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跨尺度洞察组织、个体和物种间辐射致癌风险的变异性

Trans-Scale Insights into Variability in Radiation Cancer Risk Across Tissues, Individuals, and Species.

作者信息

Imaoka Tatsuhiko

机构信息

Department of Radiation Effects Research, Institute for Radiological Science, National Institutes for Quantum Science and Technology (QST), Chiba 263-8555, Japan.

Institute for Quantum Life Science, National Institutes for Quantum Science and Technology (QST), Chiba 263-8555, Japan.

出版信息

Biology (Basel). 2025 Aug 9;14(8):1025. doi: 10.3390/biology14081025.

Abstract

Diversity is evident in various aspects of life and the human population. The current radiological protection system considers the diversity in disease susceptibility and incorporates some of it to provide a unified risk model for the human population. This paper focuses on variability in cancer risk among cells/tissues, individuals, and animal species. At the cell/tissue level, radiation cancer risk per unit dose varies among tissues, as indicated by epidemiological and animal studies. This variation is most likely due to the epigenetics of cells. At the individual level, radiation risks vary considerably depending on physiological, environmental, and genetic factors. At the species level, epidemiology is considered the most relevant source of radiological information, and limitations have been recognized in extrapolating animal data to human risks. A recent study demonstrated a fundamental relationship between cancer risk and somatic mutation rate in humans and mice. This relationship could lead to a new extrapolation method, which could be used to protect a wider range of species, including humans and other mammals. Thus, considering diversity in radiation cancer risk provides insight into the underlying aspects of radiobiology of radiological protection.

摘要

多样性在生活和人类群体的各个方面都很明显。当前的辐射防护系统考虑了疾病易感性的多样性,并将其中一些纳入其中,以提供一个统一的人类风险模型。本文关注细胞/组织、个体和动物物种之间癌症风险的变异性。在细胞/组织水平上,正如流行病学和动物研究所示,单位剂量的辐射致癌风险在不同组织之间存在差异。这种差异很可能是由于细胞的表观遗传学。在个体水平上,辐射风险因生理、环境和遗传因素而有很大差异。在物种水平上,流行病学被认为是辐射信息最相关的来源,并且在将动物数据外推到人类风险方面已经认识到存在局限性。最近的一项研究表明了人类和小鼠癌症风险与体细胞突变率之间的基本关系。这种关系可能会导致一种新的外推方法,可用于保护更广泛的物种,包括人类和其他哺乳动物。因此,考虑辐射致癌风险的多样性有助于深入了解辐射防护放射生物学的潜在方面。

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