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多组学研究中的离子淌度质谱分析

[Ion Moblity Mass Spectrometry in Multi-omics Studies].

作者信息

Fochtman Daniel, Wojakowska Anna, Marczak Łukasz

机构信息

Pracownia Spektrometrii Mas, Instytut Chemii Bioorganicznej Polskiej Akademii Nauk, Poznań.

出版信息

Postepy Biochem. 2024 Jul 1;70(2):204-211. doi: 10.18388/pb.2021_530.

Abstract

Mass spectrometry (MS) as an analytical technique enables the identification and quantitative determination of proteins, metabolites, or lipids in a studied sample. However, this method has limitations regarding the number of molecules that can be identified at a given time. To increase the number of identifications, the application of ion mobility spectrometry (IMS) can be employed. This technique allows the separation of ions based on their mobility while traversing the analyser in a gradient of an electromagnetic field and opposing gas pressure. The separation is performed in conjunction with MS analysis, adding another dimension to the analysis, resulting in a significant improvement in the number of identified compounds and a reduction in noise. Alternatively, while maintaining the same number of identifications, analysis can be performed in a shorter time period. It is crucial to pay special attention to the type of IMS analyser used, as its specific implementation dictates further stages of analysis and ion detection capabilities.

摘要

质谱分析(MS)作为一种分析技术,能够对研究样本中的蛋白质、代谢物或脂质进行鉴定和定量测定。然而,该方法在给定时间内可鉴定的分子数量方面存在局限性。为了增加鉴定数量,可以采用离子淌度光谱法(IMS)。该技术允许离子在穿过分析仪时,基于其在电磁场梯度和反向气压中的淌度进行分离。这种分离与质谱分析结合进行,为分析增加了另一个维度,从而显著提高了鉴定化合物的数量并降低了噪声。或者,在保持相同鉴定数量的情况下,可以在更短的时间内完成分析。特别要注意所使用的离子淌度光谱分析仪的类型,因为其具体实施方式决定了后续的分析阶段和离子检测能力。

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