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在轨道阱质谱仪上使用高分辨漂移管离子淌度和不同的漂移气体混合物分离生物相关的对映异构体。

Separation of biologically relevant isomers on an Orbitrap mass spectrometer using high-resolution drift tube ion mobility and varied drift gas mixtures.

机构信息

Excellims Corporation, Acton, MA, USA.

Service de Pharmacologie et d'Immunoanalyse, Laboratoire d'Etude du Métabolisme des Médicaments, CEA, INRA, Université Paris Saclay, MetaboHUB, F-91191, Gif-sur-Yvette, France.

出版信息

Rapid Commun Mass Spectrom. 2019 Jul;33 Suppl 2:3-10. doi: 10.1002/rcm.8414. Epub 2019 Apr 10.

Abstract

RATIONALE

Atmospheric pressure drift tube ion mobility is a powerful addition to the Orbitrap mass spectrometer enabling direct separation of isomers. Apart from offering high resolving power in a compact design, it also facilitates optimization of the separation gas, as shown here for a series of biologically relevant isomer pairs.

METHODS

An Excellims MA3100 High-Resolution Atmospheric Pressure Ion Mobility Spectrometer (HR-IMS) was coupled to a Thermo Scientific™ Q Exactive™ Focus hybrid quadrupole-Orbitrap™ mass spectrometer, using an Excellims Directspray™ Electrospray Ionization source and a gas mixture setup to provide various drift gases (air, CO and mixtures). This instrument combination was used to separate isomers of eight pairs of metabolites and gangliosides, optimizing drift gas conditions for best separation of each set.

RESULTS

All but one of the isomers pairs provided could be partially or fully separated by the HR-IMS-MS combination using ion mobility drift times. About half of the separated compounds showed significantly better analytical separation when analyzed in a mixture of CO and air rather than air or CO alone. Resolving power of up to 102 was achieved using the 10 cm atmospheric drift tube ion mobility add-on for the Orbitrap mass spectrometer.

CONCLUSIONS

The present analysis demonstrates the usefulness of using atmospheric drift tube IMS on an Orbitrap mass spectrometer to characterize the isomeric composition of samples. It also highlights the potential benefits of being able to quickly optimize the drift gas composition to selectively maximize the mobility difference for isomer separation.

摘要

原理

大气压漂移管离子淌度是轨道阱质谱仪的强大补充,可实现异构体的直接分离。除了在紧凑的设计中提供高分辨率外,它还便于分离气体的优化,如这里所示,用于一系列具有生物学相关性的异构体对。

方法

采用 Excellims MA3100 高分辨率大气压离子淌度谱仪(HR-IMS)与 Thermo Scientific Q Exactive Focus 杂交四极杆-轨道阱质谱仪联用,采用 Excellims Directspray 电喷雾电离源和气体混合物设置,提供各种漂移气体(空气、CO 和混合物)。该仪器组合用于分离 8 对代谢物和神经节苷脂异构体对,优化每种异构体对的最佳分离条件。

结果

使用 HR-IMS-MS 组合,除一对异构体外,其余异构体对均可通过离子淌度漂移时间进行部分或完全分离。当在 CO 和空气的混合物中而不是在空气或 CO 中分析时,约一半的分离化合物显示出明显更好的分析分离。使用 10 cm 大气压漂移管离子淌度附加件,可实现高达 102 的分辨率。

结论

本分析证明了在轨道阱质谱仪上使用大气压漂移管 IMS 来表征样品的异构组成的有用性。它还突出了能够快速优化漂移气体组成以选择性地最大化异构体分离的离子淌度差异的潜在优势。

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