Institute of Hygiene, University of Münster, Robert-Koch-Str. 41, 48149 Münster, Germany.
Interdisciplinary Center for Clinical Research (IZKF), University of Münster, Domagkstr. 3, 48149 Münster, Germany.
Anal Chem. 2020 Jul 7;92(13):8697-8703. doi: 10.1021/acs.analchem.0c01747. Epub 2020 Jun 8.
Matrix-assisted laser desorption/ionization combined with laser-induced postionization (MALDI-2) is a recently introduced method for enhanced mass spectrometry imaging of numerous classes of biomolecules, including phospho- and glycolipids in tissue sections at high lateral resolution. Here we describe the first adaptation of the technology to a Bruker timsTOF fleX mass spectrometer. Upon use of a 1 kHz postionization laser, MALDI-2 produces a sizable increase in the number of detected features as well as in ion signal intensities. This enhancement is similar to that described previously for low repetition rate MALDI-2 systems, but now enables substantially enhanced measurement speeds. In our proof-of-concept study, we furthermore demonstrate, on examples of rat brain and testis tissue sections, that the combination of MALDI-2 with the trapped ion mobility spectrometry (TIMS) functionality of the instrument can crucially support unravelling the complex molecular composition of the lipidome. Numerous isomeric/isobaric ion species are successfully separated upon using the collisional cross section (CCS) as additional specific physical property. With the possibilities of high data acquisition speed or high separation powers in combination with the increased sensitivity of MALDI-2 available in one instrument, the described methodology could be a valuable tool in many areas of biological and medical research.
基质辅助激光解吸/电离结合激光后电离(MALDI-2)是一种最近引入的方法,可增强对生物分子(包括组织切片中的磷酸化和糖脂)的众多类别的质谱成像,具有高横向分辨率。本文首次介绍了该技术在 Bruker timsTOF fleX 质谱仪上的应用。在使用 1 kHz 后电离激光时,MALDI-2 可显著增加检测到的特征数量以及离子信号强度。这种增强与先前描述的低重复率 MALDI-2 系统相似,但现在可实现大幅提高的测量速度。在我们的概念验证研究中,我们进一步展示了大鼠脑组织和睾丸组织切片的示例,表明 MALDI-2 与仪器的俘获离子淌度谱(TIMS)功能相结合,可以极大地支持解析脂质组的复杂分子组成。通过将碰撞截面(CCS)用作附加特定物理性质,可以成功分离出许多同质异位/同量异位离子物种。这种方法在一台仪器中结合了高数据采集速度或高分离能力以及 MALDI-2 的高灵敏度,在生物学和医学研究的许多领域都可能是一种有价值的工具。