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Axonal damage and astrocytosis are biological correlates of grey matter network integrity loss: a cohort study in autosomal dominant Alzheimer disease.

Authors :
Vermunt L
Sutphen C
Dicks E
de Leeuw DM
Allegri R
Berman SB
Cash DM
Chhatwal JP
Cruchaga C
Day G
Ewers M
Farlow M
Fox NC
Ghetti B
Graff-Radford N
Hassenstab J
Jucker M
Karch CM
Kuhle J
Laske C
Levin J
Masters CL
McDade E
Mori H
Morris JC
Perrin RJ
Preische O
Schofield PR
Suárez-Calvet M
Xiong C
Scheltens P
Teunissen CE
Visser PJ
Bateman RJ
Benzinger TLS
Fagan AM
Gordon BA
Tijms BM
Source :
MedRxiv : the preprint server for health sciences [medRxiv] 2023 Mar 22. Date of Electronic Publication: 2023 Mar 22.
Publication Year :
2023

Abstract

Brain development and maturation leads to grey matter networks that can be measured using magnetic resonance imaging. Network integrity is an indicator of information processing capacity which declines in neurodegenerative disorders such as Alzheimer disease (AD). The biological mechanisms causing this loss of network integrity remain unknown. Cerebrospinal fluid (CSF) protein biomarkers are available for studying diverse pathological mechanisms in humans and can provide insight into decline. We investigated the relationships between 10 CSF proteins and network integrity in mutation carriers (N=219) and noncarriers (N=136) of the Dominantly Inherited Alzheimer Network Observational study. Abnormalities in Aβ, Tau, synaptic (SNAP-25, neurogranin) and neuronal calcium-sensor protein (VILIP-1) preceded grey matter network disruptions by several years, while inflammation related (YKL-40) and axonal injury (NfL) abnormalities co-occurred and correlated with network integrity. This suggests that axonal loss and inflammation play a role in structural grey matter network changes.<br />Key Points: Abnormal levels of fluid markers for neuronal damage and inflammatory processes in CSF are associated with grey matter network disruptions.The strongest association was with NfL, suggesting that axonal loss may contribute to disrupted network organization as observed in AD.Tracking biomarker trajectories over the disease course, changes in CSF biomarkers generally precede changes in brain networks by several years.

Details

Language :
English
Database :
MEDLINE
Journal :
MedRxiv : the preprint server for health sciences
Accession number :
37016671
Full Text :
https://doi.org/10.1101/2023.03.21.23287468