Roles of NFκB-miR-29s-MMP-2 circuitry in experimental choroidal neovascularization

Jingjing Cai, Guibin Yin, Bing Lin

  • 1School of Optometry and Ophthalmology and Eye Hospital, Wenzhou Medical University, 270 Xueyuan Road, Wenzhou, Zhejiang 325003, People's Republic of China. shzhwu1@gmail.com.

Abstract

Insights

NFκB activation in choroidal neovascularization (CNV) reduces miR-29s, increasing MMP-2. Targeting miR-29s may offer a strategy for resolving CNV by modulating MMP-2 levels.

Area of Science:

  • Ophthalmology
  • Molecular Biology
  • Cell Biology

Background:

  • Matrix metallopeptidase-2 (MMP-2) is implicated in angiogenesis and choroidal neovascularization (CNV).
  • The specific regulatory mechanisms of MMP-2 in CNV remain incompletely understood.
  • This study investigates the roles of NFκB and microRNA-29 family (miR-29s) in MMP-2 regulation during CNV.

Purpose of the Study:

  • To elucidate the regulation of MMP-2 in a mouse model of CNV.
  • To examine the interplay between NFκB signaling, miR-29s, and MMP-2 expression in retinal pigment epithelial (RPE) cells.
  • To explore potential therapeutic strategies targeting miR-29s for CNV treatment.

Main Methods:

  • Established a CNV model in C57BL/6 mice using laser photocoagulation.
  • Utilized immunohistochemistry, RT-qPCR, and western blot to analyze angiogenesis, MMP-2, NFκB pathway components (IκBα, phospho-IκBα), and miR-29s in ocular tissues.
  • Investigated miR-29s regulation by NFκB and MMP-2 regulation by miR-29s in cultured RPE (ARPE-19) and endothelial (EA hy926) cells.

Main Results:

  • Increased MMP-2 expression and NFκB pathway activation were observed in the CNV model.
  • Reduced levels of miR-29s correlated with NFκB pathway induction in laser-treated eyes.
  • NFκB activation decreased miR-29s in RPE cells, and miR-29s mimics reduced secreted MMP-2 and inhibited MMP-2 transcription via its 3'-UTR.

Conclusions:

  • NFκB activation in CNV inhibits miR-29s, potentially leading to increased MMP-2 levels and promoting angiogenesis.
  • Modulating miR-29s levels presents a promising therapeutic avenue for managing CNV.
  • Understanding this regulatory axis provides insights into the pathogenesis of CNV.

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