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Tandem Mass Spectrometry of Peptide Ions by Microwave Excited Hydrogen and Water Plasmas

机译:微波激发氢气和水等离子体的肽离子的串联质谱

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摘要

A thermal cracking cell that served as the atomic hydrogen source for hydrogen attachment/abstraction dissociation (HAD) analysis has an intrinsic problem to produce a beam of atoms reactive against heated tungsten capillary. A plasma excited by 2.45 GHz microwave discharge can deliver reactive species to a quadrupole ion trap confining analyte ions without excessive heating of the radical source components. The radical (H-center dot) production performance of the developed source was evaluated by optical emission spectroscopy and H-center dot attachment reaction to fullerene ions. The source exhibited the H-center dot attachment rate as high as a thermal cracking source forming H-center dot in the high temperature tungsten capillary to induce fragmentation processes preserving post-translational modifications. Water vapor was introduced to the source to confirm the stability to generate oxygen containing radicals, which were found present in the water vapor plasma together with atomic hydrogen. Injection of radicals from a water vapor plasma successfully dissociated peptide ions to c-/z- and a-/x-type ions as the case of HAD induced by a thermal cracking cell.
机译:作为用于氢附着/抽象解离(具有)分析的原子氢源的热裂化细胞具有固有问题,以产生反应加热钨毛细管的原子束。通过2.45GHz微波排放激发的等离子体可以将反应物质输送到四极离子阱限制分析物离子而没有过度加热的自由基源组分。通过光学发射光谱和H中心点附着反应对富勒烯离子的热源(H中心点)产生性能。该来源表现出高温钨毛细管中形成H中心点的H中心点附着速率,以诱导保持翻译后修饰的碎片过程。将水蒸气引入源以确认产生含氧自由基的稳定性,该稳定性地与原子氢在水蒸气等离子体中存在。根据热裂化细胞诱导的情况,将来自水蒸气等离子体的自由基成功地解离肽离子和A-/ X型离子。

著录项

  • 来源
    《Analytical chemistry》 |2018年第12期|共7页
  • 作者单位

    Doshisha Univ Grad Sch Sci &

    Engn Kyoto 6100321 Japan;

    Shimadzu Co Ltd Koichi Tanaka Mass Spectrometry Res Lab Nakagyo Ku Kyoto 6048511 Japan;

    Shimadzu Co Ltd Koichi Tanaka Mass Spectrometry Res Lab Nakagyo Ku Kyoto 6048511 Japan;

    Shimadzu Co Ltd Koichi Tanaka Mass Spectrometry Res Lab Nakagyo Ku Kyoto 6048511 Japan;

    Doshisha Univ Grad Sch Sci &

    Engn Kyoto 6100321 Japan;

    Doshisha Univ Grad Sch Sci &

    Engn Kyoto 6100321 Japan;

    Doshisha Univ Grad Sch Sci &

    Engn Kyoto 6100321 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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