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首页> 外文期刊>International Journal of Radiation Biology: Covering the Physical, Chemical, Biological, and Medical Effects of Ionizing and Non-ionizing Radiations >Comparison of cytogenetic damage in cultured cells from cobalt-60 gamma-radiation and the Auger emitter zinc-65.
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Comparison of cytogenetic damage in cultured cells from cobalt-60 gamma-radiation and the Auger emitter zinc-65.

机译:比较钴60γ射线和俄歇发射极锌65对培养细胞的细胞遗传学损伤。

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PURPOSE: To assess the ability of the Auger-emitting nuclide, zinc-65 (65Zn), relative to gamma-irradiation, to cause chromosomal aberrations in cultured rat prostate cells. MATERIALS AND METHODS: Rat prostate adenocarcinoma cells in culture were exposed to doses of 1, 2, 3 or 5 Gy of external gamma-irradiation for 24h or incubated with 0.7, 1.5, 1.8 or 2.8 MBq of 65Zn for 24 h. The uptake by and clearance from cells of 65Zn was measured. Metaphase spreads prepared from washed cells were scored for chromatid- and chromosome-type aberrations. RESULTS: Following exposure to 65Zn or gamma-irradiation, chromatid-type damage was more commonly observed than chromosome-type aberrations. The relationship between induced chromatid damage and gamma dose (to 3 Gy) was best fitted by a second-order polynomial function, while the activity response relationship for chromatid damage caused by 65Zn appeared to be best fitted by a straight line. Measurements of the uptake of 65Zn by cells showed that average concentrations within cells were about 100 times the concentration in the culture medium. Assuming uniform distribution of 65Zn within cells, with 36% in the nucleus, the dose was estimated as 0.70 Gy per MBq added 65Zn, with Auger electrons contributing most (93%) of the dose. Assuming that 20% of cellular zinc was localized in the nucleus, based on previous measurements, the dose to the nucleus was calculated as 0.44 Gy per MBq added 65Zn. RBE values for chromatid damage induced by 65Zn compared to gamma-radiation range from about 1 to 3 based on a uniform dose throughout the cell and from about 2 to 5 based on 20% of 65Zn in the cell nucleus. CONCLUSION: The observed radiotoxicity of 65Zn is consistent with its behaviour as an Auger-emitting radionuclide that is localized to some extent in the nucleus.
机译:目的:评估相对于伽马射线,俄歇发射核素锌65(65Zn)引起培养的大鼠前列腺细胞中染色体畸变的能力。材料与方法:将培养的大鼠前列腺腺癌细胞暴露于1,2,3或5 Gy剂量的外部γ射线辐照24小时,或与0.7、1.5、1.8或2.8 MBq的65Zn孵育24小时。测量了65Zn从细胞中的吸收和清除。从洗过的细胞制备的中期扩散涂片染色单体和染色体类型的畸变。结果:暴露于65Zn或伽马射线照射后,染色单体型损伤比染色体型畸变更常见。诱导的染色单体损伤与γ剂量(至3 Gy)之间的关系最好由二阶多项式函数拟合,而由65Zn引起的染色单体损伤的活性响应关系似乎最好由直线拟合。细胞对65Zn吸收的测量表明,细胞内的平均浓度约为培养基中浓度的100倍。假设65Zn在细胞内分布均匀,其中核中占36%,则估计剂量为每添加65Zn的MBq 0.70 Gy,俄歇电子占剂量的大部分(93%)。假设20%的细胞锌位于细胞核中,则根据先前的测量,计算出的细胞核剂量为0.44 Gy / MBq添加65Zn。与整个γ-射线相比,由65Zn引起的染色单体损伤的RBE值基于整个细胞的均匀剂量约为1到3,基于细胞核中65Zn的20%约为2到5。结论:观察到的65Zn的放射毒性与其作为俄歇发射核素的行为一致,该核素一定程度上位于细胞核中。

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