Aichler Michaela, Walch Axel
Research Unit Analytical Pathology, Helmholtz Zentrum München, German Research Center for Environmental Health, Neuherberg, Germany.
Lab Invest. 2015 Apr;95(4):422-31. doi: 10.1038/labinvest.2014.156. Epub 2015 Jan 26.
MALDI Imaging mass spectrometry has entered the field of tissue-based research by providing unique advantages for analyzing tissue specimen in an unprecedented detail. A broad spectrum of analytes ranging from proteins, peptides, protein modification over small molecules, drugs and their metabolites as well as pharmaceutical components, endogenous cell metabolites, lipids, and other analytes are made accessible by this in situ technique in tissue. Some of them were even not accessible in tissues within the histological context before. Thereby, the great advantage of MALDI Imaging is the correlation of molecular information with traditional histology by keeping the spatial localization information of the analytes after mass spectrometric measurement. This method is label-free and allows multiplex analysis of hundreds to thousands of molecules in the very same tissue section simultaneously. Imaging mass spectrometry brings a new quality of molecular data and links the expert discipline of pathology and deep molecular mass spectrometric analysis to tissue-based research. This review will focus on state-of-the-art of MALDI Imaging mass spectrometry, its recent applications by analyzing tissue specimen and the contributions in understanding the biology of disease as well as its perspectives for pathology research and practice.
基质辅助激光解吸电离成像质谱(MALDI Imaging mass spectrometry)通过以前所未有的细节分析组织样本提供独特优势,从而进入了基于组织的研究领域。这种原位技术能够检测组织中的多种分析物,包括蛋白质、肽、蛋白质修饰、小分子、药物及其代谢产物、药物成分、内源性细胞代谢物、脂质和其他分析物。其中一些分析物在组织学背景下以前甚至无法在组织中检测到。因此,MALDI成像的一大优势是,通过在质谱测量后保留分析物的空间定位信息,将分子信息与传统组织学相关联。该方法无需标记,可在同一组织切片中同时对数百至数千个分子进行多重分析。成像质谱带来了新的分子数据质量,并将病理学专业学科与深度分子质谱分析与基于组织的研究联系起来。本综述将重点介绍MALDI成像质谱的最新技术、通过分析组织样本的近期应用、在理解疾病生物学方面的贡献以及其在病理学研究和实践中的前景。