ReviewTranslational neurodegeneration2025
Targeting the glymphatic system: Aβ accumulation and phototherapy strategies across different stages of Alzheimer's disease.
Review in Translational neurodegeneration, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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The trial behind it
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Who cites it
8 citing papers in PubMed.
- The Glymphatic System in α-Synucleinopathies.Yonsei medical journal · 2026Review
- Impact of stroke on respiratory function and amyloid-β pathology in Tg-2576 mice.Journal of Alzheimer's disease : JAD · 2026Article
- Association between obstructive sleep apnea severity and glymphatic-related DTI-ALPS alterations in newly diagnosed, Drug-Naïve Alzheimer's disease.The journal of prevention of Alzheimer's disease · 2026Article
- NADAlzheimer's & dementia : the journal of the Alzheimer's Association · 2026Review
- Sleep-Dependent Clearance of Brain Metabolites via the Glymphatic System: Implications for Alzheimer's Pathophysiology.Brain and behavior · 2026Review
- Non-invasive neuromodulation techniques for cognitive impairment intervention.American journal of translational research · 2026Review
- Brain Extracellular Space: From an Overlooked Dimension to Catalyst of a Novel Neuroscience Paradigm.Cyborg and bionic systems (Washington, D.C.) · 2026Review
- Light-based 40 Hz sensory therapy for brain disorders: physiological basis, therapeutic mechanisms, and future prospects.Frontiers in medicine · 2026Review
Corrections and comments
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Authors and funding
12 authors.
Funding
Abstract
The glymphatic system serves as the brain's clearance system. It deteriorates with age and is a significant contributor to the onset and progression of Alzheimer's disease (AD). Modulating cerebrospinal fluid (CSF)-based clearance and targeting key components of the glymphatic system, such as aquaporin-4, can enhance amyloid-beta (Aβ) clearance. Light therapy is emerging as a potential AD treatment approach, which involves the use of visible and near-infrared light at specific wavelengths (630/680/808/850/1070 nm), photosensitive proteins, and sensory stimulation at particular frequencies (e.g., 40 Hz). This phototherapy strategy can broadly influence the intracerebral fluid dynamics, including cerebral blood flow, CSF, and interstitial fluid (ISF), as well as structures related to the glymphatic system, such as vascular endothelial cells, glial cells, and neurons. Additionally, it may directly or indirectly inhibit Aβ accumulation by modulating endogenous small molecules, thereby improving cognitive function. Our previous research demonstrated that 630-nm red light can inhibit Aβ cross-linking by clearing endogenous formaldehyde and promoting ISF drainage. Notably, Aβ accumulation exhibits distinct characteristics at different phases of AD, accompanied by varying features of glymphatic system impairment. In the early stages, deep brain regions are significantly affected, whereas in the late stages, accumulation primarily occurs in the paracentral, precentral, and postcentral cortices. Owing to the limited penetration depth of light, this may pose a challenge to the clinical efficacy of phototherapy. Therefore, different stages of AD may require tailored phototherapeutic strategies. Meanwhile, it is important to acknowledge the ongoing controversies associated with lymphovenous anastomosis, a procedure that targets the glymphatic system. Therefore, this article reviews the characteristics of glymphatic system impairment across various AD stages and the mechanisms by which effective phototherapies modulate the glymphatic system. Potential phototherapeutic strategies corresponding to different stages of Aβ accumulation are also proposed.
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What Socratic holds
Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.