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Ex Vivo Corneal Organ Culture Model for Wound Healing Studies
Published on: February 15, 2019
Real-time confocal microscopy of keratocyte activity in wound healing after cryoablation in rabbit corneas
S J Chew1, R W Beuerman, H E Kaufman
1LSU Eye Center, Louisiana State University Medical Center School of Medicine, New Orleans 70112-2234.
Abstract:
A modified tandem scanning confocal microscope was used for real-time in vivo examination of the rabbit cornea following a cryogenic injury. The corneas of New Zealand white rabbits were frozen with a probe that had been cooled by immersion in liquid nitrogen, effectively destroying keratocytes in a central 5 mm diameter zone throughout the total thickness of the cornea. In these eyes, keratocyte repopulation and corneal stromal wound healing proceeded similarly to that which occurs after epikeratophakia, a refractive surgical procedure designed to change the curvature and optical power of the cornea. In epikeratophakia, a cryolathed donor corneal stroma lenticule is sutured onto the bare stroma of the recipient cornea. The collagen tissue lenticule is repopulated by keratocytes (corneal fibroblasts) that migrate in from the host cornea. In our study, the confocal microscope permitted sequential, noninvasive examination of the corneal stroma in the treated animals. Necrosis of the keratocytes, followed by activation of the remaining viable cells in the corneal periphery, was observed in the first 2 to 3 days after cryo injury. A fine stromal fibrous network was seen to develop; in three eyes, this network progressed to the development of a retrocorneal fibrous membrane and dense stromal fibrosis, both of which resulted in significant loss of corneal clarity. Our results suggest that the confocal microscope may be a valuable tool to provide much needed information on wound healing processes at the cellular level after corneal surgery and injury.
Insights
Confocal microscopy visualized rabbit corneal wound healing after cryogenic injury. This technique revealed keratocyte necrosis, cellular activation, and fibrosis, offering insights into corneal repair post-injury and surgery.
Area of Science:
- Ophthalmology
- Regenerative Medicine
- Biomedical Imaging
Background:
- Cryogenic injury to the cornea causes keratocyte destruction.
- Corneal wound healing involves keratocyte repopulation and stromal remodeling.
- Epikeratophakia serves as a model for corneal stromal wound healing.
Purpose of the Study:
- To examine in vivo corneal wound healing after cryogenic injury using confocal microscopy.
- To observe cellular responses and stromal changes during corneal repair.
- To assess the utility of confocal microscopy in studying corneal wound healing.
Main Methods:
- Modified tandem scanning confocal microscope for real-time in vivo examination.
- Cryogenic injury induced in New Zealand white rabbit corneas.
- Noninvasive sequential examination of corneal stroma post-injury.
Main Results:
- Keratocyte necrosis observed within 2-3 days post-cryo injury.
- Activation of peripheral corneal cells and development of a fibrous network.
- Fibrosis and retrocorneal membrane formation led to corneal opacity in some cases.
Conclusions:
- Confocal microscopy provides valuable real-time insights into corneal wound healing.
- The study elucidates cellular mechanisms of corneal repair following injury.
- Findings suggest confocal microscopy's potential in evaluating outcomes of corneal surgery and injury.

