首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Automated determination of precursor ion, product ion, and neutral loss compositions and deconvolution of composite mass spectra using ion correlation based on exact masses and relative isotopic abundances
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Automated determination of precursor ion, product ion, and neutral loss compositions and deconvolution of composite mass spectra using ion correlation based on exact masses and relative isotopic abundances

机译:使用基于精确质量和相对同位素丰度的离子相关性自动确定前体离子,产物离子和中性损失成分,并对复合质谱进行反卷积

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摘要

After an accidental, deliberate, or weather-related dispersion of chemicals (dispersive event), rapid determination of elemental compositions of ions in mass spectra is essential for tentatively identifying compounds. A direct analysis in real time (DART)(R) ion source interfaced to a JEOL AccuTOF (R) mass spectrometer provided exact masses accurate to within 2 mDa for most ions in full scan mass spectra and relative isotopic abundances (RIAs) accurate to within 15-20% for abundant isotopic ions. To speed determination of the correct composition for precursor ions and most product ions and neutral losses, a three-part software suite was developed. Starting with text files of m/z ratios and their ion abundances from mass spectra acquired at low, moderate, and high collision energies, the ion extraction program UP) compiled lists for the most abundant monoisotopic ions of their exact masses and the RIAs of the +1 and +2 isotopic peaks when abundance thresholds were met; precursor ions; and higher-mass, precursor-related species. The ion correlation program (ICP) determined if a precursor ion composition could yield a product ion and corresponding neutral loss compositions for each product ion in turn. The input and output program (IOP) provided the ICP with each precursor ion:product ion pair for multiple sets of error limits and prepared correlation lists for single or multiple precursor ions. The software determined the correct precursor ion compositions for 21 individual standards and for three- and seven-component mixtures. Partial deconvolution of composite mass spectra was achieved based on exact masses and RIAs, rather than on chromatography. Published in 2008 by John Wiley & Sons, Ltd.
机译:在意外,故意或与天气相关的化学物质分散(分散事件)之后,快速确定质谱图中离子的元素组成对于临时鉴定化合物至关重要。与JEOL AccuTOF(R)质谱仪连接的实时(DART)(R)离子源的直接分析提供了全扫描质谱图中大多数离子的精确质量,准确度在2 mDa之内,相对同位素丰度(RIA),准确度在2mDa之内15-20%的同位素离子丰富。为了加快确定前体离子和大多数产物离子以及中性损失的正确组成的速度,开发了一套三部分的软件套件。从在低,中和高碰撞能量下获得的质谱图的m / z比值及其离子丰度的文本文件开始,离子提取程序UP)汇编列出了其准确质量和RIA的最丰富的单同位素离子满足丰度阈值时,+ 1和+2同位素峰;前体离子;以及更高质量的前体相关物种。离子相关程序(ICP)确定前体离子成分是否可以依次生成产物离子和相应的中性损失成分。输入和输出程序(IOP)为ICP提供了每对前体离子:副产物离子对,用于多组误差限制,并为单个或多个前体离子提供了相关列表。该软件为21种单独的标准物以及三组分和七组分混合物确定了正确的前体离子组成。复合质谱的部分去卷积是基于精确质量数和RIA而不是色谱法完成的。 John Wiley&Sons,Ltd.于2008年出版。

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