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Towards High-Resolution Tissue Imaging Using Nanospray Desorption Electrospray Ionization Mass Spectrometry Coupled to Shear Force Microscopy

机译:迈向高分辨率组织成像使用纳米喷雾解吸电喷雾电离质谱联用剪切力显微镜

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摘要

Constant mode ambient mass spectrometry imaging (MSI) of tissue sections with high lateral resolution of better than 10 μm was performed by combining shear force microscopy with nanospray desorption electrospray ionization (nano-DESI). Shear force microscopy enabled precise control of the distance between the sample and nano-DESI probe during MSI experiments and provided information on sample topography. Proof-of-concept experiments were performed using lung and brain tissue sections representing spongy and dense tissues, respectively. Topography images obtained using shear force microscopy were comparable to the results obtained using contact profilometry over the same region of the tissue section. Variations in tissue height were found to be dependent on the tissue type and were in the range of 0–5 μm for lung tissue and 0–3 μm for brain tissue sections. Ion images of phospholipids obtained in this study are in good agreement with literature data. Normalization of nano-DESI MSI images to the signal of the internal standard added to the extraction solvent allowed us to construct high-resolution ion images free of matrix effects.
机译:通过将剪切力显微镜与纳米喷雾解吸电喷雾电离(nano-DESI)相结合,对组织切片进行恒模环境质谱成像(MSI),其横向分辨率优于10μm。剪切力显微镜可以在MSI实验期间精确控制样品与纳米DESI探针之间的距离,并提供有关样品形貌的信息。使用分别代表海绵状组织和致密组织的肺和脑组织切片进行了概念验证实验。使用剪切力显微镜获得的形貌图像与在组织切片的相同区域上使用接触轮廓测定法获得的结果相当。发现组织高度的变化取决于组织类型,肺组织的变化范围为0–5μm,脑组织的变化范围为0–3μm。在这项研究中获得的磷脂的离子图像与文献数据非常吻合。纳米DESI MSI图像对添加到萃取溶剂中的内标信号进行归一化,使我们能够构建没有基质效应的高分辨率离子图像。

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