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Next-generation technologies for spatial proteomics: Integrating ultra-high speed MALDI-TOF and high mass resolution MALDI FTICR imaging mass spectrometry for protein analysis

机译:下一代空间蛋白质组学技术:集成超高速MALDI-TOF和高分辨率MALDI FTICR成像质谱用于蛋白质分析

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摘要

MALDI imaging mass spectrometry is a powerful analytical tool enabling the visualization of biomolecules in tissue. However, there are unique challenges associated with protein imaging experiments including the need for higher spatial resolution capabilities, improved image acquisition rates, and better molecular specificity. Here we demonstrate the capabilities of ultra-high speed MALDI-TOF and high mass resolution MALDI FTICR IMS platforms as they relate to these challenges. High spatial resolution MALDI-TOF protein images of rat brain tissue and cystic fibrosis lung tissue were acquired at image acquisition rates >25 pixels/s. Structures as small as 50 mu m were spatially resolved and proteins associated with host immune response were observed in cystic fibrosis lung tissue. Ultra-high speed MALDI-TOF enables unique applications including megapixel molecular imaging as demonstrated for lipid analysis of cystic fibrosis lung tissue. Additionally, imaging experiments using MALDI FTICR IMS were shown to produce data with high mass accuracy (<5 ppm) and resolving power (similar to 75 000 at m/z 5000) for proteins up to similar to 20 kDa. Analysis of clear cell renal cell carcinoma usingMALDI FTICR IMS identified specific proteins localized to healthy tissue regions, within the tumor, and also in areas of increased vascularization around the tumor.
机译:MALDI成像质谱是一种功能强大的分析工具,可实现组织中生物分子的可视化。但是,与蛋白质成像实验相关的独特挑战包括对更高空间分辨率功能,更高的图像采集速率和更好的分子特异性的需求。在这里,我们演示了超高速MALDI-TOF和高分辨率MALDI FTICR IMS平台与这些挑战相关的功能。以> 25像素/ s的图像采集速率采集大鼠脑组织和囊性纤维化肺组织的高空间分辨率MALDI-TOF蛋白图像。小至50微米的结构在空间上被解析,在囊性纤维化肺组织中观察到与宿主免疫反应相关的蛋白质。超高速MALDI-TOF可实现独特的应用,包括兆像素分子成像,如囊性纤维化肺组织脂质分析所证明的。此外,显示了使用MALDI FTICR IMS进行的成像实验可产生高质量的数据(<5 ppm)和分辨力(类似于m / z 5000的75000),数据最大可达20 kDa。使用MALDI FTICR IMS对透明细胞肾细胞癌进行分析,可以鉴定出特定蛋白,这些蛋白位于肿瘤内健康组织区域以及肿瘤周围血管形成增加的区域。

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