Space and Time Coherent Mapping for Subcellular Resolution of Imaging Mass Spectrometry

Cells. 2022 Oct 26;11(21):3382. doi: 10.3390/cells11213382.

Abstract

Space and time coherent mapping (STCM) is a technology developed in our laboratory for improved matrix-assisted laser desorption ionization (MALDI) time of flight (TOF) imaging mass spectrometry (IMS). STCM excels in high spatial resolutions, which probe-based scanning methods cannot attain in conventional MALDI IMS. By replacing a scanning probe with a large field laser beam, focusing ion optics, and position-sensitive detectors, STCM tracks the entire flight trajectories of individual ions throughout the ionization process and visualizes the ionization site on the sample surface with a subcellular scale of precision and a substantially short acquisition time. Results obtained in thinly sectioned leech segmental ganglia and epididymis demonstrate that STCM IMS is highly suited for (1) imaging bioactive lipid messengers such as endocannabinoids and the mediators of neuronal activities in situ with spatial resolution sufficient to detail subcellular localization, (2) integrating resultant images in mass spectrometry to optically defined cell anatomy, and (3) assembling a stack of ion maps derived from mass spectra for cluster analysis. We propose that STCM IMS is the choice over a probe-based scanning mass spectrometer for high-resolution single-cell molecular imaging.

Keywords: Hirudo Verbana; cluster analysis; endocannabinoid; epididymis; microscope-mode IMS; neuron; silver nanoparticle PALDI.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Diagnostic Imaging*
  • Histological Techniques*
  • Humans
  • Male
  • Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization / methods

Grants and funding

This research was supported by the Advanced Research and Development Programs for Medical Innovation (AMED-CREST) from the Japan Agency for Medical Research and Development, AMED JP17gm0910001.