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Secondary electron-induced biomolecular fragmentation in fast heavy-ion irradiation of microdroplets of glycine solution

机译:甘氨酸溶液微型电池快速重离子照射中的二次电子诱导的生物分子碎片

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摘要

The influence of secondary electrons on radiation damage of biomolecules in water was studied by fast heavy-ion irradiation of biomolecular solutions. Water microdroplets containing the amino acid glycine under vacuum were irradiated by fast carbon projectiles with energies of 0.8-8.0 MeV. A variety of fragments from the droplets were observed by time-of-flight secondary-ion mass spectrometry: methylene amine cation and formate anion originating from the cleavage of C C-alpha bonds, cyanide anion generated by cleavage of multiple bonds, and protonated and deprotonated glycine. The dependence of the yield of each fragment on projectile energy was examined; different behavior was observed for positive and negative fragments. Considering that biomolecular fragmentation may be induced by secondary electrons ejected from the water molecules surrounding biomolecules, we calculated the cross section for ejection of secondary electrons from liquid water. We found that the formation of both positive and negative glycine fragment ions correlated with the predicted emission of secondary electrons at different projectile energies. The formation of [Gly-H](-) fragments, typical for gas phase dissociative electron attachment to amino acids, is shown to be caused by electrons from the low-energy part of the secondary electron distribution. Published under license by AIP Publishing.
机译:在水中的生物分子的辐射损伤的二次电子的影响,通过生物分子溶液的快速重离子辐照的影响。含在真空下的氨基酸甘氨酸微细水滴通过快速弹丸碳与0.8-8.0兆电子伏的能量照射。通过时间 - 飞行时间二次离子质谱中观察到的各种从液滴片段:亚甲基胺阳离子和甲酸阴离子源自通过的多重键的裂解产生的C C-α键,氰化物阴离子裂解和质子化和去质子甘氨酸。上弹能量的每个片段的产率的依赖性进行了检查;观察到正和负的片段不同的行为。考虑到生物分子片段化可以通过二次电子来诱导从周围的生物分子中的水分子喷出,我们计算对于从液体水二次电子喷射的横截面。我们发现,与二次电子在不同射弹的能量的预测发射相关的积极和消极甘氨酸片段离子的形成。 [甘氨酸-H]的形成( - )片段,典型的气相离解性电子附着到氨基酸,被示出为通过从二次电子分布的低能量部分的电子引起的。通过AIP发布在许可证下发布。

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