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用于质谱分析的解吸电喷雾电离源的3D打印集成。

Integration of 3D-printing for a desorption electrospray ionization source for mass spectrometry.

作者信息

Zemaitis Kevin J, Wood Troy D

机构信息

Department of Chemistry, Natural Sciences Complex, University at Buffalo, State University of New York, Buffalo, New York 14260-3000, USA.

出版信息

Rev Sci Instrum. 2020 Oct 1;91(10):104102. doi: 10.1063/5.0004626.

Abstract

The field of ambient ionization mass spectrometry has witnessed the development of many novel and capable methods for the analysis and imaging of surfaces, with desorption electrospray ionization being a prominent technique that has been commercialized. The adaptation of this technique to existing mass spectrometry platforms requires a laboratory-built solution manufactured with the capability of fine, stable adjustments of the electrospray emitter for liquid or solid sampling purposes. The development, fabrication, and machining require tens of hours of labor for many custom solutions. Herein described is a highly modifiable alternative approach for the fabrication of a desorption electrospray ionization source, using computer-aided design and fused deposition modeling to three-dimensionally print a source platform that utilizes standard accessories of a commercial Bruker Daltonics mass spectrometer. Three-dimensional printing allows for the inexpensive, rapid development of highly modifiable plastic parts, with the total printing time of the apparatus requiring a singular day and only a few dollars of material using a consumer grade printer. To demonstrate the utility of this printed desorption electrospray ionization source, it was fitted on an unmodified Fourier transform ion cyclotron resonance mass spectrometer for a lipid fingerprint analysis in serial sections of rat brain tissue, with the acquisition of line scans of dye-coated slides for the demonstration of serial acquisition.

摘要

常压电离质谱领域已经涌现出许多用于表面分析和成像的新颖且有效的方法,其中解吸电喷雾电离是一种已实现商业化的重要技术。将该技术应用于现有的质谱平台需要实验室自行构建解决方案,所制造的设备应具备精细、稳定地调节电喷雾发射器以用于液体或固体采样的能力。对于许多定制解决方案而言,开发、制造和加工需要耗费数十小时的人工。本文介绍了一种高度可修改的替代方法来制造解吸电喷雾电离源,即利用计算机辅助设计和熔融沉积建模三维打印一个源平台,该平台使用商业布鲁克道尔顿公司质谱仪的标准配件。三维打印能够以低成本快速开发高度可修改的塑料部件,使用消费级打印机时,该设备的总打印时间只需一天,材料成本仅几美元。为了证明这种打印的解吸电喷雾电离源的实用性,将其安装在未改装的傅里叶变换离子回旋共振质谱仪上,用于大鼠脑组织连续切片的脂质指纹分析,并采集染料包被载玻片的线扫描图像以演示连续采集。

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