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建立基于血清铜的小鼠全身γ射线辐射生物剂量计。

Development of serum copper-based biological dosimetry in whole body gamma irradiation of mice.

机构信息

Department of Nuclear Science and Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210006, PR China.

出版信息

Health Phys. 2013 Oct;105(4):351-5. doi: 10.1097/HP.0b013e31829aea95.

Abstract

A new biological dosimeter based on serum copper has been developed. Serum copper in mice subjected to a 60Co source at a dose rate of 0.5 Gy min-1 was detected using the bis(cyclohexanone) oxaldihydrazone colorimetric method. The dose range was from 0.5–7 Gy. The results demonstrate that serum copper decreases with increasing dose. A linear dose response is obtained. The detection limit based on serum copper is the same as that with the lower limit of dose assessment; i.e., about 1 Gy. The decrease in serum copper continues until the 28th day after gamma radiation. The absorbed doses in mice assessed using the linear curve are close to “blind” doses of 4 and 6 Gy. Therefore, serum copper is a quick, simple, and accurate biomarker for early assessment of radiation exposure of mice in the range of 0.5–7 Gy.

摘要

一种基于血清铜的新型生物剂量计已经开发出来。使用双(环己酮)草酰二腙比色法检测在剂量率为 0.5 Gy min-1 的 60Co 源下照射的小鼠的血清铜。剂量范围为 0.5-7 Gy。结果表明,血清铜随剂量的增加而降低。获得了线性剂量响应。基于血清铜的检测限与剂量评估下限相同;即约 1 Gy。血清铜的减少持续到γ辐射后的第 28 天。使用线性曲线评估的小鼠吸收剂量接近 4 和 6 Gy 的“盲目”剂量。因此,血清铜是一种快速、简单、准确的生物标志物,可用于早期评估 0.5-7 Gy 范围内小鼠的辐射暴露。

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