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DNA fragmentation by gamma radiation and electron beams using atomic force microscopy

机译:使用原子力显微镜通过伽玛射线和电子束对DNA进行片段化

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摘要

Double-stranded pBS plasmid DNA was irradiated with gamma rays at doses ranging from 1 to 12 kGy and electron beams from 1 to 10 kGy. Fragment-size distributions were determined by direct visualization, using atomic force microscopy with nanometer-resolution operating in non-tapping mode, combined with an improved methodology. The fragment distributions from irradiation with gamma rays revealed discrete-like patterns at all doses, suggesting that these patterns are modulated by the base pair composition of the plasmid. Irradiation with electron beams, at very high dose rates, generated continuous distributions of highly shattered DNA fragments, similar to results at much lower dose rates found in the literature. Altogether, these results indicate that AFM could supplement traditional methods for high-resolution measurements of radiation damage to DNA, while providing new and relevant information.
机译:用1至12 kGy的伽玛射线和1至10 kGy的电子束辐照双链pBS质粒DNA。碎片大小分布是通过直接可视化,使用原子力显微镜(具有非敲击模式下的纳米级分辨率)和改进的方法来确定的。伽马射线辐照的片段分布在所有剂量下均显示出离散的样态,表明这些样态受到质粒碱基对组成的调节。以很高的剂量率用电子束照射会产生高度破碎的DNA片段的连续分布,这与文献中发现的低剂量率的结果相似。总而言之,这些结果表明,原子力显微镜可以补充传统方法,以高分辨率测量辐射对DNA的损伤,同时提供新的相关信息。

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