Aquaporin 4 and glymphatic flow have central roles in brain fluid homeostasis
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Neuroscience
Link
https://www.nature.com/articles/s41583-021-00514-z.pdf
Reference9 articles.
1. MacAulay, N. Molecular mechanisms of brain water transport. Nat. Rev. Neurosci. 22, 326–344 (2021).
2. Alshuhri, M. S., Gallagher, L., Work, L. M. & Holmes, W. M. Direct imaging of glymphatic transport using H217O MRI. JCI Insight 6, e141159 (2021).
3. Mestre, H. et al. Cerebrospinal fluid influx drives acute ischemic tissue swelling. Science 367, eaax7171 (2020).
4. Mestre, H. et al. Aquaporin-4-dependent glymphatic solute transport in the rodent brain. eLife 7, e40070 (2018).
5. Smith, A. J., Yao, X., Dix, J. A., Jin, B.-J. & Verkman, A. S. Test of the ‘glymphatic’ hypothesis demonstrates diffusive and aquaporin-4-independent solute transport in rodent brain parenchyma. eLife 6, e27679 (2017).
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