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Biomedical subjects

S H Blaydes

Publications and source records attributed to S H Blaydes.

3 recordsLinked to original sources

Photocoagulation does not ablate angiogenic markers in rabbit retina.

Panretinal photocoagulation (PRP) in rabbits produces treatment areas consisting of destroyed outer retina and intact inner retina separated by areas of normal-appearing retina. Intravenous iodoacetate produces widespread destruction of the outer retina with sparing of the inner retina, approximating total, confluent PRP. After PRP (at three weeks), intravenous injection of iodoacetate (at three weeks or four months), and in control rabbits, eyes were harvested and retinas were homogenized in a balanced salt solution. Retinal homogenates were measured for three markers of angiogenic activity: vascular endothelial cell migration, proliferation, and production of plasminogen activator. Retinas subjected to PRP or intravenous iodoacetate (at three weeks or four months) stimulated migration and proliferation above baseline levels twice as much as control retinas and stimulated plasminogen activator production by twofold to 2.5-fold. These data suggest that PRP does not eliminate the ability of the retina to produce angiogenic activity, but rather exerts its antiangiogenic effect in an indirect fashion.

Animals↗

Progressive ultrastructural damage and thickening of the basement membrane of the retinal pigment epithelium in spontaneously diabetic BB rats.

Ultrastructural examination of the neural retina and retinal pigment epithelium was performed in spontaneously diabetic BB rats and non-diabetic littermate controls at various time points during the course of diabetes. Four types of progressive changes occur in diabetic rats: (1) There is a progressive thickening of the basal laminae of the retinal pigment epithelium and the retinal capillaries. (2) In addition to this thickening, there is a progressive, often focal, thickening of the rest of Bruch's membrane, and by 11 1/2 months it contains numerous randomly oriented collagen fibrils. (3) There are progressive ultrastructural changes in retinal pigment epithelial cells consisting of marked dilation of the basal infoldings, the formation of large vacuoles and cell swelling. (4) Rare degenerative changes were noted in retinal capillary pericytes. Since non-diabetic littermates do not show comparable changes, it is likely that they are diabetes-related, suggesting that progressive damage to the retinal pigment epithelium may occur during the course of diabetes.

Aging↗