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经X射线和质子辐照的正常人成纤维细胞长期培养中的端粒改变与基因组不稳定性

Telomere alterations and genomic instability in long-term cultures of normal human fibroblasts irradiated with X rays and protons.

作者信息

Berardinelli F, Antoccia A, Cherubini R, De Nadal V, Gerardi S, Tanzarella C, Sgura A

机构信息

Dipartimento Di Biologia, Università Roma Tre, Rome, Italy.

出版信息

Radiat Prot Dosimetry. 2011 Feb;143(2-4):274-8. doi: 10.1093/rpd/ncq486. Epub 2010 Dec 14.

Abstract

Telomeres are the end of linear chromosomes, responsible for chromosome stability and cell viability. It is well known that radiations are able to induce chromosome instability but it has not yet been investigated whether telomere structure is affected by the radiation exposure and if radiations with different quality act in a different way on telomeres. The effect of radiations with different quality on telomere structure and chromosome instability was analysed in human primary fibroblasts exposed to X rays or low-energy protons (28.5 keV μm(-1)). Telomere length was evaluated at different harvesting times from 24 h up to 360 h (15 days), whereas chromosome instability was evaluated in terms of sister chromatid exchanges (SCEs) (48 h from irradiation) and chromosome painting (360 h from irradiation). Results indicated a delayed telomere lengthening 360 h after X-ray treatment, whereas protons were able to induce such a lengthening shortly from irradiation as well as at longer harvesting times. Data obtained from chromosome instability analysis indicated an increase of SCE frequency only after proton irradiation, but, on the contrary, at the longer harvesting time chromosome painting analysis displayed a higher frequency of aberrations after X-ray treatment, suggesting a role of selective process against highly damaged cells.

摘要

端粒是线性染色体的末端,负责染色体的稳定性和细胞活力。众所周知,辐射能够诱导染色体不稳定,但尚未研究端粒结构是否受辐射暴露影响,以及不同性质的辐射对端粒的作用方式是否不同。在暴露于X射线或低能质子(28.5 keV μm⁻¹)的人原代成纤维细胞中,分析了不同性质的辐射对端粒结构和染色体不稳定的影响。在从24小时到360小时(15天)的不同收获时间评估端粒长度,而在辐照后48小时根据姐妹染色单体交换(SCE)以及在辐照后360小时根据染色体涂染评估染色体不稳定。结果表明,X射线处理后360小时端粒延长出现延迟,而质子在辐照后不久以及在更长的收获时间均能诱导端粒延长。从染色体不稳定分析获得的数据表明,仅在质子辐照后SCE频率增加,但相反,在更长的收获时间,染色体涂染分析显示X射线处理后畸变频率更高,这表明存在针对高度受损细胞的选择性过程。

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