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人淋巴细胞中X射线诱导微核的剂量反应曲线的建立

Establishment of a Dose-response Curve for X-ray-Induced Micronuclei in Human Lymphocytes.

作者信息

Lusiyanti Yanti, Alatas Zubaidah, Syaifudin Mukh, Purnami Sofiati

机构信息

Division of Nuclear Medicine Technique and Radiation Biology, Center for Technology of Radiation Safety and Metrology (PTKMR), National Nuclear Energy Agency of Indonesia (BATAN), Jakarta, Indonesia.

出版信息

Genome Integr. 2016 Dec 30;7:7. doi: 10.4103/2041-9414.197162. eCollection 2016.

Abstract

The cytokinesis-block micronucleus assay in peripheral blood lymphocytes is an established technique for biodosimetry. The aim of this project was to generate a X-ray induced micronuclei (MN) curve for peripheral blood lymphocytes taken from five healthy donors. The blood samples were irradiated with X-rays of 122 KeV at a dose rate of 0.652 Gy/min to doses of 0.5, 1, 2, 3, and 4 Gy. The blood samples were then cultured for 72 h at 37°C and processed following the International Atomic Energy Agency standard procedure with slight modifications. The result showed that the yields of MN frequencies were increased with the increase of radiation dose. Reconstruction of the relationship of MN with dose was fitted to a linear-quadratic model using Chromosome Aberration Calculation Software version 2.0. Due to their advantages, mainly, the dependence on radiation dose and dose rate, despite their limitation, these curves will be useful as alternative method for dose reconstruction and can support the preparedness for public or occupational radiation overexposure and protection. The results reported here also give us confidence to apply the obtained calibration curve of MN for future biological dosimetry requirements in Indonesia.

摘要

外周血淋巴细胞胞质分裂阻滞微核试验是一种成熟的生物剂量测定技术。本项目的目的是为五名健康供者的外周血淋巴细胞生成X射线诱导的微核(MN)曲线。血液样本用122 KeV的X射线以0.652 Gy/min的剂量率照射至0.5、1、2、3和4 Gy的剂量。然后将血液样本在37°C下培养72小时,并按照国际原子能机构的标准程序进行处理,略有修改。结果表明,MN频率的产额随辐射剂量的增加而增加。使用2.0版染色体畸变计算软件将MN与剂量的关系重建拟合为线性二次模型。尽管有局限性,但由于它们的优势,主要是对辐射剂量和剂量率的依赖性,这些曲线将作为剂量重建的替代方法有用,并可支持应对公众或职业辐射过量暴露和防护。此处报告的结果也让我们有信心将获得的MN校准曲线应用于印度尼西亚未来的生物剂量测定要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06fe/5292914/f0f4a359d1df/GI-7-7-g001.jpg

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