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Cluster analysis of patients with ocular surface disease, blepharitis, and dry eye.

OBJECTIVE: To develop a classification system for blepharitis and dry eye based on a classification-tree model of a large group of subjects who were given a variety of objective physiologic tests. METHODS: We evaluated 513 subjects, some healthy and some with blepharitis and dry eye,with tests for tear volume, tear flow, and tear turnover and the Schirmer test for dry eye. Meibomian gland function was evaluated by meibomian gland lipid expression for lipid volume and lipid viscosity, evaporation, and eyelid transillumination for meibomian gland drop out. We subjected these data to cluster analysis and formulated a classification tree. MAIN OUTCOME MEASURE: The outcome measure of this study was the statistically valid groups of subjects with and without ocular surface symptoms identified by their physiologic characteristics. RESULTS: Cluster analysis most successfully grouped subjects by initially dividing them into 2 groups based on the presence or absence of gland drop out and then by lipid viscosity and volume, Schirmer test results, and evaporation. The analysis created 9 categories. This division created an objective classification system that was found to have clinical relevance. Normal subjects were distributed across several groups. CONCLUSIONS: Using a classification tree, blepharitis and dry eye can be classified with objective physiologic tests into clinically relevant groups that have common characteristics. The analysis establishes the central role of meibomian gland dysfunction in blepharitis and demonstrates the diverse characteristics of the normal population.

Adult↗

Further evaluation of amniotic membrane banking for transplantation in ocular surface diseases.

Objective: To define the best conditions for amniotic membrane preparation, storage and banking in its use for corneal reconstruction. Methods: Amniotic membrane pieces were prepared under sterile conditions from placentas selected on the basis of donor medical and social history, serology, microbiological tests and histology. The pieces were kept at -140 degrees C but before grafting they were thawed and stored at 4 degrees C in RPMI medium, to have a preparation usable within 72 h. This procedure was validated by testing its therapeutic effectiveness in 25 patients 13 of which had corneal ulcers of various origin, 3 had sequelae of herpes simplex keratitis, 3 band keratopathy and 6 corneal stem cell deficiency due to chemical or thermal burns. Results: The preparation showed appreciable anti-inflammatory and analgesic effects. In the absence of corneal stem cell deficiency a stable re-epithelialisation was achieved in 15 out of 19 patients. When the limbus was lesioned, the amniotic membrane decreased vascularization and increased the number of corneal epithelial cells only in 1 of the 6 patients. No adverse reactions attributable to the tissue were recorded. Conclusions: A ready-to-use amniotic membrane preparation stored at 4 degrees C after cryopreservation has been tested in corneal reconstruction. Like the amniotic membrane thawed immediately before grafting, this preparation displayed full therapeutic effect in epithelial defects with stromal ulceration but without severe limbal stem cell deficiency. In two years banking activity 463 pieces of the preparation were successfully distributed to 90 Italian hospitals.

Journal Article↗