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睾丸暴露于电离辐射与精子表观遗传改变作为遗传效应的可能机制:从辐射防护角度的观点

Testicular exposure to ionizing radiation and sperm epigenetic alterations as possible mechanisms of hereditary effects: perspectives from the viewpoint of radiation protection.

作者信息

Fukunaga Hisanori, Hamada Nobuyuki

机构信息

Department of Biomedical Science and Engineering, Faculty of Health Sciences, Hokkaido University, Sapporo, Japan.

Center for Environmental and Health Sciences, Hokkaido University, Sapporo, Japan.

出版信息

Int J Radiat Biol. 2025;101(2):101-106. doi: 10.1080/09553002.2024.2440860. Epub 2024 Dec 17.

Abstract

PURPOSE

Since the genotoxicity of ionizing radiation was demonstrated in the 1920s, its hereditary effects have remained a serious concern for human society. The International Commission on Radiological Protection has highlighted the need for appropriate protection against hereditary effects of radiation in humans. In this paper, we review the literature on the possible multigenerational and transgenerational effects following testicular exposure to radiation, focusing on sperm epigenetic alterations as possible mechanisms.

RESULTS

This mini-review highlights that hereditary effects following testicular exposure occur via epigenetic changes of germ cells in animal models, providing implications on human radiation protection.

CONCLUSIONS

A great amount of epigenomic research data has emerged rapidly since the beginning of this century; thus, a revision of the radiological protection protocols against the hereditary effects of radiation would be no longer inevitable. The collection and analysis of evidence on these effects must be enhanced and further accelerated to formulate appropriate protection protocols in the future.

摘要

目的

自20世纪20年代证实电离辐射具有遗传毒性以来,其遗传效应一直是人类社会严重关切的问题。国际放射防护委员会强调了针对人类辐射遗传效应进行适当防护的必要性。在本文中,我们回顾了有关睾丸受辐射后可能产生的多代和跨代效应的文献,重点关注精子表观遗传改变这一可能机制。

结果

本综述强调,在动物模型中,睾丸受辐射后的遗传效应是通过生殖细胞的表观遗传变化发生的,这对人类辐射防护具有启示意义。

结论

自本世纪初以来,大量表观基因组研究数据迅速涌现;因此,修订针对辐射遗传效应的放射防护方案不再是不可避免的。必须加强并进一步加快收集和分析有关这些效应的证据,以便在未来制定适当的防护方案。

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