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表面解吸介电阻挡放电电离质谱法。

Surface Desorption Dielectric-Barrier Discharge Ionization Mass Spectrometry.

机构信息

State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology , Harbin, Heilongjiang 150090, People's Republic of China.

School of Municipal and Environmental Engineering, Harbin Institute of Technology , Harbin, Heilongjiang 150090, People's Republic of China.

出版信息

Anal Chem. 2017 Jul 18;89(14):7333-7339. doi: 10.1021/acs.analchem.7b00323. Epub 2017 Jun 30.

Abstract

A variant of dielectric-barrier discharge named surface desorption dielectric-barrier discharge ionization (SDDBDI) mass spectrometry was developed for high-efficiency ion transmission and high spatial resolution imaging. In SDDBDI, a tungsten nanotip and the inlet of the mass spectrometer are used as electrodes, and a piece of coverslip is used as a sample plate as well as an insulating dielectric barrier, which simplifies the configuration of instrument and thus the operation. Different from volume dielectric-barrier discharge (VDBD), the microdischarges are generated on the surface at SDDBDI, and therefore the plasma density is extremely high. Analyte ions are guided directly into the MS inlet without any deflection. This configuration significantly improves the ion transmission efficiency and thus the sensitivity. The dependence of sensitivity and spatial resolution of the SDDBDI on the operation parameters were systematically investigated. The application of SDDBDI was successfully demonstrated by analysis of multiple species including amino acids, pharmaceuticals, putative cancer biomarkers, and mixtures of both fatty acids and hormones. Limits of detection (S/N = 3) were determined to be 0.84 and 0.18 pmol, respectively, for the analysis of l-alanine and metronidazole. A spatial resolution of 22 μm was obtained for the analysis of an imprinted cyclophosphamide pattern, and imaging of a "T" character was successfully demonstrated under ambient conditions. These results indicate that SDDBDI has high-efficiency ion transmission, high sensitivity, and high spatial resolution, which render it a potential tool for mass spectrometry imaging.

摘要

一种名为表面解吸介电阻挡放电电离(SDDBDI)的介电阻挡放电变体被开发用于高效离子传输和高空间分辨率成像。在 SDDBDI 中,钨纳米尖端和质谱仪的入口用作电极,而一片盖玻片既用作样品板,也用作绝缘介电阻挡层,这简化了仪器的配置,从而简化了操作。与体积介电阻挡放电(VDBD)不同,在 SDDBDI 上,微放电发生在表面上,因此等离子体密度极高。分析物离子无需任何偏转即可直接引导进入 MS 入口。这种配置显著提高了离子传输效率,从而提高了灵敏度。系统研究了 SDDBDI 的灵敏度和空间分辨率对操作参数的依赖性。通过对多种物质(包括氨基酸、药物、潜在的癌症生物标志物以及脂肪酸和激素混合物)的分析,成功地证明了 SDDBDI 的应用。分别对 l-丙氨酸和甲硝唑的分析,检测限(S/N = 3)为 0.84 和 0.18 pmol。对于印迹环磷酰胺图案的分析,获得了 22 μm 的空间分辨率,并在环境条件下成功地演示了“T”字符的成像。这些结果表明,SDDBDI 具有高效的离子传输、高灵敏度和高空间分辨率,使其成为质谱成像的潜在工具。

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