Chen Yi-Jun, Zeng Hai-Sheng, Jin Hong-Lei, Wang Hong-Bin
State Key Laboratory of Traditional Chinese Medicine/School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, Guangzhou, 510006, China.
Guangdong Provincial Kye Laboratory of Prescription and Syndrome, Guangzhou, 510006, China.
Adv Biotechnol (Singap). 2024 Feb 15;2(1):6. doi: 10.1007/s44307-024-00014-y.
Mass spectrometry imaging (MSI) serves as a valuable tool enabling researchers to scrutinize various compounds, peptides, and proteins within a sample, providing detailed insights at both elemental and molecular levels. This innovative technology transforms information obtained from a mass spectrometer- encompassing ionic strength, mass-to-charge ratio, and ionized molecule coordinates-within a defined region into a pixel-based model. Consequently, it reconstructs the spatial distribution of ions, allowing for a comprehensive understanding of molecular landscapes. The significance of MSI lies in its ability to offer multiple advantages, including straightforward sample preparation and remarkable sensitivity, all achieved without the necessity for labeling. Particularly in the realm of plant biology, MSI finds frequent application in examining the distribution of target metabolites and other components within plant tissues. This review delves into the fundamental principles, distinguishing features, merits, and applications of three prominent MSI technologies. Furthermore, we aim to assist readers in navigating the utilization of MSI in their plant biology research by discussing primary challenges, proposing potential solutions, and elucidating future prospects associated with this cutting-edge technology.
质谱成像(MSI)是一种有价值的工具,使研究人员能够仔细研究样品中的各种化合物、肽和蛋白质,在元素和分子水平上提供详细的见解。这项创新技术将从质谱仪获得的信息——包括离子强度、质荷比和离子化分子坐标——在一个定义区域内转换为基于像素的模型。因此,它重建了离子的空间分布,从而能够全面了解分子景观。MSI的重要性在于它能够提供多种优势,包括简单的样品制备和出色的灵敏度,所有这些都无需标记即可实现。特别是在植物生物学领域,MSI经常用于检查植物组织内目标代谢物和其他成分的分布。这篇综述深入探讨了三种主要MSI技术的基本原理、显著特点、优点和应用。此外,我们旨在通过讨论主要挑战、提出潜在解决方案以及阐明与这项前沿技术相关的未来前景,帮助读者在植物生物学研究中运用MSI。