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Dose assessment by quantification of chromosome aberrations and micronuclei in peripheral blood lymphocytes from patients exposed to gamma radiation

机译:通过量化暴露于伽马射线照射患者的外周血淋巴细胞染色体畸变和微核的剂量评估

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Scoring of unstable chromosome aberrations (dicentrics, rings and fragments) and micronuclei in circulating lymphocytes are the most extensively studied biological means for estimating individual exposure to ionizing radiation (IR), which can be used as complementary methods to physical dosimetry or when the latter cannot be performed. In this work, the quantification of the frequencies of chromosome aberrations and micronuclei were carried out based on cytogenetic analyses of peripheral blood samples from 5 patients with cervical uterine cancer following radiotherapy in order to evaluate the absorbed dose as a result of partial-body exposure to 60Co source. Blood samples were collected from each patient in three phases of the treatment: before irradiation, 24 h after receiving 0.08 Gy and 1.8 Gy, respectively. The results presented in this report emphasize biological dosimetry, employing the quantification of chromosome aberrations and micronuclei in lymphocytes from peripheral blood, as an important methodology of dose assessment for either whole or partial-body exposure to IR.
机译:循环淋巴细胞中不稳定染色体畸变(双着丝粒,环和碎片)和微核的计分是评估个体暴露于电离辐射(IR)的最广泛研究的生物学手段,可以用作物理剂量法的补充方法,或者当后者不能使用时被执行。在这项工作中,基于5位子宫颈癌患者放疗后外周血样本的细胞遗传学分析,对染色体畸变和微核的频率进行了定量分析,以评估部分人体暴露于放射线照射后的吸收剂量。 60Co源。在治疗的三个阶段从每位患者收集血样:分别在照射前,分别接受0.08 Gy和1.8 Gy后24小时。本报告中的结果强调了生物学剂量测定法,该方法采用了对外周血淋巴细胞中染色体畸变和微核的定量分析,作为全身或部分人体暴露于IR的重要剂量评估方法。

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