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一种循环离子淌度-质谱系统。

A Cyclic Ion Mobility-Mass Spectrometry System.

机构信息

Waters Corporation , Stamford Avenue, Altrincham Road , Wilmslow SK9 4AX , U.K.

出版信息

Anal Chem. 2019 Jul 2;91(13):8564-8573. doi: 10.1021/acs.analchem.9b01838. Epub 2019 Jun 12.

Abstract

Improvements in the performance and availability of commercial instrumentation have made ion mobility-mass spectrometry (IM-MS) an increasingly popular approach for the structural analysis of ionic species as well as for separation of complex mixtures. Here, a new research instrument is presented which enables complex experiments, extending the current scope of IM technology. The instrument is based on a Waters SYNAPT G2-S i IM-MS platform, with the IM separation region modified to accept a cyclic ion mobility (cIM) device. The cIM region consists of a 98 cm path length, closed-loop traveling wave (TW)-enabled IM separator positioned orthogonally to the main ion optical axis. A key part of this geometry and its flexibility is the interface between the ion optical axis and the cIM, where a planar array of electrodes provides control over the TW direction and subsequent ion motion. On either side of the array, there are ion guides used for injection, ejection, storage, and activation of ions. In addition to single and multipass separations around the cIM, providing selectable mobility resolution, the instrument design and control software enable a range of "multifunction" experiments such as mobility selection, activation, storage, IMS , and importantly custom combinations of these functions. Here, the design and performance of the cIM-MS instrument is highlighted, with a mobility resolving power of approximately 750 demonstrated for 100 passes around the cIM device using a reverse sequence peptide pair. The multifunction capabilities are demonstrated through analysis of three isomeric pentasaccharide species and the small protein ubiquitin.

摘要

商业仪器的性能和可用性的提高,使得离子淌度-质谱(IM-MS)成为分析离子物种结构以及分离复杂混合物的一种越来越受欢迎的方法。这里介绍了一种新的研究仪器,它可以实现复杂的实验,扩展了目前的 IM 技术的应用范围。该仪器基于 Waters SYNAPT G2-S i IM-MS 平台,对 IM 分离区域进行了修改,以容纳循环离子淌度(cIM)装置。cIM 区域由 98 厘米的路径长度、闭环行波(TW)启用的 IM 分离器组成,与主离子光轴正交定位。这种几何形状及其灵活性的一个关键部分是离子光轴和 cIM 之间的接口,其中平面电极阵列提供了对 TW 方向和随后的离子运动的控制。在阵列的两侧,有用于注入、引出、存储和激活离子的离子导向器。除了在 cIM 周围进行单和多遍分离,提供可选的淌度分辨率外,仪器设计和控制软件还能够实现一系列“多功能”实验,如淌度选择、激活、存储、IMS 等,以及这些功能的重要自定义组合。这里重点介绍了 cIM-MS 仪器的设计和性能,使用反向序列肽对在 cIM 装置上进行 100 遍循环时,展示了约 750 的淌度分辨率。通过分析三种同分异构的五糖物种和小蛋白泛素,展示了多功能的能力。

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