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低温等离子体电离质谱成像(LTP-MSI)系统的“即插即用”组装

'Plug and Play' assembly of a low-temperature plasma ionization mass spectrometry imaging (LTP-MSI) system.

作者信息

Maldonado-Torres Mauricio, López-Hernández José Fabricio, Jiménez-Sandoval Pedro, Winkler Robert

机构信息

Department of Biotechnology and Biochemistry, CINVESTAV Unidad Irapuato, Irapuato, Mexico.

Department of Biotechnology and Biochemistry, CINVESTAV Unidad Irapuato, Irapuato, Mexico.

出版信息

J Proteomics. 2014 May 6;102:60-5. doi: 10.1016/j.jprot.2014.03.003. Epub 2014 Mar 15.

Abstract

Mass spectrometry imaging (MSI) is of high and growing interest in life science research, but the investment for necessary equipment is often prohibitive for small research groups. Therefore, we developed a basic MSI system from low cost 'Plug and Play' components, which are connected to the Universal Serial Bus (USB) of a standard computer. Our open source software OpenMZxy (http://www.bioprocess.org/openmzxy) enables automatic and manual sampling, as well as the recording of position data. For ionization we used a low-temperature plasma probe (LTP), coupled to a quadrupole mass analyzer. The current set-up has a practical resolution of 1mm, and a sampling area of 100×100mm, resulting in up to 10,000 sampling points. Our prototype is easy and economical to adopt for different types of mass analyzers. We prove the usability of the LTP-MSI system for macroscopic samples by imaging the distribution of metabolites in the longitudinal cross-cut of a chili (Capsicum annuum, 'Jalapeño pepper') fruit. The localization of capsaicin in the placenta could be confirmed. But additionally, yet unknown low molecular weight compounds were detected in defined areas, which underline the potential of LTP-MSI for the imaging of volatile and semi-volatile metabolites and for the discovery of new natural products. Biological significance Knowledge about the spatial distribution of metabolites, proteins, or lipids in a given tissue often leads to novel findings in medicine and biology. Therefore, mass spectrometry based imaging (MSI) is becoming increasingly popular in life science research. However, the investment for necessary equipment is often prohibitive for small research groups. We built a prototype with an ambient ionization source, which is easy and economical to adopt for different types of mass analyzers. Therefore, we hope that our system contributes to a broader use of mass spectrometry imaging for answering biological questions.

摘要

质谱成像(MSI)在生命科学研究中备受关注且热度不断上升,但对于小型研究团队而言,购置必要设备的成本往往过高。因此,我们利用低成本的“即插即用”组件开发了一套基础MSI系统,这些组件与标准计算机的通用串行总线(USB)相连。我们的开源软件OpenMZxy(http://www.bioprocess.org/openmzxy)可实现自动和手动采样以及位置数据记录。我们使用了与四极杆质量分析仪相连的低温等离子体探头(LTP)进行离子化。当前装置的实际分辨率为1毫米,采样面积为100×100毫米,最多可产生10,000个采样点。我们的原型易于适配不同类型的质量分析仪,且成本低廉。通过对辣椒(辣椒属,“墨西哥胡椒”)果实纵切面中代谢物分布进行成像,我们证明了LTP-MSI系统对宏观样本的可用性。辣椒素在胎盘中的定位得以确认。此外,在特定区域还检测到了一些未知的低分子量化合物,这凸显了LTP-MSI在挥发性和半挥发性代谢物成像以及新天然产物发现方面的潜力。生物学意义了解给定组织中代谢物、蛋白质或脂质的空间分布情况往往能在医学和生物学领域带来新发现。因此,基于质谱的成像(MSI)在生命科学研究中越来越受欢迎。然而,对于小型研究团队来说,购置必要设备的成本通常过高。我们构建了一个配备常压电离源的原型,它易于适配不同类型的质量分析仪,且成本低廉。因此,我们希望我们的系统有助于更广泛地应用质谱成像来解答生物学问题。

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