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The Use of Ultraviolet Resonance Raman Spectroscopy in the Analysis of Ionizing-Radiation-Induced Damage in DNA

机译:紫外线共振拉曼光谱在电离辐射引起的DNA损伤分析中的应用

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Ultraviolet resonance Raman spectroscopy (UVRRS) was used to determine damage done in both calf-thymus DNA (CT-DNA) and a short stranded DNA oligomer (SS-DNA) due to ionizing radiation from a medical ~(60)Co radiation therapy unit used in the treatment of cancer. Spectra were acquired at incident UV wavelengths of 248, 257, and 264 nm in order to utilize the differences in UVRR cross-sections of the bases with wavelength. Through the analysis of difference spectra between irradiated and unirradiated DNA at each of the incident UV wavelengths, damage to CT- and SS-DNA was observed and identified. Significant radiation-induced increases in the difference spectra of the CT-DNA indicated disruption of the stable, stacked structure of its bases, as well as the disruption of Watson-Crick hydrogen bonds between the base pairs. Base unstacking was not as evident in the SS-DNA, while radiation-induced spectral decreases suggest disruption of the structure of the nucleotides. As demonstrated, UVRRS has the ability to highlight contributions from specific moieties with the use of varying incident UV wavelengths, thus enhancing the already information-rich content of the Raman spectra.
机译:紫外线共振拉曼光谱法(UVRRS)用于确定小牛胸腺DNA(CT-DNA)和短链DNA寡聚物(SS-DNA)由于来自医疗〜(60)Co放射治疗单元的电离辐射而造成的损伤用于治疗癌症。为了利用碱基的UVRR横截面随波长的差异,在248、257和264 nm的入射UV波长下获取光谱。通过分析在每个入射UV波长下辐照和未辐照的DNA之间的差异光谱,观察和鉴定了对CT-DNA和SS-DNA的损伤。辐射诱导的CT-DNA差异光谱显着增加表明其碱基的稳定堆叠结构受到破坏,以及碱基对之间的Watson-Crick氢键受到破坏。在SS-DNA中碱基解叠不是很明显,而辐射引起的光谱下降表明核苷酸的结构被破坏。如图所示,UVRRS能够通过使用变化的入射UV波长来突出特定部分的贡献,从而增强了拉曼光谱中已经丰富的信息含量。

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