Biotechnology Division, CSIR-Institute of Himalayan Bioresource Technology, Palampur, Himachal Pradesh, India.
Academy of Scientific and Innovative Research, (AcSIR), Ghaziabad, India.
Crit Rev Anal Chem. 2024 Jul;54(1):175-191. doi: 10.1080/10408347.2022.2070000. Epub 2022 May 9.
Metabolomics aims to profile the extensive array of metabolites that exists in different types of matrices using modern analytical techniques. These techniques help to separate, identify, and quantify the plethora of chemical compounds at various analytical platforms. Hence, ion mobility spectrometry (IMS) has emerged as an advanced analytical approach, exclusively owing to the 3D separation of metabolites and their isomers. Furthermore, separated metabolites are identified based on their mass fragmentation pattern and CCS (collision cross-section) values. The IMS provides an advanced alternative dimension to separate the isomeric metabolites with enhanced throughput with lesser chemical noise. Thus, the present review highlights the types, factors affecting the resolution, and applications of IMMS (Ion mobility mass spectrometry) for isomeric separations, and ionic contaminants in the plant samples. Furthermore, an overview of IMS-based applications for the identification of plant metabolites (volatile and non-volatile) over the last few decades has been discussed, followed by future assumptions for creating IM-based databases. Such approaches could be significant to accelerate and improve our knowledge of the vast chemical diversity found in plants.
代谢组学旨在使用现代分析技术对不同类型基质中存在的大量代谢物进行分析。这些技术有助于在各种分析平台上分离、鉴定和定量大量的化学化合物。因此,离子淌度谱(IMS)已成为一种先进的分析方法,这主要归因于代谢物及其异构体的 3D 分离。此外,根据代谢物的质荷比碎裂模式和 CCS(碰撞截面)值来鉴定分离的代谢物。IMS 提供了一个先进的维度,可用于分离具有更高通量和更少化学噪声的异构代谢物。因此,本综述重点介绍了 IMMS(离子淌度质谱)在植物样品中用于异构体分离和离子污染物的类型、影响分辨率的因素及其应用。此外,还讨论了 IMS 技术在过去几十年中用于鉴定植物代谢物(挥发性和非挥发性)的应用概述,以及创建基于 IMS 的数据库的未来设想。这些方法可能对加速和提高我们对植物中发现的大量化学多样性的认识具有重要意义。