Enhancement of Outflow Facility in the Murine Eye by Targeting Selected Tight-Junctions of Schlemm’s Canal Endothelia

The juxtacanalicular connective tissue of the trabecular meshwork together with inner wall endothelium of Schlemm’s canal (SC) provide the bulk of resistance to aqueous outflow from the anterior chamber. Endothelial cells lining SC elaborate tight junctions (TJs), down-regulation of which may widen...

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Published in:Scientific reports Vol. 7; no. 1; p. 40717
Main Authors: Tam, Lawrence C. S., Reina-Torres, Ester, Sherwood, Joseph M., Cassidy, Paul S., Crosbie, Darragh E., Lütjen-Drecoll, Elke, Flügel-Koch, Cassandra, Perkumas, Kristin, Humphries, Marian M., Kiang, Anna-Sophia, O’Callaghan, Jeffrey, Callanan, John J., Read, A. Thomas, Ethier, C. Ross, O’Brien, Colm, Lawrence, Matthew, Campbell, Matthew, Stamer, W. Daniel, Overby, Darryl R., Humphries, Pete
Format: Journal Article
Language:English
Published: London Nature Publishing Group UK 16-01-2017
Nature Publishing Group
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Summary:The juxtacanalicular connective tissue of the trabecular meshwork together with inner wall endothelium of Schlemm’s canal (SC) provide the bulk of resistance to aqueous outflow from the anterior chamber. Endothelial cells lining SC elaborate tight junctions (TJs), down-regulation of which may widen paracellular spaces between cells, allowing greater fluid outflow. We observed significant increase in paracellular permeability following siRNA-mediated suppression of TJ transcripts, claudin-11, zonula-occludens-1 (ZO-1) and tricellulin in human SC endothelial monolayers. In mice claudin-11 was not detected, but intracameral injection of siRNAs targeting ZO-1 and tricellulin increased outflow facility significantly. Structural qualitative and quantitative analysis of SC inner wall by transmission electron microscopy revealed significantly more open clefts between endothelial cells treated with targeting, as opposed to non-targeting siRNA. These data substantiate the concept that the continuity of SC endothelium is an important determinant of outflow resistance, and suggest that SC endothelial TJs represent a specific target for enhancement of aqueous movement through the conventional outflow system.
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These authors contributed equally to this work.
ISSN:2045-2322
2045-2322
DOI:10.1038/srep40717