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Sleep quality as a modifier of plasma phosphorylated tau 217 and glial fibrillary acidic protein associations
Ramkrishna K Singh1, Semere Bekena1, Yiqi Zhu1
1Department of Neurology, Washington University School of Medicine, St Louis, Missouri, United States.
Background:
Plasma biomarkers, such as neurofilament light chain (NfL), glial fibrillary acidic protein (GFAP), phosphorylated tau (pTau217), and total tau (tTau), are associated with cognitive decline. However, the role of sleep quality in modifying these associations remains unclear. This study examines whether subjective sleep quality, as measured by the Pittsburgh Sleep Quality Index (PSQI), modifies the associations between plasma biomarkers and cognitive performance.
Methods:
We analyzed cross-sectional data from 491 adults aged 36 years or older in the Aging Adult Brain Connectome study. Plasma levels of NfL, GFAP, pTau217, and total tTau were measured. Cognitive performance was assessed using the Montreal Cognitive Assessment (MoCA) and the Preclinical Alzheimer's Cognitive Composite (PACC). Sleep quality was measured using the Pittsburgh Sleep Quality Index (PSQI). Generalized linear models were used to test main and moderation effects while adjusting for demographics. Sensitivity analyses included APOE ε4 status and body mass index.
Results:
Higher plasma levels of NfL, GFAP, and pTau217 were associated with lower cognitive performance on both MoCA and PACC (all p < .05). Poorer sleep quality was independently associated with worse PACC outcomes. Critically, significant moderation effects were observed: PSQI moderated the negative associations between GFAP and MoCA (β = 0.0020, p = .009) and between pTau217 and MoCA (β = 0.0299, p = .003), indicating a synergistic relationship between sleep quality and glial/amyloid-related pathology in cognitive aging.
Conclusion:
Sleep quality modifies biomarker-cognition associations, highlighting its potential as a behavioral target to support brain health.
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