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Author Spotlight: Unraveling the Molecular Mechanisms in PCO and Fibrosis Following Cataract Surgery
Published on: December 1, 2023
ErbBs in Lens Cell Fibrosis and Secondary Cataract
Judy K VanSlyke1, Bruce A Boswell1, Linda S Musil1
1Department of Chemical Physiology and Biochemistry, Oregon Health & Science University, Portland, Oregon, United States.
Purpose:
TGFβ-induced epithelial-to-myofibroblast transition (EMyT) of lens cells has been linked to the most common vision-disrupting complication of cataract surgery-namely, posterior capsule opacification (PCO; secondary cataract). Although inhibitors of the ErbB family of receptor tyrosine kinases have been shown to block some PCO-associated processes in model systems, our knowledge of ErbB signaling in the lens is very limited. Here, we investigate the expression of ErbBs and their ligands in primary cultures of chick lens epithelial cells (dissociated cell-derived monolayer cultures [DCDMLs]) and how TGFβ affects ErbB function.
Methods:
DCDMLs were analyzed by immunofluorescence microscopy and Western blotting under basal and profibrotic conditions.
Results:
Small-molecule ErbB kinase blockers, including the human therapeutic lapatinib, selectively inhibit TGFβ-induced EMyT of DCDMLs. Lens cells constitutively express ErbB1 (EGFR), ErbB2, and ErbB4 protein on the plasma membrane and release into the medium ErbB-activating ligand. Culturing DCDMLs with TGFβ increases soluble bioactive ErbB ligand and markedly alters ErbBs, reducing total and cell surface ErbB2 and ErbB4 while increasing ErbB1 expression and homodimer formation. Similar, TGFβ-dependent changes in relative ErbB expression are induced when lens cells are exposed to the profibrotic substrate fibronectin. A single, 1-hour treatment with lapatinib inhibits EMyT in DCDMLs assessed 6 days later. Short-term exposure to lower doses of lapatinib is also capable of eliciting a durable response when combined with suboptimal levels of a mechanistically distinct multikinase inhibitor.
Conclusions:
Our findings support ErbB1 as a therapeutic target for fibrotic PCO, which could be leveraged to pharmaceutically preserve the vision of millions of patients with cataracts.
Insights
Targeting ErbB1 may prevent TGFβ-induced lens cell changes that cause posterior capsule opacification (PCO) after cataract surgery. Lapatinib effectively inhibits this process, offering a potential therapeutic strategy for preserving vision.
Area of Science:
- Ophthalmology
- Cell Biology
- Molecular Biology
Background:
- Posterior capsule opacification (PCO), a secondary cataract, is a common complication of cataract surgery.
- TGFβ-induced epithelial-to-myofibroblast transition (EMyT) in lens cells is implicated in PCO development.
- ErbB signaling in the lens is not well understood, despite ErbB inhibitors showing promise in blocking PCO-associated processes.
Purpose of the Study:
- To investigate ErbB receptor tyrosine kinase (RTK) expression and function in chick lens epithelial cells.
- To determine how TGFβ influences ErbB signaling and EMyT in these cells.
- To explore the potential of ErbB inhibitors as a therapeutic strategy for PCO.
Main Methods:
- Primary cultures of chick lens epithelial cells (dissociated cell-derived monolayer cultures [DCDMLs]) were used.
- Immunofluorescence microscopy and Western blotting were employed to analyze ErbB expression and signaling.
- The effects of TGFβ, fibronectin, and small-molecule ErbB kinase inhibitors (e.g., lapatinib) on EMyT were assessed.
Main Results:
- Lens cells constitutively express ErbB1 (EGFR), ErbB2, and ErbB4, and release ErbB ligands.
- TGFβ increases soluble ErbB ligand and alters ErbB expression, notably increasing ErbB1 and decreasing ErbB2/ErbB4.
- Lapatinib selectively inhibited TGFβ-induced EMyT, with a single treatment showing a durable effect.
Conclusions:
- ErbB1 is a potential therapeutic target for preventing fibrotic PCO.
- Targeting ErbB1 with inhibitors like lapatinib could offer a pharmaceutical approach to preserve vision in cataract patients.
- Further research into ErbB signaling in the lens may lead to novel treatments for vision-disrupting complications.
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