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Publication : An ocular glymphatic clearance system removes β-amyloid from the rodent eye.

First Author  Wang X Year  2020
Journal  Sci Transl Med Volume  12
Issue  536 PubMed ID  32213628
Mgi Jnum  J:288434 Mgi Id  MGI:6432186
Doi  10.1126/scitranslmed.aaw3210 Citation  Wang X, et al. (2020) An ocular glymphatic clearance system removes beta-amyloid from the rodent eye. Sci Transl Med 12(536)
abstractText  Despite high metabolic activity, the retina and optic nerve head lack traditional lymphatic drainage. We here identified an ocular glymphatic clearance route for fluid and wastes via the proximal optic nerve in rodents. beta-amyloid (Abeta) was cleared from the retina and vitreous via a pathway dependent on glial water channel aquaporin-4 (AQP4) and driven by the ocular-cranial pressure difference. After traversing the lamina barrier, intra-axonal Abeta was cleared via the perivenous space and subsequently drained to lymphatic vessels. Light-induced pupil constriction enhanced efflux, whereas atropine or raising intracranial pressure blocked efflux. In two distinct murine models of glaucoma, Abeta leaked from the eye via defects in the lamina barrier instead of directional axonal efflux. The results suggest that, in rodents, the removal of fluid and metabolites from the intraocular space occurs through a glymphatic pathway that might be impaired in glaucoma.
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