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首页> 外文期刊>Radiation and Environmental Biophysics >Local bone-marrow exposure: how to interpret the data on stable chromosome aberrations in circulating lymphocytes? (some comments on the use of FISH method for dose reconstruction for Techa riverside Residents)
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Local bone-marrow exposure: how to interpret the data on stable chromosome aberrations in circulating lymphocytes? (some comments on the use of FISH method for dose reconstruction for Techa riverside Residents)

机译:局部骨髓暴露:如何在循环淋巴细胞中解释稳定染色体畸变的数据? (关于Fisha Riverside Riversents剂量重建使用鱼类方法的一些评论)

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The method of fluorescence in situ hybridization (FISH) applied to peripheral blood T lymphocytes is used for retrospective dose estimation, and the results obtained from the analysis of stable chromosomal aberrations are usually interpreted as a dose accumulated in the red bone marrow (RBM). However, after local internal exposure of the RBM, doses derived from FISH were found to be lower than those derived from direct measurements of radionuclides accumulated in the bodies of exposed persons. These results were obtained for people residing near the Techa River contaminated by Sr-89,Sr-90 (beta-emitters) in 1949-1956 (Chelyabinsk Oblast, Russia). A new analysis has been performed of the combined results of FISH studies (n = 178) undertaken during 1994-2012 for persons living on the Techa Riverside. Analysis confirms the lower slope of the translocation yield per Gy (8.0 +/- 0.7 x 10(-3)) for Techa residents in comparison with FISH data for donors with external exposures (11.6 +/- 1.6 x 10(-3), Tawn et al., Radiat Res 184(3):296-303, 2015). It was suggested that some portion of T cells remained unexposed, because they represented the descendants of T cell progenitors, which had migrated to the thymus before the start of Sr-89,Sr-90 intakes. To clarify this problem, the dynamics of T-cell Genera (TG), combining all descendants of specific T-cell progenitor reaching the thymus, was considered. Rates of TGs produced by RBM over different age periods of human life were estimated with the use of the mathematic model of T-cell homeostasis (Bains, Mathematical modeling of T-cell homeostasis. A thesis submitted for the degree of Doctor of Philosophy of the University College London. http://discovery.ucl.ac.uk/20159/1/20159.pdf, 2010). The rate of TG loss during the lifetime was assumed to be very small in comparison with production rate. The recirculation of mature T lymphocytes in contaminated RBM was taken into account. According to our model estimates, at the time of blood sampling, the fraction of exposed T lymphocytes (whose progenitors were irradiated) ranged from 20 to 80% depending on the donors' age at the start of exposure to Sr-89,Sr-90. Dose to T lymphocytes, estimated from FISH studies, should be about 0.6-0.9 of RBM dose for residents of the upper Techa region and about 0.4-0.8 in the middle Techa region. Our results could explain the lower value of translocation yield per Gy obtained for Techa residents. The approaches for further model improvement and validation are discussed in this paper.
机译:应用于外周血T淋巴细胞的原位杂交(鱼)的荧光方法用于回顾性剂量估计,并且从稳定染色体像差分析获得的结果通常被解释为在红色骨髓(RBM)中积聚的剂量。然而,在局部内部暴露于RBM之后,发现源自鱼类的剂量低于从暴露人体内积累的放射性核素的直接测量结果的剂量。这些结果是为1949年至1956年(Chelyabinsk Oblast)的SR-89,SR-90(Beta-Emitters)污染的Techa河附近的人们获得了这些结果。在1994 - 2012年期间为生活在科技河畔的人员进行的鱼类研究(n = 178)的组合结果进行了新分析。分析证明了Techa居民的易位产量(8.0 +/- 0.7 x 10(-3))的倾斜产量的较低坡度与供体的鱼类数据相比(11.6 +/- 1.6 x 10(-3), TAWN等人,Radiat Res 184(3):296-303,2015)。有人建议,某些部分T细胞保持未曝光,因为它们代表了在SR-89开始之前迁移到胸腺的T细胞祖细胞的后代。为了澄清这个问题,考虑了T细胞属(TG)的动态,结合到达胸腺的特异性T细胞祖细胞的所有后代。估计使用T细胞稳态(T细胞稳态宿舍的数学建模的数学模型估计由rBM产生的TGS的TGS率估计。关于哲学博士学位提交的论文伦敦大学学院。http://discovery.ucl.ac.uk/20159/1/20159.pdf,2010)。假设寿命期间的Tg损失率与生产率相比非常小。考虑到污染的RBM成熟T淋巴细胞的再循环。根据我们的模型估计,在血液取样时,根据暴露于SR-89,SR-90的捐助者年龄,曝光的T淋巴细胞的分数(其祖细胞被辐照)范围为20%至80% 。从鱼类研究估计的T淋巴细胞剂量,应为上部Teoda地区的居民的RBM剂量约为0.6-0.9,在中间科目区约为0.4-0.8。我们的结果可以解释每个GY为Techa居民获得的易位产量的较低价值。本文讨论了进一步模型改进和验证的方法。

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