Human Corneal Epithelial Basement Membrane and Integrin Alterations in Diabetes and Diabetic Retinopathy1

Author:

Ljubimov Alexander V.1,Huang Zhi-shen1,Huang Gang H.1,Burgeson Robert E.2,Miner Jeffrey H.3,Gullberg Donald4,Ninomiya Yoshifumi5,Sado Yoshikazu6,Kenney M. Cristina1

Affiliation:

1. Ophthalmology Research Laboratories, Burns & Allen Research Institute, Cedars-Sinai Medical Center, UCLA Medical School Affiliate, Los Angeles, California

2. MGH/Harvard Cutaneous Biology Research Center, Massachusetts General Hospital East, Charlestown, Massachusetts

3. Renal Division, Washington University School of Medicine, St Louis, Missouri

4. Department of Animal Physiology, Uppsala University, Uppsala, Sweden

5. Okayama University Medical School Okayama, Japan

6. Shigei Medical Research Institute Okayama, Japan

Abstract

Corneas of diabetic patients have abnormal healing and epithelial adhesion, which may be due to alterations of the corneal extracellular matrix (ECM) and basement membrane (BM). To identify such alterations, various ECM and BM components and integrin receptors were studied by immunofluorescence on sections of normal and diabetic human corneas. Age-matched corneas from 15 normal subjects, 10 diabetics without diabetic retinopathy (DR), and 12 diabetics with DR were used. In DR corneas, the composition of the central epithelial BM was markedly altered, compared to normal or non-DR diabetic corneas. In most cases the staining for entactin/nidogen and for chains of laminin-1 (α1β1γ1) and laminin-10 (α5β1γ1) was very weak, discontinuous, or absent over large areas. Other BM components displayed less frequent changes. The staining for α3β1 (VLA-3) laminin binding integrin was also weak and discontinuous in DR corneal epithelium. Components of stromal ECM remained unchanged even in DR corneas. Therefore, distinct changes were identified in the composition of the epithelial BM in DR corneas. They may be due to increased degradation or decreased synthesis of BM components and related integrins. These alterations may directly contribute to the epithelial adhesion and wound healing abnormalities found in diabetic corneas.

Publisher

SAGE Publications

Subject

Histology,Anatomy

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