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Ultra-High Mass Resolving Power, Mass Accuracy, and Dynamic Range MALDI Mass Spectrometry Imaging by 21-T FT-ICR MS

机译:超高质量分辨率,质量准确度和动态范围MANDI质谱成像通过21-T FT-ICR MS成像

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摘要

Detailed characterization of complex biological surfaces by matrix-assisted laser desorption/ionization (MALDI) mass spectrometry imaging (MSI) requires instrumentation that is capable of high mass resolving power, mass accuracy, and dynamic range. Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS) offers the highest mass spectral performance for MALDI MSI experiments, and often reveals molecular features that are unresolved on lower performance instrumentation. Higher magnetic field strength improves all performance characteristics of FT-ICR; mass resolving power improves linearly, while mass accuracy and dynamic range improve quadratically with magnetic field strength. Here, MALDI MSI at 21T is demonstrated for the first time: mass resolving power in excess of 1 600 000 (at m/z 400), root-mean-square mass measurement accuracy below 100 ppb, and dynamic range per pixel over 500:1 were obtained from the direct analysis of biological tissue sections. Molecular features with m/z differences as small as 1.79 mDa were resolved and identified with high mass accuracy. These features allow for the separation and identification of lipids to the underlying structures of tissues. The unique molecular detail, accuracy, sensitivity, and dynamic range combined in a 21T MALDI FT-ICR MSI experiment enable researchers to visualize molecular structures in complex tissues that have remained hidden until now. The instrument described allows for future innovative, such as high-end studies to unravel the complexity of biological, geological, and engineered organic material surfaces with an unsurpassed detail.
机译:通过基质辅助激光解吸/电离(MALDI)质谱成像(MSI)的复杂生物表面的详细表征需要能够高质量分辨率,质量准确度和动态范围的仪器。傅里叶变换离子回旋谐振质谱(FT-ICR MS)为MALDI MSI实验提供了最高的质谱性能,并且通常揭示在较低的性能仪器上未解决的分子特征。较高的磁场强度提高了FT-ICR的所有性能特征;质量分辨率线性可提高,而质量准确度和动态范围以磁场强度相当地改善。这里,首次进行21T的MALDI MSI:质量分辨率超过1 600000(在M / Z 400),根均方质量测量精度低于100ppb,每像素的动态范围超过500: 1从生物组织切片的直接分析中获得。分子特征与1.79MDA一样小的M / Z差异,并以高质量精度识别。这些特征允许分离和鉴定脂质对组织的底层结构。在21T Maldi FT-ICR MSI实验中组合的独特的分子细节,精度,灵敏度和动态范围使研究人员能够在现在留下隐藏的复杂组织中可视化分子结构。所描述的仪器允许未来的创新,例如高端研究,以解开生物,地质和工程化有机材料表面的复杂性,无与伦比的细节。

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  • 来源
    《Analytical chemistry》 |2020年第4期|共10页
  • 作者单位

    Maastricht Univ Maastricht MultiModal Mol Imaging M4I Inst Div Imaging Mass Spectrometry IMS NL-6629 ER Maastricht Netherlands;

    Maastricht Univ Maastricht MultiModal Mol Imaging M4I Inst Div Imaging Mass Spectrometry IMS NL-6629 ER Maastricht Netherlands;

    Florida State Univ Natl High Magnet Field Lab Tallahassee FL 32310 USA;

    Maastricht Univ Maastricht MultiModal Mol Imaging M4I Inst Div Imaging Mass Spectrometry IMS NL-6629 ER Maastricht Netherlands;

    Maastricht Univ Maastricht MultiModal Mol Imaging M4I Inst Div Imaging Mass Spectrometry IMS NL-6629 ER Maastricht Netherlands;

    Florida State Univ Natl High Magnet Field Lab Tallahassee FL 32310 USA;

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