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激光烧蚀远程大气压光电离/化学电离的直接三维质谱成像。

Direct Three-Dimensional Mass Spectrometry Imaging with Laser Ablation Remote Atmospheric Pressure Photoionization/Chemical Ionization.

机构信息

Department of Inorganic and Analytical Chemistry, Faculty of Chemistry, Rzeszów University of Technology, 6 Powstan ́ców Warszawy Ave., Rzeszów 35-959. Poland.

Doctoral School of Engineering and Technical Sciences at the Rzeszów University of Technology, 8 Powstan ́ców Warszawy Ave., Rzeszów 35-959, Poland.

出版信息

Anal Chem. 2024 Aug 13;96(32):13326-13334. doi: 10.1021/acs.analchem.4c03402. Epub 2024 Jul 30.

Abstract

The laser ablation remote atmospheric pressure photoionization/chemical ionization (LARAPPI/CI) platform coupled to an ultrahigh resolution quadrupole-time-of-flight (QToF) mass spectrometer was developed and employed for the first direct three-dimensional (3D) mass spectrometry imaging (MSI) of metabolites in human and plant tissues. Our solution for 3D MSI does not require sample modification or cutting into thin slices. Ablation characteristics of an optical system based on a diffraction optical element are studied and used for voxel stacking to directly remove layers of tissues. Agar gel, red radish, kiwi, human kidney cancer, and normal tissue samples were used for the tests of this new system. The 2D and 3D ion images vividly illustrate differences in the abundances of selected metabolites between cancerous and noncancerous regions of the kidney tissue and also between different parts of plant tissues. The LARAPPI/CI MSI setup is also the first example of the successful use of combined dopant-assisted atmospheric pressure photoionization (DA-APPI) and atmospheric pressure chemical ionization (APCI) ion source for mass spectrometry imaging.

摘要

我们开发了一种将激光烧蚀常压光电离/化学电离(LARAPPI/CI)平台与超高效分辨率四极杆飞行时间(QToF)质谱仪相耦合的系统,并首次将其用于人体和植物组织代谢物的直接三维(3D)质谱成像(MSI)。我们的 3D MSI 解决方案不需要对样品进行修饰或切成薄片。我们研究了基于衍射光学元件的光学系统的烧蚀特性,并将其用于体素堆叠,以直接去除组织层。琼脂凝胶、红萝卜、奇异果、人肾癌和正常组织样本被用于该新系统的测试。2D 和 3D 离子图像生动地说明了肾癌组织癌变和非癌变区域以及植物组织不同部位之间选定代谢物丰度的差异。LARAPPI/CI MSI 系统也是首次成功将掺杂物辅助大气压光电离(DA-APPI)和大气压化学电离(APCI)离子源结合用于质谱成像的实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a82a/11325297/b1ceea684137/ac4c03402_0001.jpg

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