Additive effects of cerebrovascular disease functional connectome phenotype and plasma p-tau181 on longitudinal neurodegeneration and cognitive outcomes

Author:

Chong Joanna Su XianORCID,Ji FangORCID,Hilal Saima,Chong Joyce Ruifen,Lau Jia Ming,Tong Nathanael Ren Jie,Tan Boon Yeow,Venketasubramanian Narayanaswamy,Lai Mitchell Kim Peng,Chen Christopher Li-Hsian,Zhou Juan HelenORCID

Abstract

ABSTRACTINTRODUCTIONWe investigated the effects of multiple cerebrovascular disease (CeVD) neuroimaging markers on brain functional connectivity (FC), and how such CeVD-related FC changes interact with plasma p-tau181 (Alzheimer’s disease (AD) marker) to influence downstream neurodegeneration and cognitive changes.METHODSMultivariate associations between four CeVD markers and whole-brain FC in 529 participants across the dementia spectrum were examined using partial least squares correlation. Interactive effects of CeVD-related FC patterns and p-tau181 on longitudinal grey matter volume and cognitive changes were investigated using linear mixed-effects models.RESULTSWe identified a brain FC phenotype associated with high CeVD burden across all markers. Further, expression of this general CeVD-related FC phenotype and p-tau181 contributed additively, but not synergistically, to baseline and longitudinal grey matter volumes and cognitive changes.DISCUSSIONOur findings suggest that CeVD exerts global effects on the brain connectome and highlight the additive nature of AD and CeVD on neurodegeneration and cognition.

Publisher

Cold Spring Harbor Laboratory

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