Related Experiment Video
Updated: May 4, 2026

Studying Pancreatic Cancer Stem Cell Characteristics for Developing New Treatment Strategies
Published on: June 20, 2015
Metformin attenuates lens epithelial cell senescence by suppressing cGAS-STING via SIRT1-PGC-1α-mediated
Jialin Luo1, Chaoqun Wei2, Liyao Sun3
1Eye Hospital, The First Affiliated Hospital of Harbin Medical University, Harbin, China; NHC Key Laboratory of Cell Transplantation, Heilongjiang, China.
Abstract:
UVB-induced lens epithelial cell (LEC) senescence is among the important factors involved in the pathogenesis of age-related cataract (ARC). This study aimed to investigate the anti-aging effect of metformin (Met) and to elucidate the molecular mechanisms underlying this effect. RNA sequencing, nontargeted metabolomics analysis and network pharmacology were conducted. The expression of senescence indicators (P53 and P21Cip1) and senescence-associated β-galactosidase (SA-β-gal) activity were assessed. Mitochondrial function and dynamics were evaluated by measuring the mitochondrial membrane potential (MMP), transmission electron microscope (TEM), and Western blotting. Cytosolic mtDNA was visualized by fluorescence staining, and the activation of the SIRT1-PGC-1α pathway and the cGAS-STING pathway were analysed by Western blotting. Our findings indicated that cellular senescence was predominantly responsible for UVB-induced cataract. Met attenuated UVB-induced cataract by inhibiting the senescence phenotype. Mechanistically, Met activated the SIRT1-PGC-1α pathway to inhibit mitochondrial fragmentation. This attenuation of mitochondrial fragmentation reduced mtDNA release into the cytosol, thereby inhibiting the activation of the cGAS-STING-mediated LEC senescence. Our findings on the efficacy of Met pave the way for the development of new pharmacological strategies to prevent cataract development.
Insights
Metformin (Met) prevents age-related cataract by inhibiting UVB-induced cellular senescence in lens epithelial cells (LECs). It works by activating the SIRT1-PGC-1α pathway, improving mitochondrial function, and blocking the cGAS-STING pathway.
Area of Science:
- Ophthalmology
- Cell Biology
- Pharmacology
Background:
- Age-related cataract (ARC) is a significant cause of vision impairment.
- UVB radiation induces senescence in lens epithelial cells (LECs), contributing to ARC pathogenesis.
Purpose of the Study:
- To investigate the anti-aging effects of metformin (Met) on UVB-induced LEC senescence.
- To elucidate the molecular mechanisms by which Met prevents cataract formation.
Main Methods:
- RNA sequencing, metabolomics, and network pharmacology were employed.
- Senescence indicators (P53, P21Cip1, SA-β-gal activity) and mitochondrial function (MMP, TEM) were assessed.
- SIRT1-PGC-1α and cGAS-STING pathway activation were analyzed via Western blotting.
Main Results:
- Metformin attenuated UVB-induced cataract by inhibiting the senescence phenotype in LECs.
- Metformin activated the SIRT1-PGC-1α pathway, reducing mitochondrial fragmentation.
- Reduced mitochondrial fragmentation led to decreased cytosolic mtDNA release, inhibiting cGAS-STING pathway activation and LEC senescence.
Conclusions:
- Metformin demonstrates efficacy in preventing UVB-induced cataract by targeting cellular senescence.
- The mechanism involves the SIRT1-PGC-1α and cGAS-STING pathways, highlighting potential therapeutic strategies for ARC.
Related Concept Videos
Replicative Cell Senescence
Oral Hypoglycemic Agents: Biguanides and Glitazones
Mitochondria

