Involvement of Bradykinin B2 Receptor in Pathological Vascularization in Oxygen-Induced Retinopathy in Mice and Rabbit Cornea

Int J Mol Sci. 2018 Jan 23;19(2):330. doi: 10.3390/ijms19020330.

Abstract

The identification of components of the kallikrein-kinin system in the vitreous from patients with microvascular retinal diseases suggests that bradykinin (BK) signaling may contribute to pathogenesis of retinal vascular complications. BK receptor 2 (B2R) signaling has been implicated in both pro-inflammatory and pro-angiogenic effects promoted by BK. Here, we investigated the role of BK/B2R signaling in the retinal neovascularization in the oxygen-induced retinopathy (OIR) model. Blockade of B2R signaling by the antagonist fasitibant delayed retinal vascularization in mouse pups, indicating that the retinal endothelium is a target of the BK/B2R system. In the rabbit cornea assay, a model of pathological neoangiogenesis, the B2 agonist kallidin induced vessel sprouting and promoted cornea opacity, a sign of edema and tissue inflammation. In agreement with these results, in the OIR model, a blockade of B2R signaling significantly reduced retinal neovascularization, as determined by the area of retinal tufts, and, in the retinal vessel, it also reduced vascular endothelial growth factor and fibroblast growth factor-2 expression. All together, these findings show that B2R blockade reduces retinal neovascularization and inhibits the expression of proangiogenic and pro-inflammatory cytokines, suggesting that targeting B2R signaling may be an effective strategy for treating ischemic retinopathy.

Keywords: B2R antagonist; angiogenic factors; bradykinin; oxygen-induced retinopathy; retinal endothelial cells.

MeSH terms

  • Animals
  • Bradykinin / metabolism
  • Bradykinin B2 Receptor Antagonists / pharmacology
  • Cornea / drug effects
  • Cornea / metabolism
  • Cornea / pathology
  • Disease Models, Animal
  • Epithelial Cells / drug effects
  • Epithelial Cells / metabolism
  • Mice
  • Models, Biological
  • Ornithine / analogs & derivatives
  • Ornithine / pharmacology
  • Oxidative Stress*
  • Rabbits
  • Receptor, Bradykinin B2 / genetics*
  • Receptor, Bradykinin B2 / metabolism
  • Retinal Diseases / etiology*
  • Retinal Diseases / metabolism*
  • Retinal Diseases / pathology
  • Retinal Neovascularization / genetics*
  • Retinal Neovascularization / metabolism
  • Retinal Pigment Epithelium / drug effects
  • Retinal Pigment Epithelium / metabolism
  • Retinal Pigment Epithelium / pathology
  • Signal Transduction / drug effects
  • Sulfonamides / pharmacology

Substances

  • (4-amino-5-(4-(4-(2,4-dichloro-3-(2,4-dimethyl-8-quinolyloxymethyl)phenylsulfonamido)tetrahydro-2H-4-pyranoylcarbonyl)piperazino)-5-oxopentyl)(trimethyl)ammonium
  • Bradykinin B2 Receptor Antagonists
  • Receptor, Bradykinin B2
  • Sulfonamides
  • Ornithine
  • Bradykinin