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Updated: Jun 26, 2026

Examining the Dynamics of Cellular Adhesion and Spreading of Epithelial Cells on Fibronectin During Oxidative Stress
Published on: October 13, 2019
Fibronectin and focal adhesion kinase small interfering RNA modulate rat retinal Müller cells adhesion and migration
Xin-Ling Wang1, Tao Yu, Jin-Song Zhang
1Department of Ophthalmology, and the Key Laboratory of Lens, The Fourth Affiliated Hospital, China Medical University, Heping District, Shenyang, China. wxinling@126.com
Abstract:
Retinal Müller cells (RMCs) hypertrophy and proliferation play a crucial role in epiretinal membrane formation. This study was designed to analyze the effects of Fibronectin and specific FAK siRNA in cell adhesion and migration in rat Müller cells. RMCs were cultured and identified by GFAP, Vimentin, and GLAST mAb, respectively. The cells were planted on dishes coated with Fibronectin at 0, 1, 5, 10, 50, and 100 microg/ml. The attachment and migration assay was applied to characterize the RMCs-Fibronectin interactions. Cell lysis and Western blotting were utilized to detect beta(1)-integrin, FAK, and GLAST protein expression. Then the cells were treated with FAK siRNA, non-targeting siRNA, and control medium. The cell cycle and apoptosis rate was determined by flow cytometry. The attachment, migration, and Western blotting assay were repeated. These data suggested that almost all the cells expressed GFAP, Vimentin, and GLAST, respectively, which ensured most of the harvested cells were RMCs. In attachment assay, the A570 values increased significantly with time (F = 1105.439, P < 0.001) and Fibronectin concentration (F = 424.683, P < 0.001). There were significant difference between each Fibronectin concentration in RMCs migration (F = 34.703, P < 0.000). The expression ratio of FAK, beta(1)-integrin, and GLAST elevated significantly as Fibronectin concentration increased (F = 54.755, P < 0.000; F = 119.962, P < 0.000; F = 39.287, P < 0.000). The Fibronectin pretreatment was settled on 50 microg/ml for siRNA inhibition assays. The specific FAK siRNA treatment significantly increased G(0)/G(1) percentage and apoptosis rate compared with NT siRNA and control group (F = 11.526, P = 0.009; F = 64.772, P < 0.000). The apoptotic rate was significantly suppressed by inhibitors of caspase-8 and 3 (F = 10.500, P = 0.011). The A570 values were significantly suppressed in FAK siRNA groups compared with NT siRNA and control group (F = 154.241, P < 0.000), and the mean migratory cells per view field were significantly decreased (F = 10.906, P = 0.001). FAK and GLAST expression ratio decreased significantly after FAK siRNA treatment (F = 5.315, P = 0.047; F = 5.985, P = 0.042). Take together, FAK is involved in beta(1)-integrin mediated adhesive signaling and play a critical role in regulating Müller cell adhesion, migration, and so far as to glutamate transportation functions.
Insights
Fibronectin promotes retinal Müller cell adhesion and migration by activating FAK signaling. Inhibiting FAK with siRNA reduces cell adhesion and migration, impacting glutamate transport.
Area of Science:
- Ophthalmology and Vision Science
- Cell Biology
- Molecular Biology
Background:
- Retinal Müller cells (RMCs) are implicated in epiretinal membrane formation through hypertrophy and proliferation.
- Fibronectin is a key extracellular matrix protein involved in cell adhesion and migration.
- Focal Adhesion Kinase (FAK) is a critical signaling protein in cell adhesion and survival.
Purpose of the Study:
- To investigate the effects of Fibronectin on rat Müller cell adhesion and migration.
- To analyze the role of FAK signaling in Fibronectin-mediated Müller cell behavior.
- To determine the impact of FAK inhibition on cell cycle, apoptosis, and glutamate transporter expression.
Main Methods:
- Primary rat Müller cells were cultured and identified using specific cell markers (GFAP, Vimentin, GLAST).
- Cell attachment and migration assays were performed on Fibronectin-coated surfaces.
- Western blotting was used to quantify protein expression (β1-integrin, FAK, GLAST).
- FAK was inhibited using siRNA, and cell cycle, apoptosis, and migration were assessed via flow cytometry and migration assays.
Main Results:
- Cell attachment and migration significantly increased with higher Fibronectin concentrations.
- Fibronectin upregulated the expression of FAK, β1-integrin, and GLAST.
- FAK siRNA treatment significantly reduced cell attachment and migration, increased G(0)/G(1) phase percentage, and elevated apoptosis rates.
- FAK siRNA also decreased FAK and GLAST protein expression.
Conclusions:
- Fibronectin enhances Müller cell adhesion and migration through β1-integrin and FAK signaling pathways.
- FAK plays a critical role in regulating Müller cell adhesion, migration, and potentially glutamate transport functions.
- Targeting FAK may offer therapeutic potential for conditions involving aberrant Müller cell behavior, such as epiretinal membrane formation.
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