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青春期前和成年小鼠暴露于电离辐射后基因组损伤的年龄和性别差异。

Age and sex differences in genome damage between prepubertal and adult mice after exposure to ionising radiation.

作者信息

Stojković Ranko, Fucic Aleksandra, Ivanković Dušica, Jukić Zoran, Radulović Petra, Grah Josip, Kovačević Nenad, Barišić Lovro, Krušlin Božo

出版信息

Arh Hig Rada Toksikol. 2016 Dec 1;67(4):297-303. doi: 10.1515/aiht-2016-67-2882.

Abstract

The mechanisms that lead to sex and age differences in biological responses to exposure to ionising radiation and related health risks have still not been investigated to a satisfactory extent. The significance of sex hormones in the aetiology of radiogenic cancer types requires a better understanding of the mechanisms involved, especially during organism development. The aim of this study was to show age and sex differences in genome damage between prepubertal and adult mice after single exposure to gamma radiation. Genome damage was measured 24 h, 48 h, and 72 h after exposure of 3-week and 12-week old BALB/CJ mice to 8 Gy of gamma radiation using an in vivo micronucleus assay. There was a significantly higher genome damage in prepubertal than in adult animals of both sexes for all sampling times. Irradiation caused a higher frequency of micronuclei in males of both age groups. Our study confirms sex differences in the susceptibility to effects of ionising radiation in mice and is the first to show that such a difference occurs already at prepubertal age.

摘要

电离辐射暴露的生物学反应以及相关健康风险中导致性别和年龄差异的机制,目前仍未得到充分研究。性激素在放射性癌症类型病因学中的意义,需要我们更好地理解其中涉及的机制,尤其是在生物体发育过程中。本研究的目的是揭示青春期前和成年小鼠单次暴露于γ辐射后基因组损伤的年龄和性别差异。使用体内微核试验,在3周龄和12周龄的BALB/CJ小鼠暴露于8 Gyγ辐射后24小时、48小时和72小时测量基因组损伤。在所有采样时间点,青春期前的两性动物基因组损伤均显著高于成年动物。辐射在两个年龄组的雄性小鼠中导致了更高频率的微核。我们的研究证实了小鼠对电离辐射影响的易感性存在性别差异,并且首次表明这种差异在青春期前就已出现。

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