Aug 2026· Neurology· Vol 107 3, pp.
e218336
· 0 citations· 36 references
Medicine
TL;DR
In Aβ-negative cognitively impaired individuals with high cerebrovascular burden, elevated plasma GFAP is associated with medial temporal atrophy and cognitive decline, suggesting GFAP may capture astrocyte-reactivity relevant to vascular cognitive impairment beyond amyloid pathology.
Abstract
Background
AND
Objectives
Plasma glial fibrillary acidic protein (GFAP), a marker of astrocyte reactivity, is elevated across multiple neurodegenerative conditions, including Alzheimer disease. However, its role in neurodegeneration and cognitive decline driven by cerebrovascular pathology, independent of β-amyloid (Aβ) copathology, remains poorly characterized. We investigated whether plasma GFAP is associated with medial temporal atrophy and cognition across a spectrum of cerebrovascular burden in Aβ-negative cognitively impaired individuals.
Methods
In this cross-sectional multicenter study, Aβ PET-negative cognitively impaired participants were recruited from South Korean memory clinics. Plasma GFAP was measured using ultrasensitive Simoa assays. White matter hyperintensity burden was graded using the Fazekas scale and stratified into low (LVP: Fazekas 1) and high (HVP: Fazekas 2-3) cerebrovascular burden groups. Medial temporal gray matter density was assessed using voxel-based morphometry, and hippocampal and amygdalar volumes were derived from T1-weighted MRI adjusted for intracranial volume. Linear regression, interaction, and bootstrap mediation models were used to assess associations among GFAP, brain structure, and cognition.
Results
A total of 324 participants were included (LVP n = 203; HVP n = 121; median age 73 years [interquartile range 66-78]; 67.9% female). Compared with LVP, HVP participants were older (75 vs 71 years; p < 0.0001), had lower Mini-Mental State Examination (MMSE) scores (22.7 vs 24.5; p = 0.005), and higher plasma GFAP (136.7 vs 112.1 pg/mL; p = 0.001). Higher GFAP was associated with lower medial temporal gray matter density in HVP (β = -0.311; p = 0.001) but not LVP (β = -0.012; p = 0.858), with a significant GFAP-vascular burden interaction (β = -0.309; p = 0.008). In HVP, higher GFAP was associated with smaller hippocampal (β = -0.179; p = 0.044) and amygdalar volumes (β = -0.169; p = 0.049) and lower MMSE (β = -0.194; p = 0.039). Medial temporal atrophy statistically explained the GFAP-MMSE association (indirect β = -0.071, 95% CI -0.140 to -0.010; p = 0.016). Vascular comorbidities (diabetes, dyslipidemia, hypertension) did not modify the GFAP-cognition association.
Discussion
In Aβ-negative cognitively impaired individuals with high cerebrovascular burden, elevated plasma GFAP is associated with medial temporal atrophy and cognitive decline, suggesting GFAP may capture astrocyte-reactivity relevant to vascular cognitive impairment beyond amyloid pathology. These cross-sectional findings require confirmation in longitudinal and ethnically diverse cohorts.
Higher plasma YKL‐40 was associated with greater white matter hyperintensity (WMH), whereas higher plasma GFAP was related to increased 18F‐florbetapir (FBP) standardized uptake value ratio (SUVR) and higher plasma p‐tau217 was associated with reduced MTL cortical thickness and hippocampal volume.
Batool Rizvi, Jenna N. Adams, Alison R. Bamford et al.· Alzheimer's & Dementia· 1 citation
Serum NfL was associated with anatomically specific WM microstructural changes, with differing patterns across clinical groups, and no significant associations were observed between serum or CSF GFAP concentrations and diffusion tensor imaging metrics.
T. Magalhães, R. Casseb, A. Moraes et al.· Journal of Alzheimer's Disea...· 0 citations
In cognitively unimpaired older adults, elevated blood p-tau217 was linked to faster shrinkage in AD-specific brain regions, whereas NfL and GFAP were associated with more widespread atrophy, with NfL also associated with accelerated WMH accumulation.
Martina Valletta, D. L. Vetrano, E. Laukka et al.· Annals of Neurology· 0 citations
ABSTRACT Objective Peak‐width of skeletonized mean diffusivity (PSMD) and diffusion tensor imaging–analysis along the perivascular space (DTI‐ALPS), reflecting white matter integrity and glymphatic function, are altered in Alzheimer's disease (AD). We evaluated whether these biomarkers differ between AD participants with and without concomitant cerebral amyloid angiopathy (CAA). Methods The study included 50 AD participants with mild cognitive impairment/mild dementia, and intermediate to high AD neuropathologic change at autopsy. AD was categorized as AD with CAA and AD without CAA based on CAA neuropathology. We evaluated global and regional (frontal, parietal, temporal and occipital) PSMD; left, right and mean DTI‐ALPS indices and their association with clinical measures [Clinical dementia rating sum‐of‐boxes (CDR‐SB) from CDR Dementia Staging Instrument, mini mental state examination (MMSE), cognitive composites: memory, processing speed, executive function, and language]. Results AD participants with CAA (n = 17) had higher global [4.02 ± 1.44 (mean ± SD × 10−4 mm2/s) vs. 3.12 ± 0.91, β = −0.80, 95% CI (−1.42, −0.18), p = 0.012] and occipital PSMD [4.02 ± 1.10 vs. 3.00 ± 1.08, β = −0.88, 95% CI (−1.51, −0.26), p = 0.026] than those without CAA. No PSMD metric was associated with any clinical measure. However, imaging‐by‐group interactions showed global PSMD associated with language [β = −0.89, 95% CI (−1.53, −0.26), p = 0.027] and parietal PSMD with language [β = −1.05, 95% CI (−1.74, −0.36), p = 0.014] and memory [β = −0.83, 95% CI (−1.38, −0.28), p = 0.015]. DTI‐ALPS indices did not differ by group. Higher mean and right DTI‐ALPS indices were associated with preserved language function [mean: β = 9.33, 95% CI (2.05, 16.62), p = 0.036; right: β = 7.75, 95% CI (1.54, 13.95), p = 0.043] without imaging‐by‐group interactions. Interpretation Global and occipital PSMD may help identify AD participants with concomitant CAA.
Debina Laishram, G. Du, Sangam Kanekar et al.· Annals of Clinical and Trans...· 0 citations
A stratified approach based on amyloid status is essential for the optimal application of blood-based biomarkers in monitoring disease progression and evaluating therapeutic efficacy in future clinical trials and precision medicine.
Keun You Kim, Hyunsun Ham, E. Yoon et al.· The journal of prevention of...· 0 citations
Cerebral amyloid angiopathy (CAA) is a common brain pathology in older people and has been recently recognized as a major risk factor for amyloid-related imaging abnormalities during anti-amyloid antibody therapy. CAA pathophysiology may involve iron released from ruptured vessels, but the association between postmortem CAA and brain iron is unclear. This study investigates the association between CAA and brain iron and whether elevated iron modifies the association between CAA and cognitive decline. We studied 626 Rush Memory and Aging Project decedents (mean age at death = 90 [SD = 6.1] years, 70% women) who completed baseline and longitudinal cognitive assessments and underwent detailed neuropathologic evaluation for CAA, Alzheimer’s disease neuropathologic changes (ADNC), and other brain pathologies. Brain iron content was assessed from the inferior temporal cortex using Inductively Coupled Plasma Mass Spectrometry (ICP-MS). Linear regression and mixed-effects models were used for analysis. CAA was common: 266 (42%) had mild, 153 (24%) had moderate, and 75 (12%) had severe CAA. In analyses adjusted for demographics, intermediate/high ADNC, and other pathologies, the presence and severity of CAA were associated with elevated cortical brain iron (Est = 0.033, SE = 0.011, p = 0.002; Est = 0.017, SE = 0.004, p < 0.001, respectively). When examining associations with nonlinear cognitive change before death (mean follow-up = 7.7 [SD = 3.9] years), both CAA and elevated iron were independently associated with faster annual rates of decline in global cognition and semantic memory (all p < 0.04). Elevated iron was also associated with faster declines in episodic and working memory and perceptual speed (all p < 0.02). When exploring whether brain iron modulates the association of CAA with cognitive decline, we found that CAA had steeper decline in perceptual speed when elevated iron was present compared to when low iron was present (p = 0.03). Together, these findings suggest that brain iron may contribute to the clinical impact of CAA in older age.
S. Agrawal, Maude Wagner, S. Leurgans et al.· Acta Neuropathologica· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.