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Updated: Mar 11, 2026

Author Spotlight: Unraveling the Molecular Mechanisms in PCO and Fibrosis Following Cataract Surgery
Published on: December 1, 2023
SiRNA Targeting mTOR Effectively Prevents the Proliferation and Migration of Human Lens Epithelial Cells
Chunmei Zhang1, Jingjing Liu1, Na Jin1
1Department of Ophthalmology, the First Affiliated Hospital of Harbin Medical University, Harbin, P.R. China.
Abstract:
Posterior capsule opacification (PCO) is the most common complication that causes visual decrease after extracapsular cataract surgery. The primary cause of PCO formation is the proliferation of the residual lens epithelial cells (LECs). The mammalian target of rapamycin (mTOR) plays an important role in the growth and migration of LECs. In the current study, we used small interfering RNA (siRNA) to specifically attenuate mTOR in human lens epithelial B3 cells (HLE B3). We aimed to examine the effect of mTOR-siRNA on the proliferation, migration and epithelial-to-mesenchymal transition (EMT) of HLE B3 cells and explore the underlying mechanisms. The mTOR-siRNA was transfected into HLE B3 cells using lipofectamine 2000. The mRNA and protein levels of mTOR were examined to confirm the efficiency of mTOR-siRNA. The levels of mRNA and protein as well as the activity of mTOR down-stream effectors p70 ribosomal protein S6 kinase (p70S6K) and protein kinase B (PKB, AKT) were examined using real-time PCR or Western blot, respectively. The cell proliferation was determined using cell counting kit (CCK) 8 and cell growth curve assay. The cell migration was examined using Transwell system and Scratch assay. MTOR-siRNA effectively eliminated mTOR mRNA and protein. The proliferation and migration were significantly suppressed by mTOR-siRNA transfection. mTOR-siRNA reduced the mRNA of p70S6K and AKT in a time-dependent manner. Furthermore, the phosphorylation of p70S6K and AKT was decreased by mTOR-siRNA. MTOR-siRNA also eliminated the formation of mTORC1 and mTORC2 protein complex and blocked the transforming growth factor (TGF)-β-induced EMT. Our results suggested that mTOR-siRNA could effectively inhibit the proliferation, migration and EMT of HLE B3 cells through the inhibition of p70S6K and AKT. These results indicated that mTOR-siRNA might be an effective agent inhibiting HLE cells growth and EMT following cataract surgery and provide an alternative therapy for preventing PCO.
Insights
Small interfering RNA (siRNA) targeting the mammalian target of rapamycin (mTOR) effectively inhibited lens epithelial cell growth and migration. This mTOR-siRNA approach suppressed epithelial-to-mesenchymal transition, offering a potential therapy for preventing posterior capsule opacification after cataract surgery.
Area of Science:
- Ophthalmology
- Cell Biology
- Molecular Biology
Background:
- Posterior capsule opacification (PCO) is the most common cause of vision loss post-cataract surgery.
- Proliferation of residual lens epithelial cells (LECs) drives PCO formation.
- The mammalian target of rapamycin (mTOR) pathway is crucial for LEC growth and migration.
Purpose of the Study:
- To investigate the effect of mTOR-siRNA on human lens epithelial B3 (HLE B3) cell proliferation, migration, and epithelial-to-mesenchymal transition (EMT).
- To explore the underlying molecular mechanisms of mTOR inhibition in HLE B3 cells.
Main Methods:
- Transfection of HLE B3 cells with mTOR-siRNA using lipofectamine 2000.
- Confirmation of mTOR knockdown via mRNA and protein level analysis.
- Assessment of cell proliferation (CCK8, growth curve), migration (Transwell, Scratch assay), and EMT markers.
- Analysis of mTOR downstream effectors (p70S6K, AKT) and protein complexes (mTORC1, mTORC2).
Main Results:
- mTOR-siRNA significantly reduced mTOR mRNA and protein levels in HLE B3 cells.
- Proliferation and migration of HLE B3 cells were markedly suppressed by mTOR-siRNA.
- mTOR-siRNA inhibited the phosphorylation of downstream targets p70S6K and AKT, and blocked TGF-β-induced EMT.
Conclusions:
- mTOR-siRNA effectively inhibits HLE B3 cell proliferation, migration, and EMT by suppressing the p70S6K and AKT pathways.
- mTOR-siRNA demonstrates potential as a therapeutic agent to prevent PCO formation following cataract surgery.
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