Radiation Effects of Normal B-Lymphoblastoid Cells after Exposing Them to Low-Dose-Rate Irradiation from Tritium β-rays

Author:

Deng Bing1,Quan Yi1,Chen Zhilin1,Wang Heyi1

Affiliation:

1. Institute of Nuclear Physics and Chemistry, China Academy of Engineering Physics, Mianyang 621900, China

Abstract

The effects of tritium at low doses and low dose rates have received increasing attention due to recent developments in fusion energy and the associated risks of tritium releases into the environment. Mitochondria have been identified as a potential candidate for studying the effects of low-dose/low-dose-rate radiation, with extensive experimental results obtained using X-ray irradiation. In this study, irradiation experiments were conducted on normal B-lymphoblastoid cells using HTO at varying doses. When compared to X-ray irradiation, no significant differences in cell viability induced by different doses were observed. However, the results of ATP levels showed a significant difference between the irradiated sample at a dose of 500 mGy by tritium beta-rays and the sham-irradiated sample, while the levels obtained with X-ray irradiation were almost identical to the sham-irradiated sample. In contrast, ATP levels for both tritium beta-rays and X-rays at a dose of 1.0 Gy showed minimal differences compared to the sham-irradiated sample. Furthermore, distinct effects at 500 mGy were also confirmed in both ROS levels and apoptosis results obtained through tritium beta-ray irradiation. This suggests that mitochondria might be a potential sensitive target for investigating the effects of tritium beta-ray irradiation.

Funder

National Science Foundation for Young Scholars of China

Publisher

MDPI AG

Reference39 articles.

1. UNSCEAR (2017). UNSCEAR 2016 Report to the General Assembly, with Scientific Annexes. Sources, Effects and Risks of Ionizing Radiation. Annex C, Biological Effects of Selected Internal Emitters-Tritium, United Nations.

2. In vivo animal studies help achieve international consensus on standards and guidelines for health risk estimates for chronic exposure to low levels of tritium in drinking water;Priest;Environ. Mol. Mutagen.,2018

3. Systematic review of experimental studies on the relative biological effectiveness of tritium;Little;Radiat. Environ. Biophys.,2008

4. Tritium radiobiology and relative biological effectiveness;Straume;Health Phys.,1993

5. RBE and w(R) values of Auger emitters and low-range beta emitters with particular reference to tritium;Fairlie;J. Radiol. Prot.,2007

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