Related Experiment Video
Updated: Jul 10, 2026

In Vivo Imaging of Cerebrospinal Fluid Transport through the Intact Mouse Skull using Fluorescence Macroscopy
Published on: July 29, 2019
The Glymphatic system: A key mechanism linking sleep to brain health and diseases
Zeyi Yang1, Pengtao Li1, Rui Yin1
1Department of Neurosurgery, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China.
Abstract:
Sleep is increasingly recognized as a fundamental regulator of brain homeostasis, yet the mechanisms linking sleep to neurological health have only recently begun to emerge. The glymphatic system, a brain-wide perivascular transport network, has provided a mechanistic framework connecting sleep physiology with brain health and disease. Accumulating evidence indicates that glymphatic activity is markedly enhanced during sleep through coordinated regulation of vasomotion, norepinephrine oscillations, aquaporin-4 polarization, extracellular space expansion, respiration, and meningeal lymphatic drainage. Conversely, chronic sleep disruption impairs glymphatic transport, promotes the accumulation of neurotoxic metabolites, and contributes to neuroinflammation, thereby accelerating the progression of diverse neurological disorders. In this review, we integrate recent advances in glymphatic biology from structural organization and transport mechanisms to sleep-dependent regulation and emerging neuroimaging approaches. We critically evaluate current evidence supporting glymphatic dysfunction in neurodegenerative diseases, traumatic brain injury, cerebrovascular disorders, psychiatric disorders, brain tumors, and ocular diseases, highlighting sleep-related impairment as a common mechanistic denominator. Particular emphasis is placed on the translational potential and limitations of non-invasive imaging biomarkers, including DTI-ALPS, dynamic contrast-enhanced MRI, diffusion MRI, PET, and emerging multimodal techniques. We also discuss major controversies surrounding glymphatic physiology, including the relative contributions of bulk flow and diffusion, species-specific differences, and the challenges of validating human imaging biomarkers. Finally, we propose a conceptual sleep-glymphatic-disease axis that integrates current mechanistic knowledge with clinical translation. Understanding how sleep regulates glymphatic function may provide new opportunities for disease prevention, biomarker development, and therapeutic intervention across a broad spectrum of brain disorders.
More Related Videos
06:23A Chronic Sleep Fragmentation Model using Vibrating Orbital Rotor to Induce Cognitive Deficit and Anxiety-Like Behavior in Young Wild-Type Mice
Published on: September 22, 2020
07:56Photobiomodulation Under Electroencephalographic Controls of Sleep for Stimulation of Lymphatic Removal of Toxins from Mouse Brain
Published on: June 28, 2024
Related Concept Videos
Understanding Sleep
The circadian rhythm, a nearly 24-hour cycle, is deeply influenced by environmental light cues. Light exposure directly affects the hypothalamus, which in turn regulates...
Sleep-Wake Cycles
NREM Sleep
NREM sleep comprises four progressive stages that seamlessly merge:
The Blood-brain Barrier
Overview of Synapses
Insufficient Sleep and Sleep Deprivation
Sleep deprivation is a more severe form of sleep loss...
Gut-Brain Axis