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Fiducial markers for combined 3-dimensional mass spectrometric and optical tissue imaging

  • Kamila Chughtai
  • , Lu Jiang
  • , Tiffany R. Greenwood
  • , Ivo Klinkert
  • , Erika R. Amstalden Van Hove
  • , Ron M.A. Heeren
  • , Kristine Glunde
  • FOM Institute AMOLF
  • JHU ICMIC Program
  • Sidney Kimmel Comprehensive Cancer Center

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Mass spectrometric imaging (MSI) has become widely used in the analysis of a variety of biological surfaces. Biological samples are spatially, morphologically, and metabolically complex. Multimodal molecular imaging is an emerging approach that is capable of dealing with this complexity. In a multimodal approach, different imaging modalities can provide precise information about the local molecular composition of the surfaces. Images obtained by MSI can be coregistered with images obtained by other molecular imaging techniques such as microscopic images of fluorescent protein expression or histologically stained sections. In order to properly coregister images from different modalities, each tissue section must contain points of reference, which are visible in all data sets. Here, we report a newly developed coregistration technique using fiducial markers such as cresyl violet, Ponceau S, and bromophenol blue that possess a combination of optical and molecular properties that result in a clear mass spectrometric signature. We describe these fiducial markers and demonstrate an application that allows accurate coregistration and 3-dimensional reconstruction of serial histological and fluorescent microscopic images with MSI images of thin tissue sections from a breast tumor model. © 2012 American Chemical Society.
Original languageEnglish
Pages (from-to)1817-1823
Number of pages7
JournalAnalytical Chemistry
Volume84
Issue number4
DOIs
Publication statusPublished - 21 Feb 2012

Keywords

  • azo compound
  • bromophenol blue
  • cresyl violet
  • oxazine derivative
  • ponceau s
  • tumor marker
  • animal
  • article
  • breast tumor
  • computer assisted diagnosis
  • computer assisted tomography
  • female
  • human
  • image processing
  • mass spectrometry
  • metabolism
  • mouse
  • pathology
  • three dimensional imaging
  • tumor cell culture
  • xenograft

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