Investigative Ophthalmology & Visual Science Cover Image for Volume 65, Issue 7
June 2024
Volume 65, Issue 7
Open Access
ARVO Annual Meeting Abstract  |   June 2024
Metformin prevents glucocorticoid-induced trabecular meshwork damage and intraocular pressure elevation via activating mitophagy and autophagy
Author Affiliations & Notes
  • Lijuan Xu
    Glaucoma, The Eye Hospital of Wenzhou Medical University, Wenzhou, Zhejiang, China
  • Footnotes
    Commercial Relationships   Lijuan Xu None
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Investigative Ophthalmology & Visual Science June 2024, Vol.65, 3567. doi:
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      Lijuan Xu; Metformin prevents glucocorticoid-induced trabecular meshwork damage and intraocular pressure elevation via activating mitophagy and autophagy. Invest. Ophthalmol. Vis. Sci. 2024;65(7):3567.

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      © ARVO (1962-2015); The Authors (2016-present)

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Abstract

Purpose : Metformin (MET) has preventive effect in human beings against the onset of open-angle glaucoma. However, the underlying mechanism has not yet been studied. This study was carried out to explore the preventive effect of MET on glucocorticoid-induced intraocular pressure (IOP) elevation in mice and cellular damage to human trabecular meshwork cells (HTMC).

Methods : Male C57BL/6J mice received a 9-day preventive treatment of phosphate-buffered saline (PBS) or MET, followed by synchronous dexamethasone (DEX) treatment for 19 days. A PBS group served as the negative control. MET's preventive effect on DEX-induced ocular hypertension in C57BL/6J mice was examined, focusing on IOP, fibrosis, and trabecular aqueous humor outflow (AHO) ultrastructure. HTMC were pre-stimulated with MET for 24 h, then exposed to DEX with MET for five days. Immunofluorescence and western blotting analyzed protein expression in the trabecular meshwork, and flow cytometry analyzed reactive oxygen species content.

Results : DEX significantly increased IOP from the 5th day until the 4th week's end (all p <0.05) in the PBS+DEX group, whereas MET partially neutralized this elevated IOP. The PBS+DEX group exhibited upregulated fibrotic markers in the AHO, which MET+DEX mitigated in trabecular tissues. DEX disrupted the HTMC cytoskeleton, whereas MET facilitated its recovery, induced more autophagosomes, and promoted biological activities of autophagy, mitophagy, and mitochondrial fusion.

Conclusions : MET prevents glucocorticoid-induced trabecular meshwork damage by inducing autophagy and mitophagy, hinting at potential benefits for primary open-angle glaucoma.

This abstract was presented at the 2024 ARVO Annual Meeting, held in Seattle, WA, May 5-9, 2024.

 

 

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