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首页> 外文期刊>Analytical chemistry >Imaging MS Methodology for More Chemical Information in Less Data Acquisition Time Utilizing a Hybrid Linear Ion Trap-Orbitrap Mass Spectrometer
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Imaging MS Methodology for More Chemical Information in Less Data Acquisition Time Utilizing a Hybrid Linear Ion Trap-Orbitrap Mass Spectrometer

机译:利用混合线性离子阱-轨道阱质谱仪对MS方法进行成像,以更少的数据获取时间获得更多的化学信息

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摘要

A novel mass spectrometric imaging method is developed to reduce the data acquisition time and provide rich chemical information using a hybrid linear ion traporbitrap mass spectrometer. In this method, the linear ion trap and orbitrap are used in tandem to reduce the acquisition time by incorporating multiple linear ion trap scans during an orbitrap scan utilizing a spiral raster step plate movement. The data acquisition time was decreased by 43-49percent in the current experiment compared to that of orbitrap-only scans; however, 75percent or more time could be saved for higher mass resolution and with a higher repetition rate laser. Using this approach, a high spatial resolution of 10 (mu)m was maintained at ion trap imaging, while orbitrap spectra were acquired at a lower spatial resolution, 20-40 (mu)m, all with far less data acquisition time. Furthermore, various MS imaging methods were developed by interspersing MS/MS and MS~(n) ion trap scans during orbitrap scans to provide more analytical information on the sample. This method was applied to differentiate and localize structural isomers of several flavonol glycosides from an Arabidopsis flower petal in which MS/MS, MS~(n), ion trap, and orbitrap images were all acquired in a single data acquisition.
机译:开发了一种新颖的质谱成像方法,以减少数据采集时间,并使用混合线性离子阱阱质谱仪提供丰富的化学信息。在此方法中,线性离子阱和轨道阱串联使用,通过在利用螺旋光栅步进板运动的轨道阱扫描期间合并多个线性离子阱扫描来减少采集时间。与仅使用orbitrap的扫描相比,当前实验的数据获取时间减少了43-49%。但是,对于更高的质量分辨率和更高的重复频率激光器,可以节省75%或更多的时间。使用这种方法,在离子阱成像中保持了10μm的高空间分辨率,而以较低的空间分辨率20-40μm捕获了orbitrap光谱,所有数据采集时间都大大减少了。此外,通过在轨道阱扫描期间散布MS / MS和MS〜(n)离子阱扫描,开发了各种MS成像方法,以提供有关样品的更多分析信息。该方法用于区分和定位拟南芥花瓣中几种黄酮糖苷的结构异构体,其中,在一次数据采集中均获得了MS / MS,MS〜(n),离子阱和轨道阱图像。

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