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Chemical injuries of the eye: current concepts in pathophysiology and therapy
1Anterior Segment/External Disease Division, King Khaled Eye Specialist Hospital, Riyadh, Saudi Arabia.
Abstract:
Chemical injuries of the eye may produce extensive damage to the ocular surface epithelium, cornea, and anterior segment, resulting in permanent unilateral or bilateral visual impairment. Pathophysiological events which may influence the final visual prognosis and which are amenable to therapeutic modulation include 1) ocular surface injury, repair, and differentiation, 2) corneal stromal matrix injury, repair and/or ulceration, and 3) corneal and stromal inflammation. Immediately following chemical injury, it is important to estimate and clinically grade the severity of limbal stem cell injury (by assessing the degree of limbal, conjunctival, and scleral ischemia and necrosis) and intraocular penetration of the noxious agent (by assessing clarity of the corneal stroma and anterior segment abnormalities). Immediate therapy is directed toward prompt irrigation and removal of any remaining reservoir of chemical contact with the eye. Initial medical therapy is directed promoting re-epithelialization and transdifferentiation of the ocular surface, augmenting corneal repair by supporting keratocyte collagen production and minimizing ulceration related to collagenase activity, and controlling inflammation. Early surgical therapy if indicated, is directed toward removal of necrotic corneal epithelium and conjunctiva, prompt re-establishment of an adequate limbal vascularity, and re-establishment of limbal stem cell population early in the clinical course, if sufficient evidence exists of complete limbal stem cell loss. Re-establishment of limbal stem cells by limbal autograft or allograft transplantation, or by transfer in conjunction with large diameter penetrating keratoplasty, may facilitate development of an intact, phenotypically correct corneal epithelium. Limbal stem cell transplantation may prevent the development of fibrovascular pannus or sterile corneal corneal ulceration, simplify visual rehabilitation, and improve the visual prognosis. Advances in ocular surface transplantation techniques which allow late attempts at visual rehabilitation of a scarred and vascularized cornea include limbal stem cell transplantation for incomplete transdifferentiation and persistent corneal epithelial dysfunction, and conjunctival and/or mucosal membrane transplantation for ocular surface mechanical dysfunction. Rehabilitation of the ocular surface may be followed, if necessary, by standard penetrating keratoplasty if all aspects of ocular surface rehabilitation are complete, or by large diameter penetrating keratoplasty if successful limbal stem cell transplantation cannot be achieved but other ocular surface rehabilitation is complete.
Insights
Chemical eye injuries can cause severe vision loss. Prompt irrigation and therapies targeting ocular surface repair, corneal healing, and inflammation control are crucial for visual prognosis. Limbal stem cell transplantation offers significant visual rehabilitation potential.
Area of Science:
- Ophthalmology
- Regenerative Medicine
- Ocular Surface Disease
Background:
- Chemical eye injuries cause significant damage to the ocular surface, cornea, and anterior segment, potentially leading to permanent visual impairment.
- Pathophysiological events like ocular surface damage, stromal matrix injury, and inflammation critically influence visual outcomes.
- Assessing limbal stem cell injury and chemical penetration is vital for immediate clinical management.
Purpose of the Study:
- To outline therapeutic strategies for managing chemical eye injuries.
- To highlight the role of ocular surface repair, corneal healing, and inflammation control in visual prognosis.
- To emphasize the importance of limbal stem cell transplantation for visual rehabilitation.
Main Methods:
- Immediate irrigation and removal of chemical agents.
- Medical therapies promoting re-epithelialization, corneal repair, and inflammation control.
- Surgical interventions including debridement, vascularity restoration, and limbal stem cell transplantation (autograft/allograft).
Main Results:
- Prompt management can modulate ocular surface repair, corneal healing, and inflammation.
- Limbal stem cell transplantation facilitates proper corneal epithelium development and prevents complications like pannus or ulceration.
- Advanced techniques like conjunctival/mucosal grafting aid late-stage rehabilitation of scarred corneas.
Conclusions:
- Effective management of chemical eye injuries requires a multi-faceted approach addressing ocular surface, stromal, and inflammatory components.
- Limbal stem cell transplantation is a key strategy for restoring corneal integrity and improving visual prognosis.
- Innovative ocular surface transplantation techniques offer solutions for complex cases and late visual rehabilitation.