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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Modifications to a commercially available linear mass spectrometer for mass-resolved microscopy with the pixel imaging mass spectrometry (PImMS) camera
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Modifications to a commercially available linear mass spectrometer for mass-resolved microscopy with the pixel imaging mass spectrometry (PImMS) camera

机译:使用像素成像质谱(PImMS)相机对用于质量分辨显微镜的市售线性质谱仪的修改

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Imaging mass spectrometry is a powerful analytical technique capable of accessing a large volume of spatially resolved, chemical data from two-dimensional samples. Probing the entire surface of a sample simultaneously requires a detector with high spatial and temporal resolutions, and the ability to observe events relating to different mass-to-charge ratios. METHODS: A commercially available time-of-flight mass spectrometer, designed for matrix-assisted laser desorption/ ionization (MALDI) analysis, was combined with the novel pixel imaging mass spectrometry (PImMS) camera in order to perform multi-mass, microscope-mode imaging experiments. A number of minor modifications were made to the spectrometer hardware and ion optics so that spatial imaging was achieved for a number of small molecules. RESULTS: It was shown that a peak width of Δm_(50%)< 1 m/z unit across the range 200≤m/z ≤ 800 can be obtained while also achieving an optimum spatial resolution of 25 μm. It was further shown that these data were obtained simultaneously for all analytes present without the need to scan the experimental parameters. CONCLUSIONS: This work demonstrates the capability of multi-mass, microscope-mode imaging to reduce the acquisition time of spatially distributed analytes such as multi-arrays or biological tissue sections. It also shows that such an instrument can be commissioned by effecting relatively minor modifications to a conventional commercial machine.
机译:成像质谱是一种强大的分析技术,能够从二维样本中访问大量空间分辨的化学数据。同时探测样品的整个表面需要具有高空间和时间分辨率的检测器,并具有观察与不同质荷比有关的事件的能力。方法:将设计用于基质辅助激光解吸/电离(MALDI)分析的市售飞行时间质谱仪与新型像素成像质谱仪(PImMS)相机组合,以执行多质量显微镜模式成像实验。对光谱仪的硬件和离子光学器件进行了许多小的修改,以便对许多小分子实现了空间成像。结果表明,在200≤m/ z≤800的范围内,可以获得Δm_(50%)<1 m / z单位的峰宽,同时还实现了25μm的最佳空间分辨率。进一步表明,无需扫描实验参数即可同时获得所有存在的所有分析物的这些数据。结论:这项工作证明了多质量显微镜模式成像的能力,可以减少空间分布的分析物(如多阵列或生物组织切片)的采集时间。它还表明,可以通过对常规商用机器进行较小的改动来调试这种仪器。

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