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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Imaging of peptides in the rat brain using MALDI-FTICR mass spectrometry
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Imaging of peptides in the rat brain using MALDI-FTICR mass spectrometry

机译:使用MALDI-FTICR质谱对大鼠大脑中的肽进行成像

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摘要

Analytical methods are pursued to measure the identity and location of biomolecules down to the subcellular (mu m) level. Available mass spectrometric imaging methods either compromise localization accuracy or identification accuracy in their analysis of surface biomolecules. In this study, imaging FTICR-MS is applied for the spatially resolved mass analysis of rat brain tissue with the aim to optimize protein identification by the high mass accuracy and online MS/MS capabilities of the technique. Mass accuracies up to 6 ppm were obtained in the direct MALDI-analysis of the tissue together with a spatial resolution of 200 Am. The spatial distributions of biomolecules differing in mass by less than 0.1 Da could be resolved, and are shown to differ significantly. Online MS/MS analysis of selected ions was demonstrated. A comparison of the FTICR-MS imaging results with stigmatic TOF imaging on the same sample is presented. To reduce the extended measuring times involved, it is recommended to restrict the FTICR-MS analyses to areas of interest as can be preselected by other, faster imaging methods.
机译:追求分析方法以测量直至亚细胞(μm)水平的生物分子的身份和位置。可用的质谱成像方法在分析表面生物分子时会损害定位精度或识别精度。在这项研究中,将FTICR-MS成像技术用于大鼠脑组织的空间分辨质量分析,旨在通过该技术的高质量精确度和在线MS / MS功能来优化蛋白质鉴定。在组织的直接MALDI分析中,可获得高达6 ppm的质量精度,空间分辨率为200 Am。质量差异小于0.1 Da的生物分子的空间分布可以解决,并且显示出显着差异。演示了所选离子的在线MS / MS分析。进行了FTICR-MS成像结果与同一样品上的散光TOF成像的比较。为了减少所涉及的延长的测量时间,建议将FTICR-MS分析限制在感兴趣的区域,而其他更快的成像方法可以预先选择这些区域。

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