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一种用于增强纳升电喷雾电离质谱中FAIMS离子传输和灵敏度的空气动力学机制。

On an aerodynamic mechanism to enhance ion transmission and sensitivity of FAIMS for nano-electrospray ionization-mass spectrometry.

作者信息

Prasad Satendra, Belford Michael W, Dunyach Jean-Jacques, Purves Randy W

机构信息

Thermo Fisher Scientific, San Jose, CA, 95134, USA,

出版信息

J Am Soc Mass Spectrom. 2014 Dec;25(12):2143-53. doi: 10.1007/s13361-014-0995-8. Epub 2014 Sep 30.

Abstract

Simulations show that significant ion losses occur within the commercial electrospray ionization-field asymmetric waveform ion mobility spectrometer (ESI-FAIMS) interface owing to an angular desolvation gas flow and because of the impact of the FAIMS carrier gas onto the inner rf (radio frequency) electrode. The angular desolvation gas flow diverts ions away from the entrance plate orifice while the carrier gas annihilates ions onto the inner rf electrode. A novel ESI-FAIMS interface is described that optimizes FAIMS gas flows resulting in large improvements in transmission. Simulations with the bromochloroacetate anion showed an improvement of ~9-fold to give ~70% overall transmission). Comparable transmission improvements were attained experimentally for six peptides (2+) in the range of m/z 404.2 to 653.4 at a chromatographic flow rate of 300 nL/min. Selected ion chromatograms (SIC) from nano-LC-FAIMS-MS analyses showed 71% (HLVDEPQNLIK, m/z 653.4, 2+) to 95% (LVNELTEFAK, m/z 582.3, 2+) of ion signal compared with ion signal in the SIC from LC-MS analysis. IGSEVYHNLK (580.3, 2+) showed 24% more ion signal compared with LC-MS and is explained by enhanced desolvation in FAIMS. A 3-10 times lower limits of quantitation (LOQ) (<15% RSD) was achieved for chemical noise limited peaks with FAIMS. Peaks limited by ion statistics showed subtle improvement in RSD and yielded comparable LOQ to that attained with nano-LC-MS (without FAIMS). These improvements were obtained using a reduced FAIMS separation gap (from 2.5 to 1.5 mm) that results in a shorter residence time (13.2 ms ± 3.9 ms) and enables the use of a helium free transport gas (100% nitrogen).

摘要

模拟结果表明,在商用电喷雾电离-场不对称波形离子迁移谱仪(ESI-FAIMS)接口内,由于角向去溶剂化气流以及FAIMS载气对内部射频(rf)电极的冲击,会发生显著的离子损失。角向去溶剂化气流使离子偏离入口板孔,而载气则使离子在内部射频电极上湮灭。本文描述了一种新型的ESI-FAIMS接口,该接口优化了FAIMS气流,从而使传输有了大幅改善。对溴氯乙酸根阴离子的模拟显示,改善了约9倍,总体传输率达到约70%。在300 nL/min的色谱流速下,对六种m/z在404.2至653.4范围内的二价肽进行实验,也获得了类似的传输改善。纳升液相色谱-场不对称波形离子迁移谱-质谱(nano-LC-FAIMS-MS)分析的选择离子色谱图(SIC)显示,与液相色谱-质谱(LC-MS)分析的SIC中的离子信号相比,离子信号的比例为71%(HLVDEPQNLIK,m/z 653.4,2+)至95%(LVNELTEFAK,m/z 582.3,2+)。IGSEVYHNLK(580.3,2+)的离子信号比LC-MS多24%,这是由于在FAIMS中去溶剂化增强所致。对于受化学噪声限制的峰,使用FAIMS可实现低3至10倍的定量限(LOQ)(<15%相对标准偏差)。受离子统计限制的峰在相对标准偏差方面有细微改善,定量限与纳升液相色谱-质谱(nano-LC-MS,无FAIMS)相当。这些改进是通过减小FAIMS分离间隙(从2.5毫米减小到1.5毫米)实现的,这导致了更短的停留时间(13.2毫秒±3.9毫秒),并能够使用无氦传输气体(100%氮气)。

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