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秀丽隐杆线虫作为微剂量学与生物学联合模型的研究

Study on Caenorhabditis Elegans as a Combined Model of Microdosimetry and Biology.

作者信息

Yu Wentao, Long Huiqiang, Gao Jin, Wang Yidi, Tu Yu, Sun Liang, Chen Na

机构信息

State Key Laboratory of Radiation Medicine and Protection, School of Radiation Medicine and Protection, Soochow University, Suzhou, China.

Collaborative Innovation Center of Radiation Medicine of Jiangsu Higher Education Institutions, Suzhou, China.

出版信息

Dose Response. 2021 Feb 11;19(1):1559325821990125. doi: 10.1177/1559325821990125. eCollection 2021 Jan-Mar.

Abstract

Microdosimetry is a tool for the investigation of microscopic energy deposition of ionizing radiation. This work used elegans as a model to estimate the microdosimetric deposition level at the Co gamma radiation. Monte Carlo software PHITS was employed to establish irradiated nematodes model. The dose deposition of the entire body and gonad irradiated to 100 Gy was calculated. The injury levels of radiation were evaluated by the detection of biological indicators. The result of microdosimetric experiment suggested that the dose of whole body of nematodes was estimated to be 99.9 ± 57.8 Gy, ranging from 19.6 to 332.2 Gy. The dose of gonad was predicted to be 129.4 ± 558.8 Gy (9.5-6597 Gy). The result of biological experiment suggested that there were little changes in the length of nematodes after irradiation. However, times of head thrash per minute and the spawning yield in 3 consecutive days decreased 27.1% and 94.7%, respectively. Nematodes in the irradiated group displayed heterogeneity. Through contour analysis, trends of behavior kinematics and reproductive capacity of irradiated nematodes proved to be consistent with the dose distribution levels estimated by microdosimetric model. Finally, . elegans presented a suitable combined model of microdosimetry and biology for studying radiation.

摘要

微剂量学是一种用于研究电离辐射微观能量沉积的工具。这项工作以秀丽隐杆线虫为模型,来估计钴γ辐射下的微剂量沉积水平。采用蒙特卡罗软件PHITS建立受辐照线虫模型。计算了全身和性腺受100 Gy辐照时的剂量沉积。通过检测生物学指标评估辐射损伤水平。微剂量学实验结果表明,线虫全身剂量估计为99.9±57.8 Gy,范围为19.6至332.2 Gy。性腺剂量预计为129.4±558.8 Gy(9.5 - 6597 Gy)。生物学实验结果表明,辐照后线虫长度变化不大。然而,每分钟头部摆动次数和连续3天的产卵量分别下降了27.1%和94.7%。辐照组线虫表现出异质性。通过轮廓分析,辐照线虫的行为运动学和生殖能力趋势与微剂量学模型估计的剂量分布水平一致。最后,秀丽隐杆线虫为研究辐射提供了一个合适的微剂量学与生物学相结合的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/176b/7883169/7eaaa91f9938/10.1177_1559325821990125-fig1.jpg

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