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Experimental models for study of retinal pigment epithelial physiology and pathophysiology.

Journal of visualized experiments : JoVE (2010-11-19)
Arvydas Maminishkis, Sheldon S Miller
ABSTRACT

We have developed a cell culture procedure that can produce large quantities of confluent monolayers of primary human fetal retinal pigment epithelium (hfRPE) cultures with morphological, physiological and genetic characteristics of native human RPE. These hfRPE cell cultures exhibit heavy pigmentation, and electron microscopy show extensive apical membrane microvilli. The junctional complexes were identified with immunofluorescence labeling of various tight junction proteins. Epithelial polarity and function of these easily reproducible primary cultures closely resemble previously studied mammalian models of native RPE, including human. These results were extended by the development of therapeutic interventions in several animal models of human eye disease. We have focused on strategies for the removal of abnormal fluid accumulation in the retina or subretinal space. The extracellular subretinal space separates the photoreceptor outer segments and the apical membrane of the RPE and is critical for maintenance of retinal attachments and a whole host of RPE/retina interactions.

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Roche
Dispase® I (neutral protease, grade I), lyophilized, ≥10 units/mg protein (20 U/vial (37 °C, casein as substrate, pH 7.5)), optimum pH 6.0-8.5