Mass spectrometry imaging highlights dynamic patterns of lipid co‐expression with Aβ plaques in mouse and human brains

Author:

Huang Helen Xuexia12ORCID,Inglese Paolo13,Tang Jiabin4,Yagoubi Riad12,Correia Gonçalo D. S.13,Horneffer‐van der Sluis Verena M.3,Camuzeaux Stephane3,Wu Vincen1,Kopanitsa Maksym V.2,Willumsen Nanet24,Jackson Johanna S.24,Barron Anna M.5ORCID,Saito Takashi67,Saido Takaomi C.67,Gentlemen Steve4,Takats Zoltan1,Matthews Paul M.24ORCID

Affiliation:

1. Section of Bioanalytical Chemistry, Department of Metabolism, Digestion and Reproduction Imperial College London London UK

2. UK Dementia Research Institute at Imperial College London Imperial College London London UK

3. National Phenome Centre, Department of Metabolism, Digestion and Reproduction Imperial College London London UK

4. Department of Brain Sciences Imperial College London London UK

5. Lee Kong Chian School of Medicine Nanyang Technological University Singapore Singapore

6. Laboratory for Proteolytic Neuroscience RIKEN Center for Brain Science Saitama Japan

7. Department of Neurocognitive Science, Institute of Brain Science Nagoya City University, Graduate School of Medical Sciences Nagoya Aichi Japan

Abstract

AbstractLipids play crucial roles in the susceptibility and brain cellular responses to Alzheimer's disease (AD) and are increasingly considered potential soluble biomarkers in cerebrospinal fluid (CSF) and plasma. To delineate the pathological correlations of distinct lipid species, we conducted a comprehensive characterization of both spatially localized and global differences in brain lipid composition in AppNL‐G‐F mice with spatial and bulk mass spectrometry lipidomic profiling, using human amyloid‐expressing (h‐Aβ) and WT mouse brains controls. We observed age‐dependent increases in lysophospholipids, bis(monoacylglycerol) phosphates, and phosphatidylglycerols around Aβ plaques in AppNL‐G‐F mice. Immunohistology‐based co‐localization identified associations between focal pro‐inflammatory lipids, glial activation, and autophagic flux disruption. Likewise, in human donors with varying Braak stages, similar studies of cortical sections revealed co‐expression of lysophospholipids and ceramides around Aβ plaques in AD (Braak stage V/VI) but not in earlier Braak stage controls. Our findings in mice provide evidence of temporally and spatially heterogeneous differences in lipid composition as local and global Aβ‐related pathologies evolve. Observing similar lipidomic changes associated with pathological Aβ plaques in human AD tissue provides a foundation for understanding differences in CSF lipids with reported clinical stage or disease severity.image

Funder

UK Dementia Research Institute

Publisher

Wiley

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