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传统和 QuickScan 双着丝粒评分法在台湾个体生物剂量学分析验证中的比较。

Intercomparison of conventional and QuickScan dicentric scoring for the validation of individual biodosimetry analysis in Taiwan.

机构信息

Isotope Application Division, Institute of Nuclear Energy Research, Taoyuan, Taiwan.

Laboratory Animal Center, Taipei Medical University, Taipei, Taiwan.

出版信息

Int J Radiat Biol. 2021;97(7):916-925. doi: 10.1080/09553002.2021.1928789. Epub 2021 Jun 1.

Abstract

PURPOSE

The dicentric chromosome assay (DCA), the gold standard for radiation biodosimetry, evaluates an individual absorbed radiation dose by the analysis of DNA damage in human lymphocytes. The conventional (C-DCA) and QuickScan (QS-DCA) scoring methods are sensitive for estimating radiation dose. The Biodosimetry Laboratory at Institute of Nuclear Energy Research (INER), Taiwan, participated in intercomparison exercises conducted by Health Canada (HC) in 2014, 2015 and 2018 to validate the laboratory's accuracy and performance.

MATERIAL AND METHODS

Blood samples for the conventional dose response curve for Taiwan were irradiated with 0, 0.25, 0.5, 1, 2, 3, 4 and 5 Gy. Ten blind blood samples were provided by HC. Either or both of two methods of conventional (C) or QuickScan (QS) scoring could be chosen for the HC's intercomparison. For C-DCA triage scoring, only cells with 46 centromeres were counted and each scorer recorded the number of dicentrics in the first 50 metaphases or stopped scoring when 30 dicentrics were reached. Scorers also recorded how much time it took to analyze 10, 20, and 50 cells. Subsequently, the data were entered into the Dose Estimate software (DoseEstimate_v5.1) and dose estimates were calculated. With QS-DCA scoring, a minimum of 50 metaphase cells (or 30 dicentrics) were scored in apparently complete metaphases without verification of exactly 46 centromeres.

RESULTS

For the blinded blood samples irradiated at HC and shipped to INER, the mean absolute deviation (MAD) derived after scoring 50 cells for C-DCA and QS-DCA was <0.5 Gy for all three intercomparisons, meeting the criteria for acceptance.

CONCLUSION

The results indicated that the Biodosimetry Laboratory at INER can provide reliable dose estimates in the case of a large-scale radiation accident.

摘要

目的

双着丝粒染色体分析(DCA)是辐射生物剂量学的金标准,通过分析人淋巴细胞中的 DNA 损伤来评估个体吸收的辐射剂量。传统(C-DCA)和 QuickScan(QS-DCA)评分方法对于估计辐射剂量很敏感。台湾核能研究所(INER)的生物剂量学实验室参加了加拿大卫生部(HC)在 2014 年、2015 年和 2018 年进行的国际比对实验,以验证实验室的准确性和性能。

材料和方法

为了建立台湾的常规剂量响应曲线,用 0、0.25、0.5、1、2、3、4 和 5Gy 辐照血液样本。HC 提供了 10 个盲样血样。HC 的国际比对可以选择传统(C)或 QuickScan(QS)评分的一种或两种方法。对于 C-DCA 甄别评分,只计算具有 46 个着丝粒的细胞,每个评分者记录前 50 个中期分裂相中双着丝粒的数量,或者当达到 30 个双着丝粒时停止评分。评分者还记录了分析 10、20 和 50 个细胞所花费的时间。随后,将数据输入剂量估计软件(DoseEstimate_v5.1)并计算剂量估计值。使用 QS-DCA 评分,在明显完整的中期分裂相中至少评分 50 个细胞(或 30 个双着丝粒),而无需验证确切的 46 个着丝粒。

结果

对于在 HC 辐照并运送到 INER 的盲样血样,C-DCA 和 QS-DCA 评分 50 个细胞后得出的平均绝对偏差(MAD)在所有三次国际比对中均<0.5Gy,符合接受标准。

结论

结果表明,在发生大规模辐射事故的情况下,INER 的生物剂量学实验室可以提供可靠的剂量估计。

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