Wnt signaling mediates pathological vascular growth in proliferative retinopathy

Jing Chen1, Andreas Stahl, Nathan M Krah

  • 1Department of Ophthalmology, Harvard Medical School/Children's Hospital Boston, Boston MA 02115, USA.

Circulation
|October 5, 2011
PubMed
Abstract

Insights

Wnt signaling and claudin5 are crucial for pathological retinal neovascularization in retinopathy. Targeting these pathways may offer new treatments for this blinding condition.

Area of Science:

  • Ophthalmology
  • Vascular Biology
  • Molecular Signaling

Background:

  • Ischemic proliferative retinopathy causes blindness by promoting abnormal retinal neovascularization.
  • Understanding molecular differences between normal and pathological vessels is key for targeted therapies.
  • Wnt signaling mutations are linked to defective retinal vasculature.

Purpose of the Study:

  • Investigate the role of Wnt signaling in pathological retinal vascular growth in retinopathy.
  • Determine the function of Wnt receptors and downstream molecules in neovascularization.
  • Explore the involvement of claudin5 in Wnt pathway-driven angiogenesis.

Main Methods:

  • Utilized a mouse model of oxygen-induced proliferative retinopathy.
  • Assessed Wnt receptor expression and activity in pathological neovascularization.
  • Examined the effects of Lrp5 and dishevelled2 loss on retinal vascular growth.
  • Investigated the role of claudin5 in endothelial cell sprouting and vascular development in vitro and in vivo.

Main Results:

  • Wnt receptors (Frizzled4, Lrp5) and activity were elevated in pathological neovascularization.
  • Loss of Lrp5 and dishevelled2 reduced pathological neovascularization.
  • Lrp5 deficiency impaired retinal angiogenesis and blood-retinal barrier formation, downregulating claudin5.
  • Claudin5 inhibition suppressed Wnt-driven endothelial cell sprouting and vascular growth.

Conclusions:

  • Wnt signaling plays a significant role in pathological vascular development in retinopathy.
  • Claudin5 has a novel function in promoting angiogenesis.
  • These findings highlight potential therapeutic targets for retinopathy.

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