Analysis of cellular effects by continuous exposure AT low concentration of tritium.

IF 0.8 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES Radiation protection dosimetry Pub Date : 2024-11-13 DOI:10.1093/rpd/ncae112
Rio Isobe, Masatoshi Suzuki, Satoru Endo, Yasushi Kino, Ryoya Ishikawa, Yohei Inaba, Manabu Fukumoto, Koichi Chida
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Abstract

This study investigated the induction of DNA double-strand breaks (DSBs) in the hTERT-immortalized normal human diploid epithelial cells (RPE1-hTERT) continuously exposed to 6000 Bq/ml of tritiated water (HTO) and organically bound tritium (OBT). The relationship of the DSBs induction with the intracellular amount as well as the localization of tritium was also examined. Tritium-labeled thymidine (3H-Thy) and palmitic acid (3H-PA) were used as OBT. The average number of DSBs, which were indicated as co-localized foci of 53BP1 with phosphorylated H2AX, per cell was higher in the order of treatments with 3H-Thy, 3H-PA, and HTO. This order was consistent with that of tritium localization in the insoluble nuclear fraction but not with the intracellular amount of tritium. In addition to the intracellular amount of tritium, we showed that the subcellular localization of tritium is an important factor in cellular effects stimulated by DSBs.

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分析连续接触 AT 低浓度氚对细胞的影响。
本研究调查了连续暴露于 6000 Bq/ml 氚化水(HTO)和有机结合氚(OBT)的 hTERT-immortalized 正常人二倍体上皮细胞(RPE1-hTERT)中 DNA 双链断裂(DSB)的诱导情况。此外,还研究了DSBs诱导与细胞内氚量和氚定位的关系。氚标记的胸苷(3H-Thy)和棕榈酸(3H-PA)被用作 OBT。在使用 3H-Thy、3H-PA 和 HTO 的处理顺序中,每个细胞的 DSB(表示为 53BP1 与磷酸化的 H2AX 共定位灶)平均数量较高。这一顺序与核不溶物中的氚定位顺序一致,但与细胞内的氚量不一致。除了细胞内的氚量,我们还发现氚的亚细胞定位是DSB刺激细胞效应的一个重要因素。
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来源期刊
Radiation protection dosimetry
Radiation protection dosimetry 环境科学-公共卫生、环境卫生与职业卫生
CiteScore
1.40
自引率
10.00%
发文量
223
审稿时长
6-12 weeks
期刊介绍: Radiation Protection Dosimetry covers all aspects of personal and environmental dosimetry and monitoring, for both ionising and non-ionising radiations. This includes biological aspects, physical concepts, biophysical dosimetry, external and internal personal dosimetry and monitoring, environmental and workplace monitoring, accident dosimetry, and dosimetry related to the protection of patients. Particular emphasis is placed on papers covering the fundamentals of dosimetry; units, radiation quantities and conversion factors. Papers covering archaeological dating are included only if the fundamental measurement method or technique, such as thermoluminescence, has direct application to personal dosimetry measurements. Papers covering the dosimetric aspects of radon or other naturally occurring radioactive materials and low level radiation are included. Animal experiments and ecological sample measurements are not included unless there is a significant relevant content reason.
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