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 >Analysis of gamma-rays induced chromosome aberrations: a fingerprint evaluation with a combination of pan-centromeric and pan-telomeric probes.
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Analysis of gamma-rays induced chromosome aberrations: a fingerprint evaluation with a combination of pan-centromeric and pan-telomeric probes.

机译:伽马射线诱导的染色体畸变分析:结合泛着丝粒和泛端粒探针的指纹评估。

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摘要

PURPOSE: To evaluate the types of induced chromosome aberrations after the exposure of peripheral blood to gamma-rays by the simultaneous detection of all centromeres and telomeres; and to analyse the suitability of different radiation fingerprints for the assessment of radiation quality in cases of recent exposures. MATERIAL AND METHODS: Peripheral blood samples were irradiated at 2, 4 and 6 Gy of gamma-rays. Cytogenetic analysis was carried out by fluorescence in situ hybridization (FISH) technique with pan-centromeric and peptide nucleic acid (PNA)-telomeric DNA probes. Cells were analysed using a Cytovision FISH workstation, chromosome aberrations and the length of the acentric fragments were recorded. RESULTS: The total number of the incomplete chromosome elements was 276. The ratio between incomplete elements and multicentrics was 0.38. The number of acentrics was 1096, 71% were complete acentrics, 15% incomplete acentrics, and 14% interstitial fragments. The relative length of complete, incomplete and interstitial acentrics fragments were 2.70 +/- 0.04, 1.91 +/- 0.07, and 1.42 +/- 0.04 respectively. The mean value of the F-ratio was 11.5 higher than the one, 5.5, previously obtained for alpha-particles. For the G-ratio there was no difference between gamma-rays and alpha-particles, 2.8 and 2.8 respectively. The mean value of the H-ratio for gamma-rays, 0.25, was lower than for alpha-particles 0.40. CONCLUSION: The results support that the percentage of incomplete chromosome aberrations depends on radiation type; low-linear energy transfer (LET) radiation would produces less incomplete aberrations than high-LET radiation. The F- and H-ratios seem to be good indicators of radiation quality, although a real estimation of the H-ratio is only possible using pan-telomeric probes.
机译:目的:通过同时检测所有着丝粒和端粒来评估外周血暴露于γ射线后诱导的染色体畸变的类型;并分析不同辐射指纹在近期暴露情况下对辐射质量评估的适用性。材料与方法:外周血样品分别以2、4和6 Gy的伽马射线辐照。通过泛原色和肽核酸(PNA)端粒DNA探针通过荧光原位杂交(FISH)技术进行细胞遗传学分析。使用Cytovision FISH工作站分析细胞,记录染色体畸变和无心片段的长度。结果:不完整染色体元件总数为276。不完整元件与多中心染色体之比为0.38。无心形的数量为1096,完全无心形的数量为71%,不完整无心形的数量为15%,间隙碎片的数量为14%。完整,不完整和间质性无心轴碎片的相对长度分别为2.70 +/- 0.04、1.91 +/- 0.07和1.42 +/- 0.04。 F比率的平均值比先前对α粒子获得的5.5比率高11.5。对于G比,γ射线和alpha粒子之间没有差异,分别为2.8和2.8。 γ射线的H比率平均值为0.25,低于α粒子的0.40。结论:结果支持不完全染色体畸变的百分比取决于辐射类型。与高LET辐射相比,低线性能量传输(LET)辐射产生的不完整像差更少。尽管只有使用泛端粒探针才能真正估计H比率,但F和H比率似乎是辐射质量的良好指标。

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