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Amyloid-driven disruption of default mode network connectivity in cognitively healthy individuals

Authors :
Lyduine E. Collij
Naomi Prent
Eco J. C. de Geus
Charlotte E. Teunissen
Pieter Jelle Visser
Mara ten Kate
Philip Scheltens
Frederik Barkhof
Jori Tomassen
Maqsood Yaqub
Silvia Ingala
Dennis van 't Ent
Betty M. Tijms
Bart N.M. van Berckel
Anouk den Braber
Elles Konijnenberg
Alle Meije Wink
Radiology and nuclear medicine
Neurology
Amsterdam Neuroscience - Neurodegeneration
Amsterdam Neuroscience - Brain Imaging
CCA - Cancer biology and immunology
CCA - Imaging and biomarkers
Clinical chemistry
Amsterdam Neuroscience - Neuroinfection & -inflammation
CCA - Cancer Treatment and quality of life
Laboratory Medicine
Clinical Developmental Psychology
Biological Psychology
APH - Personalized Medicine
APH - Mental Health
Biophotonics and Medical Imaging
Source :
Ingala, S, Tomassen, J, Collij, L E, Prent, N, van ‘t Ent, D, Ten Kate, M, Konijnenberg, E, Yaqub, M, Scheltens, P, de Geus, E J C, Teunissen, C E, Tijms, B, Wink, A M, Barkhof, F, Van Berckel, B N M, Visser, P J & den Braber, A 2021, ' Amyloid-driven disruption of default mode network connectivity in cognitively healthy individuals ', Brain Communications, vol. 3, no. 4, fcab201 . https://doi.org/10.1093/braincomms/fcab201, Brain Communications, 3(4):201, Brain Communications, 3(4):201. Oxford University Press, Brain Communications, Ingala, S, Tomassen, J, Collij, L E, Prent, N, van 't Ent, D, ten Kate, M, Konijnenberg, E, Yaqub, M, Scheltens, P, de Geus, E J C, Teunissen, C E, Tijms, B, Wink, A M, Barkhof, F, van Berckel, B N M, Visser, P J & den Braber, A 2021, ' Amyloid-driven disruption of default mode network connectivity in cognitively healthy individuals ', Brain Communications, vol. 3, no. 4, 201 . https://doi.org/10.1093/braincomms/fcab201, Brain Communications, 3(4):fcab201
Publication Year :
2021

Abstract

Cortical accumulation of amyloid beta is one of the first events of Alzheimer’s disease pathophysiology, and has been suggested to follow a consistent spatiotemporal ordering, starting in the posterior cingulate cortex, precuneus and medio-orbitofrontal cortex. These regions overlap with those of the default mode network, a brain network also involved in memory functions. Aberrant default mode network functional connectivity and higher network sparsity have been reported in prodromal and clinical Alzheimer’s disease. We investigated the association between amyloid burden and default mode network connectivity in the preclinical stage of Alzheimer’s disease and its association with longitudinal memory decline. We included 173 participants, in which amyloid burden was assessed both in CSF by the amyloid beta 42/40 ratio, capturing the soluble part of amyloid pathology, and in dynamic PET scans calculating the non-displaceable binding potential in early-stage regions. The default mode network was identified with resting-state functional MRI. Then, we calculated functional connectivity in the default mode network, derived from independent component analysis, and eigenvector centrality, a graph measure recursively defining important nodes on the base of their connection with other important nodes. Memory was tested at baseline, 2- and 4-year follow-up. We demonstrated that higher amyloid burden as measured by both CSF amyloid beta 42/40 ratio and non-displaceable binding potential in the posterior cingulate cortex was associated with lower functional connectivity in the default mode network. The association between amyloid burden (CSF and non-displaceable binding potential in the posterior cingulate cortex) and aberrant default mode network connectivity was confirmed at the voxel level with both functional connectivity and eigenvector centrality measures, and it was driven by voxel clusters localized in the precuneus, cingulate, angular and left middle temporal gyri. Moreover, we demonstrated that functional connectivity in the default mode network predicts longitudinal memory decline synergistically with regional amyloid burden, as measured by non-displaceable binding potential in the posterior cingulate cortex. Taken together, these results suggest that early amyloid beta deposition is associated with aberrant default mode network connectivity in cognitively healthy individuals and that default mode network connectivity markers can be used to identify subjects at risk of memory decline.<br />Ingala et al. have investigated a cognitively unimpaired older population, finding that early-stage amyloid-β accumulation is associated with aberrant default mode network connectivity and consecutive memory decline. The markers reported in this study could support the diagnostic and prognostic assessment of individuals in the earliest stages of Alzheimer’s Disease.<br />Graphical Abstract Graphical Abstract

Details

Language :
English
ISSN :
26321297
Database :
OpenAIRE
Journal :
Ingala, S, Tomassen, J, Collij, L E, Prent, N, van ‘t Ent, D, Ten Kate, M, Konijnenberg, E, Yaqub, M, Scheltens, P, de Geus, E J C, Teunissen, C E, Tijms, B, Wink, A M, Barkhof, F, Van Berckel, B N M, Visser, P J & den Braber, A 2021, ' Amyloid-driven disruption of default mode network connectivity in cognitively healthy individuals ', Brain Communications, vol. 3, no. 4, fcab201 . https://doi.org/10.1093/braincomms/fcab201, Brain Communications, 3(4):201, Brain Communications, 3(4):201. Oxford University Press, Brain Communications, Ingala, S, Tomassen, J, Collij, L E, Prent, N, van 't Ent, D, ten Kate, M, Konijnenberg, E, Yaqub, M, Scheltens, P, de Geus, E J C, Teunissen, C E, Tijms, B, Wink, A M, Barkhof, F, van Berckel, B N M, Visser, P J & den Braber, A 2021, ' Amyloid-driven disruption of default mode network connectivity in cognitively healthy individuals ', Brain Communications, vol. 3, no. 4, 201 . https://doi.org/10.1093/braincomms/fcab201, Brain Communications, 3(4):fcab201
Accession number :
edsair.doi.dedup.....d0b6c0b7f966bdf8341f6d22776f320d