ReviewFrontiers in neuroscience2025
Role of aquaporins in brain water transport and edema.
Review in Frontiers in neuroscience, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed.
- Spatial organization of AQP4 water channel expression in the human brain.Science advances · 2026Article
- Integrated Multi-Omics Identifies Core Molecular Targets in Cerebral Venous Sinus Thrombosis-Induced Brain Injury.Biomedicines · 2026Article
- Exploring the Therapeutic Potential of Aquaporin-4 Modulation in Sepsis: Inhibitors and Facilitators.International journal of molecular sciences · 2026Article
- Elucidating Trigonelline's Therapeutic Mechanisms for Traumatic Brain Injury Through Integrated Network Pharmacology and In Vivo Validation.CNS neuroscience & therapeutics · 2026Article
- Global View of Ocular Parameter Changes Induced by a Single Hemodialysis Session.Journal of clinical medicine · 2026Article
- Sjögren Syndrome Candidate Autoantigen AQP5 Triggers AQP4 CNS Autoimmunity Through Self-Antigen Mimicry.Neurology(R) neuroimmunology & neuroinflammation · 2026Article
- Architecture, permeability, disruption dynamics and remodeling of tight junction proteins: Implications for performance, health, and welfare of the broiler chicken.Poultry science · 2026Review
- Aquaporins in the Capillaries of the Dura Mater of Pigs.International journal of molecular sciences · 2025Article
- Aquaporins in Acute Brain Injury: Insights from Clinical and Experimental Studies.Biomedicines · 2025Review
- Glymphatic System Dysfunction in Elderly Patients with Late-Onset Epilepsy and Comorbid Chronic Insomnia Revealed by Diffusion Tensor Imaging Along the Perivascular Space (DTI-ALPS).Neuropsychiatric disease and treatment · 2025Article
- An Atypical Aquaporin 1 Derived From Paramecium multimicronucleatum Functions as a Multifunctional Channel That Permeates Water, Glycerol, and Urea.The Journal of eukaryotic microbiologyArticle
Corrections and comments
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Authors and funding
6 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Water serves as the primary substance in all living cells and is an essential molecule involved in numerous biological processes critical for maintaining homeostasis in the central nervous system (CNS). Disruptions in water balance can occur in conditions such as cerebral edema, where fluid accumulation results in increased intracranial pressure (ICP). Aquaporins (AQPs) are transmembrane proteins that play a vital role in the rapid transport of water across cell membranes. Various subtypes of AQPs (AQP1, AQP3, AQP4, AQP5, AQP6, AQP7, AQP8, AQP9, and AQP11) have been identified in brain tissue. This review summarizes the latest advancements in our understanding of the critical role of AQPs in regulating water transport in brain edema. Abundant evidence indicates that AQP4, the most prevalent AQP in the CNS, regulates brain water transport and contributes to both cytotoxic and vasogenic edema, suggesting that AQP4 may serve as a potential therapeutic target for brain edema. Additionally, some studies have indicated that AQP1 plays a significant role in the formation of cerebrospinal fluid (CSF) and the maintenance of steady-state ICP. However, to date, these findings have not been translated into clinical practice. There is an urgent need to develop specific AQP inhibitors and activators to explore the potential benefits of modulating the functions of AQP1 and AQP4 in the context of brain edema.
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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.