University of Montreal, Montreal, Quebec, Canada.
J Proteomics. 2012 Aug 30;75(16):4883-4892. doi: 10.1016/j.jprot.2012.04.005. Epub 2012 Apr 14.
Imaging mass spectrometry (MS) allows to monitor the spatial distribution and abundance of endogenous and administered compounds present within tissue specimens. Several different but complementary imaging MS technologies have been developed allowing the analysis of a wide variety of compounds including inorganic elementals, metabolites, lipids, peptides, proteins and xenobiotics with spatial resolutions from micrometer to nanometer scales. In the past decade, an enormous collective body of work has been done to develop and improve the imaging MS technology. This article gives a historical perspective, an overview of the principle and status of the technology and lists the main fields of applications. It also enumerates some of the critical challenges we need to collectively address for imaging MS to be considered a mainstream analytical method.
成像质谱 (MS) 允许监测组织标本中内源性和给予的化合物的空间分布和丰度。已经开发了几种不同但互补的成像 MS 技术,允许分析包括无机元素、代谢物、脂质、肽、蛋白质和外源化合物在内的多种化合物,具有从微米到纳米尺度的空间分辨率。在过去的十年中,已经做了大量的工作来开发和改进成像 MS 技术。本文从历史角度出发,概述了该技术的原理和现状,并列出了主要的应用领域。它还列举了一些我们需要共同解决的关键挑战,以使成像 MS 被认为是一种主流的分析方法。