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diabetic angiopathies/prolină

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ArticoleStudii cliniceBrevete
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Wound healing: a model for the study of diabetic angiopathy.

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Wound healing as a model for diabetic angiopathy has been studied by light and electron microscopy. Biochemical studies of the rate of incorporation of 3H-proline and 3H-thymidine into collagen and DNA, respectively, have confirmed the morphologic observations. In both the normal and the diabetic,
The effect of glucose on extracellular production of collagen and protein was studied in cultured human skin fibroblasts. Fibroblasts from 8 non-diabetics, 8 type 1 and 12 type 2 diabetic subjects were cultured. Incorporation of tritium labeled proline into medium collagen and protein was studied at

Nonenzymatic glycosylation of basement membrane collagen in diabetes mellitus.

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For a better understanding of the processes leading to diabetic microangiopathy, type IV collagen from kidneys of patients with long-term diabetes was compared with the collagen from kidneys of sex- and age-matched controls. Type IV collagen from diabetic kidneys revealed no abnormalities in amino

Effect of an aldose reductase inhibitor on type IV collagen production by human endothelial cells cultured in high glucose.

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Diabetic microangiopathy is characterized by a thickening of capillary basement membranes associated with type IV collagen accumulation. An increase in type IV collagen content of the aortic wall is also observed in macroangiopathy. In order to analyse the importance of the polyol pathway in the
Since diabetic microangiopathy and macroangiopathy are characterized by type IV collagen accumulation in vascular basement membranes, it was of interest to study type IV collagen production and type IV collagenase secretion by endothelial cells (EC) cultured in high glucose and to evaluate the role

Involvement of osteopontin upregulation on mesangial cells growth and collagen synthesis induced by intermittent high glucose.

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Glucose fluctuations are strong predictor of diabetic vascular complications. We explored the effects of constant and intermittent high glucose on the proliferation and collagen synthesis of cultured rat mesangial cells. Furthermore, the possible involvement of osteopontin (OPN) was assessed. In rat
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