长期暴露于低剂量电离辐射的人:细胞遗传剂量学研究

IF 2.3 4区 医学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Mutation research. Genetic toxicology and environmental mutagenesis Pub Date : 2024-01-18 DOI:10.1016/j.mrgentox.2024.503728
Oksana Cherednichenko, Anastassiya Pilyugina, Serikbai Nuraliev, Dinara Azizbekova
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引用次数: 0

摘要

对长期暴露于电离辐射的个人进行剂量测定和辐照控制是重要而复杂的问题。可以通过评估个体的适应性和辐射敏感性来优化评估,但单一模型不可能考虑所有相关参数。我们的目标是在考虑到长期暴露于电离辐射者的辐射敏感性的情况下,为其制定剂量计算方法。在血液样本体内外辐射的基础上,利用不同的细胞遗传学标准,构建了剂量范围为 0.01-2.0 Gy 和 0.01-0.4 Gy 的剂量效应模型。低剂量时 "双中心染色体和环 "的频率太低,不具有预测价值。由于受试者对辐射的反应不同,因此可以根据辐射敏感性对他们进行分类,并分别生成辐射敏感者、一般辐射敏感者和辐射耐受者的剂量效应曲线,从而减少回顾性剂量测定中的误差。
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Persons chronically exposed to low doses of ionizing radiation: A cytogenetic dosimetry study

The dosimetry and control of exposure for individuals chronically exposed to ionizing radiation are important and complex issues. Assessment may be optimized by evaluating individual adaptation and radiosensitivity, but it is not possible for a single model to account for all relevant parameters. Our goal was to develop approaches for the calculation of doses for persons chronically exposed to ionizing radiation, taking their radiosensitivities into consideration. On the basis of ex vivo radiation of blood samples, dose-effect models were constructed for dose ranges 0.01–2.0 and 0.01–0.4 Gy, using different cytogenetic criteria. The frequencies of "dicentric chromosomes and rings" at low doses are too low to have predictive value. The different responses of subjects to radiation made it possible to categorize them according to their radiosensitivities and to generate separate dose-effect curves for radiosensitive, average, and radioresistant individuals, reducing the amount of error in retrospective dosimetry.

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来源期刊
CiteScore
3.80
自引率
5.30%
发文量
84
审稿时长
105 days
期刊介绍: Mutation Research - Genetic Toxicology and Environmental Mutagenesis (MRGTEM) publishes papers advancing knowledge in the field of genetic toxicology. Papers are welcomed in the following areas: New developments in genotoxicity testing of chemical agents (e.g. improvements in methodology of assay systems and interpretation of results). Alternatives to and refinement of the use of animals in genotoxicity testing. Nano-genotoxicology, the study of genotoxicity hazards and risks related to novel man-made nanomaterials. Studies of epigenetic changes in relation to genotoxic effects. The use of structure-activity relationships in predicting genotoxic effects. The isolation and chemical characterization of novel environmental mutagens. The measurement of genotoxic effects in human populations, when accompanied by quantitative measurements of environmental or occupational exposures. The application of novel technologies for assessing the hazard and risks associated with genotoxic substances (e.g. OMICS or other high-throughput approaches to genotoxicity testing). MRGTEM is now accepting submissions for a new section of the journal: Current Topics in Genotoxicity Testing, that will be dedicated to the discussion of current issues relating to design, interpretation and strategic use of genotoxicity tests. This section is envisaged to include discussions relating to the development of new international testing guidelines, but also to wider topics in the field. The evaluation of contrasting or opposing viewpoints is welcomed as long as the presentation is in accordance with the journal''s aims, scope, and policies.
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