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Published on: June 19, 2019
Ruthenium counterstaining for imaging mass cytometry
Raúl Catena1, Luis M Montuenga2, Bernd Bodenmiller1
1Institute of Molecular Life Sciences, University of Zürich, Zürich, Switzerland.
Insights
Researchers developed a novel ruthenium tetroxide (RuO4) counterstain for imaging mass cytometry. This metal-based stain enhances visualization of tissue structures, improving the utility of this advanced imaging technique.
Area of Science:
- Biomedical Imaging
- Pathology
- Analytical Chemistry
Background:
- Imaging mass cytometry (IMC) allows simultaneous detection of over 40 epitopes in tissues at subcellular resolution using metal tags.
- Effective counterstaining is crucial in IMC to visualize overall tissue structure, as target antigens are often in rare cell populations.
- Conventional counterstains like haematoxylin or fluorescent dyes are incompatible with IMC's metal-based detection.
Purpose of the Study:
- To develop a novel metal-based counterstain compatible with imaging mass cytometry.
- To enable visualization of general tissue architecture in IMC experiments.
- To facilitate the routine application of IMC in research and clinical settings.
Main Methods:
- Developed a ruthenium tetroxide (RuO4) based counterstaining method.
- Utilized oxidation and covalent binding of tissue components to RuO4.
- Applied the counterstain to tissue sections for IMC analysis.
Main Results:
- The RuO4 counterstain effectively visualizes tissue structure in both cellular and stromal areas.
- It provides contrast analogous to traditional histological stains like haematoxylin.
- The method is compatible with IMC and other metal-based imaging techniques.
Conclusions:
- A new RuO4 counterstain has been successfully developed for IMC.
- This method provides essential structural context for IMC data.
- The counterstain broadens the applicability of IMC in pathology and biomedical research.
Abstract:
Imaging mass cytometry is a novel imaging modality that enables simultaneous antibody-based detection of >40 epitopes and molecules in tissue sections at subcellular resolution by the use of isotopically pure metal tags. Essential for any imaging approach in which antigen detection is performed is counterstaining, which reveals the overall structure of the tissue. Counterstaining is necessary because antigens of interest are often present in only a small subset of cells, and the rest of the tissue structures are not visible. As most biological tissues are nearly transparent or non-fluorescent, chromogenic reagents such as haematoxylin (for immunohistochemistry) or fluorescent dyes such as 4',6-diamidino-2-phenylindole (which stains nuclei for epifluorescence and confocal microscopy) are utilized. Here, we describe a metal-based counterstain for imaging mass cytometry based on simple oxidation and subsequent covalent binding of the tissue components to ruthenium tetroxide (RuO4 ). RuO4 counterstaining reveals general tissue structure both in areas with high cell content and in stromal areas with low cellularity and fibrous or hyaline material in a manner analogous to haematoxylin in immunohistochemical counterstaining or eosin or other anionic dyes in conventional histology. Our new counterstain approach is applicable to any metal-based imaging technique, and will facilitate the adaptation of imaging mass cytometry for routine applications in clinical and research laboratories. Copyright © 2018 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
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