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High-LET radiation-induced aberrations in prematurely condensed G2 chromosomes of human fibroblasts.

机译:高LET辐射诱导人成纤维细胞的G2染色体过早浓缩的像差。

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摘要

PURPOSE: To determine the number of initial chromatid breaks induced by low- or high-LET irradiations, and to compare the kinetics of chromatid break rejoining for radiations of different quality. MATERIAL AND METHODS: Exponentially growing human fibroblast cells AG1522 were irradiated with gamma-rays, energetic carbon (290MeV/u), silicon (490MeV/u) and iron (200 and 600 MeV/u). Chromosomes were prematurely condensed using calyculin A. Chromatid breaks and exchanges in G2 cells were scored. PCC were collected after several post-irradiation incubation times, ranging from 5 to 600 min. RESULTS: The kinetics of chromatid break rejoining following low- or high-LET irradiation consisted of two exponential components representing a rapid and a slow time constant. Chromatid breaks decreased rapidly during the first 10min after exposure, then continued to decrease at a slower rate. The rejoining kinetics were similar for exposure to each type of radiation. Chromatid exchanges were also formed quickly. Compared to low-LET radiation, isochromatid breaks were produced more frequently and the proportion of unrejoined breaks was higher for high-LET radiation. CONCLUSIONS: Compared with gamma-rays, isochromatid breaks were observed more frequently in high-LET irradiated samples, suggesting that an increase in isochromatid breaks is a signature of high-LET radiation exposure.
机译:目的:确定由低或高LET辐射引起的初始染色单体断裂的数量,并比较不同质量辐射的染色单体断裂重新结合的动力学。材料与方法:用伽马射线,高能碳(290MeV / u),硅(490MeV / u)和铁(200和600 MeV / u)辐照成倍增长的人类成纤维细胞AG1522。使用calyculin A将染色体过早浓缩。对染色体断裂和G2细胞交换进行评分。经过5到600分钟不等的辐照后孵育时间,收集了PCC。结果:在低或高LET辐射后,染色单体断裂重新结合的动力学由两个指数成分组成,分别代表快速和慢速时间常数。在暴露后的最初10分钟内,染色单体断裂迅速减少,然后继续以较慢的速度减少。对于每种类型的辐射,重新结合动力学相似。染色单体交换也很快形成。与低LET辐射相比,高LET辐射更易产生异染色质断裂,未结合的断裂比例更高。结论:与伽马射线相比,在高LET辐射的样品中观察到了更频繁的同染色单体断裂,这表明等染色单体断裂的增加是高LET辐射暴露的特征。

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