加强菲律宾核事件防备的细胞遗传生物剂量学能力

Q4 Biochemistry, Genetics and Molecular Biology Genome Integrity Pub Date : 2016-01-01 DOI:10.4103/2041-9414.197163
C. Asaad, Gloriamaris L. Caraos, Gerardo Jose M. Robles, A. D. D. Asa, M. L. Cobar, A. Asaad
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引用次数: 2

摘要

在发生辐射紧急情况时,基于双中心分析的生物剂量计的效用是无价的,在这种情况下,被照射者的估计吸收剂量对病人的适当医疗管理至关重要。该技术也用于职业性暴露工人的常规监测,以确定辐射暴露。本文对人外周血淋巴细胞进行了体外辐照研究,建立了辐照致双心像差的剂量-反应曲线。从志愿者捐献者处采集血液样本,并使用光刺激发光(OSL)剂量计,使用钴-60放射单元在0、0.1、0.25、0.5、0.75、1、2、4和6 Gy照射。将血样培养48小时,并按照国际原子能机构《应急准备和反应——2011年生物剂量测定手册》的程序制备中期染色体。在每个剂量点至少对100个中期进行双心像差评分。使用R语言程序对数据进行分析。结果表明,双心细胞分布服从泊松分布,并建立了Ydic = 0.0003(±0.0003)+0.0336(±0.0115)× D + 0.0236(±0.0054)× D2的剂量-反应曲线。在本研究中,使用OSL剂量计也验证了估计2 Gy和4 Gy吸收剂量的剂量-反应曲线的可靠性。数据被拟合到所构造的曲线中。验证研究结果表明,所得的吸收暴露剂量估计值与真实暴露剂量接近。
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Enhancing Cytogenetic Biological Dosimetry Capabilities of the Philippines for Nuclear Incident Preparedness
The utility of a biological dosimeter based on the analysis of dicentrics is invaluable in the event of a radiological emergency wherein the estimated absorbed dose of an exposed individual is crucial in the proper medical management of patients. The technique is also used for routine monitoring of occupationally exposed workers to determine radiation exposure. An in vitro irradiation study of human peripheral blood lymphocytes was conducted to establish a dose-response curve for radiation-induced dicentric aberrations. Blood samples were collected from volunteer donors and together with optically stimulated luminescence (OSL) dosimeters and were irradiated at 0, 0.1, 0.25, 0.5, 0.75, 1, 2, 4, and 6 Gy using a cobalt-60 radiotherapy unit. Blood samples were cultured for 48 h, and the metaphase chromosomes were prepared following the procedure of the International Atomic Energy Agency's Emergency Preparedness and Response – Biodosimetry 2011 manual. At least 100 metaphases were scored for dicentric aberrations at each dose point. The data were analyzed using R language program. The results indicated that the distribution of dicentric cells followed a Poisson distribution and the dose-response curve was established using the estimated model, Ydic = 0.0003 (±0.0003) +0.0336 (±0.0115) × D + 0.0236 (±0.0054) × D2. In this study, the reliability of the dose-response curve in estimating the absorbed dose was also validated for 2 and 4 Gy using OSL dosimeters. The data were fitted into the constructed curve. The result of the validation study showed that the obtained estimate for the absorbed exposure doses was close to the true exposure doses.
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Genome Integrity
Genome Integrity Biochemistry, Genetics and Molecular Biology-Genetics
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