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在沙特阿拉伯建立细胞遗传学生物剂量测定实验室,并绘制双着丝粒染色体的初步校准曲线,作为辐射应急情况下医学剂量估算的生物标志物。

Establishing cytogenetic biodosimetry laboratory in Saudi Arabia and producing preliminary calibration curve of dicentric chromosomes as biomarker for medical dose estimation in response to radiation emergencies.

作者信息

Al-Hadyan Khaled, Elewisy Sara, Moftah Belal, Shoukri Mohamed, Alzahrany Awad, Alsbeih Ghazi

机构信息

Radiation Biology Section, King Faisal Specialist Hospital & Research Centre (KFSHRC), Riyadh, Kingdom of Saudi Arabia.

Biomedical Physics Department, King Faisal Specialist Hospital & Research Centre (KFSHRC), Riyadh, Kingdom of Saudi Arabia.

出版信息

3 Biotech. 2014 Dec;4(6):635-645. doi: 10.1007/s13205-014-0217-x. Epub 2014 Apr 18.

Abstract

In cases of public or occupational radiation overexposure and eventual radiological accidents, it is important to provide dose assessment, medical triage, diagnoses and treatment to victims. Cytogenetic bio-dosimetry based on scoring of dicentric chromosomal aberrations assay (DCA) is the "gold standard" biotechnology technique for estimating medically relevant radiation doses. Under the auspices of the National Science, Technology and Innovation Plan in Saudi Arabia, we have set up a biodosimetry laboratory and produced a national standard dose-response calibration curve for DCA, pre-required to estimate the doses received. For this, the basic cytogenetic DCA technique needed to be established. Peripheral blood lymphocytes were collected from four healthy volunteers and irradiated with radiation doses between 0 and 5 Gy of 320 keV X-rays. Then, lymphocytes were PHA stimulated, Colcemid division arrested and stained cytogenetic slides were prepared. The Metafer4 system (MetaSystem) was used for automatic and manually assisted metaphase finding and scoring of dicentric chromosomes. Results were fit to the linear-quadratic dose-effect model according to the IAEA EPR-Biodosimetry-2011 report. The resulting manually assisted dose-response calibration curve (Y = 0.0017 + 0.026 × D + 0.081 × D) was in the range of those described in other populations. Although the automated scoring over-and-under estimates DCA at low (<1 Gy) and high (>2 Gy) doses, respectively, it showed potential for use in triage mode to segregate between victims with potential risk to develop acute radiotoxicity syndromes. In conclusion, we have successfully established the first biodosimetry laboratory in the region and have produced a preliminary national dose-response calibration curve. The laboratory can now contribute to the national preparedness plan in response to eventual radiation emergencies in addition to providing information for decision makers and public health officials who assess the magnitude of public, medical, occupational and accidental radiation exposures.

摘要

在公众或职业性辐射过量照射以及最终发生放射性事故的情况下,对受害者进行剂量评估、医疗分类、诊断和治疗非常重要。基于双着丝粒染色体畸变分析(DCA)评分的细胞遗传学生物剂量测定法是估算医学相关辐射剂量的“金标准”生物技术。在沙特阿拉伯国家科学、技术和创新计划的支持下,我们建立了一个生物剂量测定实验室,并生成了用于估算所接受剂量的DCA国家标准剂量-反应校准曲线。为此,需要建立基本的细胞遗传学DCA技术。从四名健康志愿者身上采集外周血淋巴细胞,并用320 keV的X射线以0至5 Gy的辐射剂量进行照射。然后,用PHA刺激淋巴细胞,用秋水仙酰胺使细胞分裂停滞,并制备细胞遗传学染色玻片。使用Metafer4系统(MetaSystem)自动并通过人工辅助寻找中期细胞并对双着丝粒染色体进行评分。根据国际原子能机构EPR - Biodosimetry - 2011报告,将结果拟合到线性-二次剂量效应模型。所得的人工辅助剂量-反应校准曲线(Y = 0.0017 + 0.026 × D + 0.081 × D)与其他人群描述的范围一致。尽管自动评分在低剂量(<1 Gy)和高剂量(>2 Gy)时分别高估和低估了DCA,但它显示出在分流模式下用于区分有发生急性放射毒性综合征潜在风险的受害者的潜力。总之,我们成功地在该地区建立了第一个生物剂量测定实验室,并生成了初步的国家剂量-反应校准曲线。该实验室现在除了为评估公众、医疗、职业和意外辐射暴露程度的决策者和公共卫生官员提供信息外,还可为应对最终辐射紧急情况的国家准备计划做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6503/4235882/a2fbd39f37e1/13205_2014_217_Fig1_HTML.jpg

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