Defining Changes in the Spatial Distribution and Composition of Brain Lipids in the Shiverer and Cuprizone Mouse Models of Myelin Disease

Author:

Maganti Rajanikanth J.12,Hronowski Xiaoping L.1,Dunstan Robert W.13,Wipke Brian T.1,Zhang Xueli1,Jandreski Luke1,Hamann Stefan1,Juhasz Peter1

Affiliation:

1. Biogen, Cambridge, Massachusetts

2. Moderna Therapeutics, Cambridge, Massachusetts

3. AbbVie, Worcester, Massachusetts

Abstract

Myelin is composed primarily of lipids and diseases affecting myelin are associated with alterations in its lipid composition. However, correlation of the spatial (in situ) distribution of lipids with the disease-associated compositional and morphological changes is not well defined. Herein we applied high resolution matrix-assisted laser desorption ionization imaging mass spectrometry (MALDI-IMS), immunohistochemistry (IHC), and liquid chromatography–electrospray ionization–mass spectrometry (LC-ESI-MS) to evaluate brain lipid alterations in the dysmyelinating shiverer (Shi) mouse and cuprizone (Cz) mouse model of reversible demyelination. MALDI-IMS revealed a decrease in the spatial distribution of sulfatide (SHexCer) species, SHexCer (d42:2), and a phosphatidylcholine (PC) species, PC (36:1), in white matter regions like corpus callosum (CC) both in the Shi mouse and Cz mouse model. Changes in these lipid species were restored albeit not entirely upon spontaneous remyelination after demyelination in the Cz mouse model. Lipid distribution changes correlated with the local morphological changes as confirmed by IHC. LC-ESI-MS analyses of CC extracts confirmed the MALDI-IMS derived reductions in SHexCer and PC species. These findings highlight the role of SHexCer and PC in preserving the normal myelin architecture and our experimental approaches provide a morphological basis to define lipid abnormalities relevant to myelin diseases.

Publisher

SAGE Publications

Subject

Histology,Anatomy

Reference72 articles.

1. Quarles RH, Macklin WB, Morell P. Myelin formation, structure and biochemistry. In: Brady S, Siegel G, Albers RW, Price D, editors. Basic neurochemistry: molecular, cellular and medical aspects. 7th edition. Burlington: Elsevier Academic Press; 2005. p. 51–71.

2. Interaction forces and adhesion of supported myelin lipid bilayers modulated by myelin basic protein

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