Slow Wave Sleep Reduces CSF Concentrations of Beta-amyloid and Tau: A Randomized Crossover Study in Healthy Adults
Lyckenvik, T.; Olsson, M.; Forsberg, M.; Wasling, P.; Zetterberg, H.; Hedner, J.; Hanse, E.
Show abstract
BackgroundSlow-wave sleep has been proposed to facilitate the removal of proteins, implicated in neurodegeneration, from the brain. While mechanistic evidence from animal models is accumulating, direct human data on how slow-wave sleep shapes cerebrospinal fluid (CSF) proteostasis remain limited, constraining our understanding of physiological resilience to neurodegenerative disease. MethodsTwelve healthy adults (aged 20-40 years) underwent CSF sampling following three controlled sleep conditions in a randomized crossover design; (1) one night of sleep followed by afternoon CSF sampling, (2) one night of sleep followed by morning CSF sampling, and (3) one night of total sleep deprivation followed by morning CSF sampling. Sleep and wakefulness were verified using polysomnography and actigraphy, with >4-week washout periods between conditions. Measured CSF biomarkers included Alzheimers disease-related proteins: beta-amyloid isoforms (A{beta}38, A{beta}40, and A{beta}42), total and phosphorylated tau, glial fibrillary acidic protein (GFAP), and neurofilament light, as well as orexin, albumin (also measured in serum), and osmolality. Differences between conditions were assessed using Friedman tests with Dunns post hoc correction. ResultsCSF levels of A{beta} and tau tended to be consistently lower after sleep compared with both afternoon sampling and post-sleep deprivation. Concurrently, CSF albumin levels increased after sleep, while neurofilament light and GFAP remained unchanged. Orexin levels rose markedly during sleep deprivation but showed no circadian variation. ConclusionsThese findings support a model in which slow wave sleep enhances CSF turnover, reducing concentrations of specific proteins, including A{beta} and tau. Understanding how sleep regulates the homeostasis of neurodegeneration-related proteins may inform strategies to mitigate disease progression.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Home-EEG assessment of possible compensatory mechanisms for sleep disruption in highly irregular shift workers - The ANCHOR study 95%
- A single nucleotide polymorphism in the HOMER1 gene is associated with sleep latency and theta power in sleep electroencephalogram 93%
- Sleep does not influence schema-facilitated motor memory consolidation 91%
Similar papers in this journal
- The relationship between subjective sleep quality and cognitive performance in healthy young adults: Evidence from three empirical studies 93%
- First-night effect reduces the beneficial effects of sleep on visual plasticity and modifies the underlying neurochemical processes 93%
- Sleep Regularity Index as a Novel Indicator of Sleep Disturbance in Stroke Survivors: A Secondary Data Analysis 92%
Similar papers in this journal
- Effects of one-night partial sleep deprivation on perivascular space volume fraction: Findings from the Stockholm Sleepy Brain Study 95%
- Methodological approach to sleep state misperception in insomnia disorder: comparison between multiple nights of actigraphy recordings and a single night of polysomnography recording 93%
- Sleep architecture correlates with neurological and neurobehavioral short- and mid-term outcome in a sample of very preterm infants 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.