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Role of ocular matrix metalloproteinases in peripheral ulcerative keratitis
V A Smith1, H B Hoh, D L Easty
1University of Bristol, Division of Ophthalmology, Bristol Eye Hospital, Lower Maudlin Street, Bristol BS1 2LX.
Aim:
Peripheral ulcerative keratitis (PUK) is an ocular manifestation of rheumatoid arthritis and other similar systemic diseases. The purpose of this inquiry was to investigate the involvement of matrix metalloproteinases (MMPs) in the induction and/or maintenance of PUK.
Methods:
Substrate gel electrophoresis was used to characterise the MMP activities secreted by primary cultures of keratocytes derived from normal and perforated pathological corneal specimens, and those present in tears of normal subjects and patients with PUK. Substrate specificity and the in vivo activity status of the secreted MMPs was assessed by SDS-polyacrylamide gel electrophoresis of standard collagens incubated in the presence or absence of the various enzyme preparations.
Results:
In addition to MMP-2 of M(r) 66,000, cultured keratocytes derived from perforated corneas of patients with PUK abnormally produce the MMP-2 of apparent M(r) 62,000. Other MMPs and in particular MMP-9 of M(r) 92,000, also occur in the tears of these patients. Their visualisation on substrate polyacrylamide gels correlated with clinical manifestations of disease activity; during periods of disease quiescence they were barely detectable. The steroid prednisolone, frequently used in systemic therapy, had no effect on the in vitro activity of MMP-2, or on its production by cultured corneal keratocytes. Although the in vitro activity of MMP-2 was inhibited by both Cu(2+) and Zn(2+), Cu(2+) apparently induced the keratocytes to produce activated enzyme and Zn(2+) irreversibly inhibited their production of MMP-2.
Conclusion:
Overexpression of corneal MMP-2 and tear film MMP-9 are characteristic features of patients with PUK and their activation may be a crucial facet of disease initiation or progression. Although effective in systemic therapy for PUK, prednisolone had no direct control over corneal MMP-2 production or activity. Zn(2+) on the other hand inhibited both MMP-2 production and MMP-2 activity and may, therefore, be of therapeutic value if suitably formulated and used in conjunction with systemic steroid treatment.
Insights
Matrix metalloproteinases (MMPs) are implicated in peripheral ulcerative keratitis (PUK). Increased MMP-2 in corneas and MMP-9 in tears are key features of PUK. Zinc shows therapeutic potential by inhibiting MMPs.
Area of Science:
- Ophthalmology
- Rheumatology
- Biochemistry
Background:
- Peripheral ulcerative keratitis (PUK) is an eye condition linked to systemic diseases like rheumatoid arthritis.
- Matrix metalloproteinases (MMPs) are enzymes involved in tissue remodeling and degradation.
Purpose of the Study:
- To investigate the role of MMPs in the development and progression of PUK.
- To assess the impact of systemic therapy on MMP activity in PUK.
Main Methods:
- Keratocytes from normal and PUK corneas were cultured to analyze secreted MMPs.
- Tear samples from PUK patients and healthy individuals were analyzed for MMPs.
- SDS-polyacrylamide gel electrophoresis was used to characterize MMP activity and specificity.
Main Results:
- PUK corneas showed abnormal production of MMP-2 (M(r) 62,000) in addition to MMP-2 (M(r) 66,000).
- Tears from PUK patients contained elevated levels of MMP-2 and MMP-9, correlating with disease activity.
- Prednisolone did not affect MMP-2 activity or production in vitro, while zinc inhibited both.
Conclusions:
- Overexpression and activation of corneal MMP-2 and tear MMP-9 are characteristic of PUK.
- Prednisolone lacks direct control over corneal MMP-2 in PUK.
- Zinc's inhibitory effect on MMP-2 suggests potential therapeutic value in PUK treatment.