剂量高达 20Gy。在模拟事故实验中,对 62 份血液样本同时进行了 PCC 环分析和传统的双着丝粒分析,并采用了分类方法。样本接受了各种均匀和非均匀(10-40%部分身体)照射,照射剂量高达 13Gy。结果表明,两种分析方法均能很好地估计全身暴露情况的剂量,尽管在低剂量范围(0-6Gy)时,双着丝粒评分法能更准确地估计全身剂量,但在高剂量范围(>6Gy)时,PCC 环更好。两种分析方法都不能成功识别部分身体照射,这很可能是由于分类模式下评分的细胞数量较少所致。总之,本研究证实,PCC 环分析方法适用于全身接受高剂量辐射后的生物剂量计。然而,它在高剂量、部分身体照射人群的分类中的应用存在局限性。

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