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Updated: Aug 14, 2026

An Epithelial Abrasion Model for Studying Corneal Wound Healing
Published on: December 29, 2021
Optimal concentration of human epidermal growth factor (hEGF) for epithelial healing in experimental corneal alkali
1Department of Ophthalmology, Mokdong Hospital, Ewha Women's University, 911-1 Mokdong, Yangcheon-ku, 158-056, Seoul, Korea.
Purpose:
By using both in vivo and in vitro (organ-cultured) systems, the optimal concentrations of hEGF to enhance epithelial healing after alkali wounds were evaluated in the rabbit cornea.
Methods:
Alkali-injured corneas (pi = 5.5 mm, 1 N NaOH, 60 s) were treated with 0.01, 0.1, 1.0, 10 and 100 ng/ml hEGF for the in vitro study. The healing of epithelium and endothelium was determined at 1, 2, 3, 4, and 6 days after treatment. For the in vivo experiment, the eyes were treated with 2, 5, 10, and 50 microg/ml hEGF 3 times per day. The measurement of epithelial healing rate, transmission electron microscopy and immunohistochemical observation were performed after 7 days treatment.
Results:
In in vitro tests, hEGF enhanced the epithelial healing rates, showing a maximum enhancement at the concentration of 1.0 ng/ml, and endothelial healing was increased at 100 ng/ml. In in vivo studies, no significant difference was observed in the rates of epithelial healing between control and each hEGF-treated group. Among the tested concentrations, 5 microg/ml hEGF induced the most active proliferation of basal cells and 50 microg/ml hEGF remarkably produced a vascular ingrowth to the central wound area. The thickness of re-surfaced epithelium was increased by hEGF in a concentration-dependent manner.
Conclusions:
The results of the present study indicate that a low concentration of hEGF may selectively enhance epithelial healing without affecting endothelial healing. The optimal concentration of hEGF for the stimulation of epithelial healing appears to be 5 microg/ml in rabbit corneal alkali wounds.
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