Interruption of Wnt signaling in Müller cells ameliorates ischemia-induced retinal neovascularization.

Retinal Müller cells are major producers of inflammatory and angiogenic cytokines which contribute to diabetic retinopathy (DR). Over-activation of the Wnt/β-catenin pathway has been shown to play an important pathogenic role in DR. However, the roles of Müller cell-derived Wnt/β-catenin signaling i...

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Main Authors: Kelu Kevin Zhou, Siribhinya Benyajati, Yun Le, Rui Cheng, Wenbo Zhang, Jian-xing Ma
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4182699?pdf=render
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author Kelu Kevin Zhou
Siribhinya Benyajati
Yun Le
Rui Cheng
Wenbo Zhang
Jian-xing Ma
author_facet Kelu Kevin Zhou
Siribhinya Benyajati
Yun Le
Rui Cheng
Wenbo Zhang
Jian-xing Ma
author_sort Kelu Kevin Zhou
collection DOAJ
description Retinal Müller cells are major producers of inflammatory and angiogenic cytokines which contribute to diabetic retinopathy (DR). Over-activation of the Wnt/β-catenin pathway has been shown to play an important pathogenic role in DR. However, the roles of Müller cell-derived Wnt/β-catenin signaling in retinal neovascularization (NV) and DR remain undefined. In the present study, mice with conditional β-catenin knockout (KO) in Müller cells were generated and subjected to oxygen-induced retinopathy (OIR) and streptozotocin (STZ)-induced diabetes. Wnt signaling was evaluated by measuring levels of β-catenin and expression of its target genes using immunoblotting. Retinal vascular permeability was measured using Evans blue as a tracer. Retinal NV was visualized by angiography and quantified by counting pre-retinal nuclei. Retinal pericyte loss was evaluated using retinal trypsin digestion. Electroretinography was performed to examine visual function. No abnormalities were detected in the β-catenin KO mice under normal conditions. In OIR, retinal levels of β-catenin and VEGF were significantly lower in the β-catenin KO mice than in littermate controls. The KO mice also had decreased retinal NV and vascular leakage in the OIR model. In the STZ-induced diabetic model, disruption of β-catenin in Müller cells attenuated over-expression of inflammatory cytokines and ameliorated pericyte dropout in the retina. These findings suggest that Wnt signaling activation in Müller cells contributes to retinal NV, vascular leakage and inflammation and represents a potential therapeutic target for DR.
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spelling doaj.art-42d72ba7776c421ea678608110ae8cc42022-12-22T03:57:46ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01910e10845410.1371/journal.pone.0108454Interruption of Wnt signaling in Müller cells ameliorates ischemia-induced retinal neovascularization.Kelu Kevin ZhouSiribhinya BenyajatiYun LeRui ChengWenbo ZhangJian-xing MaRetinal Müller cells are major producers of inflammatory and angiogenic cytokines which contribute to diabetic retinopathy (DR). Over-activation of the Wnt/β-catenin pathway has been shown to play an important pathogenic role in DR. However, the roles of Müller cell-derived Wnt/β-catenin signaling in retinal neovascularization (NV) and DR remain undefined. In the present study, mice with conditional β-catenin knockout (KO) in Müller cells were generated and subjected to oxygen-induced retinopathy (OIR) and streptozotocin (STZ)-induced diabetes. Wnt signaling was evaluated by measuring levels of β-catenin and expression of its target genes using immunoblotting. Retinal vascular permeability was measured using Evans blue as a tracer. Retinal NV was visualized by angiography and quantified by counting pre-retinal nuclei. Retinal pericyte loss was evaluated using retinal trypsin digestion. Electroretinography was performed to examine visual function. No abnormalities were detected in the β-catenin KO mice under normal conditions. In OIR, retinal levels of β-catenin and VEGF were significantly lower in the β-catenin KO mice than in littermate controls. The KO mice also had decreased retinal NV and vascular leakage in the OIR model. In the STZ-induced diabetic model, disruption of β-catenin in Müller cells attenuated over-expression of inflammatory cytokines and ameliorated pericyte dropout in the retina. These findings suggest that Wnt signaling activation in Müller cells contributes to retinal NV, vascular leakage and inflammation and represents a potential therapeutic target for DR.http://europepmc.org/articles/PMC4182699?pdf=render
spellingShingle Kelu Kevin Zhou
Siribhinya Benyajati
Yun Le
Rui Cheng
Wenbo Zhang
Jian-xing Ma
Interruption of Wnt signaling in Müller cells ameliorates ischemia-induced retinal neovascularization.
PLoS ONE
title Interruption of Wnt signaling in Müller cells ameliorates ischemia-induced retinal neovascularization.
title_full Interruption of Wnt signaling in Müller cells ameliorates ischemia-induced retinal neovascularization.
title_fullStr Interruption of Wnt signaling in Müller cells ameliorates ischemia-induced retinal neovascularization.
title_full_unstemmed Interruption of Wnt signaling in Müller cells ameliorates ischemia-induced retinal neovascularization.
title_short Interruption of Wnt signaling in Müller cells ameliorates ischemia-induced retinal neovascularization.
title_sort interruption of wnt signaling in muller cells ameliorates ischemia induced retinal neovascularization
url http://europepmc.org/articles/PMC4182699?pdf=render
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AT yunle interruptionofwntsignalinginmullercellsamelioratesischemiainducedretinalneovascularization
AT ruicheng interruptionofwntsignalinginmullercellsamelioratesischemiainducedretinalneovascularization
AT wenbozhang interruptionofwntsignalinginmullercellsamelioratesischemiainducedretinalneovascularization
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