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Involvement of the choroid plexus in Alzheimer's disease pathophysiology: findings from mouse and human proteomic studies
Department of Psychiatry and Neuropsychology, Alzheimer Centrum Limburg, School for Mental Health and Neuroscience, Maastricht University, Maastricht, The Netherlands.ORCID iD: 0000-0001-8724-3010
VIB Center for Inflammation Research, VIB, Ghent, Belgium; Department of Biomedical Molecular Biology, Ghent University, Ghent, Belgium.
Clinical Neurochemistry Laboratory, Sahlgrenska University Hospital, Mölndal, Sweden; Department of Psychiatry and Neurochemistry, Institute of Neuroscience and Physiology, Sahlgrenska Academy at the University of Gothenburg, Mölndal, Sweden.
VIB Center for Inflammation Research, VIB, Ghent, Belgium; Department of Biomedical Molecular Biology, Ghent University, Ghent, Belgium.
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2024 (English)In: Fluids and Barriers of the CNS, E-ISSN 2045-8118, Vol. 21, no 1, article id 58Article in journal (Refereed) Published
Abstract [en]

Background: Structural and functional changes of the choroid plexus (ChP) have been reported in Alzheimer's disease (AD). Nonetheless, the role of the ChP in the pathogenesis of AD remains largely unknown. We aim to unravel the relation between ChP functioning and core AD pathogenesis using a unique proteomic approach in mice and humans.

Methods: We used an APP knock-in mouse model, APPNL-G-F, exhibiting amyloid pathology, to study the association between AD brain pathology and protein changes in mouse ChP tissue and CSF using liquid chromatography mass spectrometry. Mouse proteomes were investigated at the age of 7 weeks (n = 5) and 40 weeks (n = 5). Results were compared with previously published human AD CSF proteomic data (n = 496) to identify key proteins and pathways associated with ChP changes in AD.

Results: ChP tissue proteome was dysregulated in APPNL-G-F mice relative to wild-type mice at both 7 and 40 weeks. At both ages, ChP tissue proteomic changes were associated with epithelial cells, mitochondria, protein modification, extracellular matrix and lipids. Nonetheless, some ChP tissue proteomic changes were different across the disease trajectory; pathways related to lysosomal function, endocytosis, protein formation, actin and complement were uniquely dysregulated at 7 weeks, while pathways associated with nervous system, immune system, protein degradation and vascular system were uniquely dysregulated at 40 weeks. CSF proteomics in both mice and humans showed similar ChP-related dysregulated pathways.

Conclusions: Together, our findings support the hypothesis of ChP dysfunction in AD. These ChP changes were related to amyloid pathology. Therefore, the ChP could become a novel promising therapeutic target for AD.

Place, publisher, year, edition, pages
BioMed Central (BMC), 2024. Vol. 21, no 1, article id 58
Keywords [en]
Alzheimer's disease, Choroid plexus, Cerebrospinal fluid, Proteomics, APP knock-in mice, Amyloid-beta (A beta)
National Category
Neurology
Identifiers
URN: urn:nbn:se:oru:diva-115207DOI: 10.1186/s12987-024-00555-3ISI: 001270571000001PubMedID: 39020361Scopus ID: 2-s2.0-85198839953OAI: oai:DiVA.org:oru-115207DiVA, id: diva2:1888188
Funder
EU, FP7, Seventh Framework Programme, FP7/2007‑2013
Note

The present study was supported by Alzheimer Nederland grant number WE.15‑2022‑01, the Research Foundation Flanders (FWO Vlaanderen; 1295223N, 1157621N and 1195019N), and partly supported by ZonMw (the Netherlands Organization for Health Research and Development) grant numbers 733050502 and 7330505021, an anonymous foundation and EMIF‑AD. The EMIF‑AD project has received support from the Innovative Medicines Initiative Joint Undertaking under EMIF grant agreement n° 115372, resources of which are composed of financial contribution from the European Union’s Seventh Framework Program (FP7/2007‑2013) and EFPIA companies’ in kind contribution.

Available from: 2024-08-12 Created: 2024-08-12 Last updated: 2024-08-15Bibliographically approved

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Freund-Levi, Yvonne

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