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Direct profiling of myelinated and demyelinated regions in mouse brain by imaging mass spectrometry
Authors:Ruben Ceuppens  Debora Dumont  Leen Van Brussel  Babs Van de Plas  Ruth Daniels  Jean-Paul Noben  Peter Verhaert  Estel Van der Gucht  Johan Robben  Stefan Clerens  Lutgarde Arckens  
Institution:aLaboratory of Neuroplasticity and Neuroproteomics, K.U. Leuven, Naamsestraat 59, B-3000 Leuven, Belgium;bHasselt University, Biomedical Research Institute (Biomed) and Transnationale Universiteit Limburg, School of Life Sciences, Diepenbeek, Belgium;cLaboratory for Analytical Biotechnology, Delft University of Technology, Delft, The Netherlands
Abstract:One of the newly developed imaging mass spectrometry (IMS) technologies utilizes matrix-assisted laser desorption/ionization (MALDI) mass spectrometry to map proteins in thin tissue sections. In this study, we evaluated the power of MALDI IMS as we developed it in our (Bruker) MALDI TOF (Reflex IV) and TOF-TOF (Ultraflex II) systems to study myelin patterns in the mouse central nervous system under normal and pathological conditions. MALDI IMS was applied to assess myelin basic protein (MBP) isoform-specific profiles in different regions throughout the mouse brain. The distribution of ions of m/z 14,144 and 18,447 displayed a striking resemblance with white matter histology and were identified as MBP isoform 8 and 5, respectively. In addition, we demonstrated a significant reduction of the MBP-8 peak intensity upon MALDI IMS analysis of focal ethidium bromide-induced demyelinated brain areas. Our MS images were validated by immunohistochemistry using MBP antibodies. This study underscores the potential of MALDI IMS to study the contribution of MBP to demyelinating diseases.
Keywords:MALDI IMS  Mouse  Brain  Myelin basic protein  Histology
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