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Quantitative Modelling of Amyloid-β Dynamics in Brain, CSF, and Plasma During Sleep and Wakefulness

Created on 15 Sep 2026

Authors

Sangeet, S., Phillips, C. L., Hoyos, C. M., D'Rozario, A. L., Lucey, B. P., Postnova, S.

Abstract

Amyloid-beta (A{beta}) accumulation in the brain is linked to Alzheimer's disease. In healthy individuals, A{beta} rises during wakefulness and is cleared during sleep, yet the effects of sleep disturbances on the A{beta} dynamics are unclear. We developed a model, incorporating brain, cerebrospinal fluid (CSF), and plasma, to investigate the A{beta} dynamics along the sleep-wake cycles. The model reproduces the experimentally observed 24-hour A{beta}42 oscillations in CSF (660-760 pg/mL) and plasma (15-19 pg/mL) and predicts brain A{beta} dynamics. Indwelling lumbar catheter data show elevated CSF A{beta}42 levels on the second morning after a full night of sleep compared to first morning. The model predicts this increased level is due to repeated CSF sampling, which affects A{beta} levels through pressure-mediated changes in CSF, impaired sleep associated clearance, or their synergistic effect. These findings provide a framework for understanding A{beta} regulation, highlighting sleep's protective role and the need for non-invasive measurement approaches.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 15 Sep 2026.

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