Sep 2026· Journal of Alzheimer's Disease· pp.
13872877261489619
· 0 citations· 32 references
Medicine
TL;DR
While PET refines etiological diagnosis, p-tau217 serves as a robust predictor of amyloid status and cognitive trajectory, and integrating these biomarkers improves risk stratification and may facilitate patient selection for disease-modifying therapies.
Abstract
BackgroundEarly etiological diagnosis of cognitive impairment is challenging. Amyloid PET improves diagnostic accuracy but is costly and limited in availability. Plasma phosphorylated tau-217 (p-tau217) has emerged as a scalable, minimally invasive biomarker.ObjectiveThis study aimed to evaluate the diagnostic and prognostic utility of amyloid PET and plasma p-tau217 in older adults with early cognitive impairment.MethodsWe prospectively enrolled 100 adults aged ≥ 65 years with mild cognitive impairment or mild dementia. Participants underwent comprehensive clinical evaluation, brain MRI, 18F-florbetaben amyloid PET, and plasma p-tau217 analysis. Longitudinal cognitive decline was assessed over a median follow-up of 1.3 years.ResultsAmyloid PET was positive in 45% and resulted in diagnostic revision in 39%. Plasma p-tau217 levels were significantly higher in amyloid-positive individuals (1.178 ± 0.652 versus 0.642 ± 0.940 pg/mL, p < 0.001) and accurately identified amyloid positivity (AUC = 0.855). Both amyloid PET positivity (HR = 6.61, 95% CI 2.36-18.50; p < 0.001) and elevated p-tau217 (HR = 4.43, 95% CI 1.83-10.68; p = 0.001) independently predicted faster cognitive decline. Combined biomarker analysis revealed a stepwise risk stratification, with dual-positive individuals showing the most rapid deterioration (global p < 0.001). Among amyloid-positive patients, elevated p-tau217 further distinguished those with faster progression (p = 0.035).ConclusionsAmyloid PET and plasma p-tau217 provide complementary diagnostic and prognostic value. While PET refines etiological diagnosis, p-tau217 serves as a robust predictor of amyloid status and cognitive trajectory. Integrating these biomarkers improves risk stratification and may facilitate patient selection for disease-modifying therapies.
CSF tTau was associated with mortality and faster clinical progression, but the joint-model findings involving tTau and pTau should be interpreted cautiously as hypothesis-generating.
Aslı Aksoy Gündoğdu, B. Samancı, M. Alaylıoğlu et al.· Journal of Alzheimer's Disea...· 0 citations
The emergence of blood-based biomarkers (BBMs) has transformed the diagnosis of Alzheimer’s disease (AD). 1,2 Plasma phosphorylated tau, glial fibrillary acidic protein (GFAP), and neurofilament light chain (NfL) have demonstrated remarkable accuracy in detecting amyloid pathology and predicting disease progression acr...
H. Kwon, Seong-Ho Koh· Journal of Clinical Neurolog...· 0 citations
Plasma p-Tau217 showed a stronger association with cerebral amyloid pathology than eZIS indices in this elderly MCI cohort, and eZIS may provide complementary information regarding downstream neurodegenerative and cerebrovascular processes that are not directly captured by plasma biomarkers.
I-Lun Huang, Hiroshi Matsuda, Ya-Tang Pai et al.· Diagnostics· 0 citations
These findings support the use of blood-based biomarkers for population-level dementia risk stratification, underscore the value of combining markers to improve prognostic precision, and can aid clinicians using plasma p-tau217 or NfL in interpreting dementia risk.
A. Sunde, D. Tovar-Rios, A. Vik-Mo et al.· medRxiv· 0 citations
Findings support a 3-level interpretation of amyloid PET beyond binary classification and highlight the clinical relevance of the intermediate zone, which delineates biologically and clinically distinct stages along the amyloid continuum.
G. Mathoux, C. Boccalini, D. Peretti et al.· Journal of Nuclear Medicine· 0 citations
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