Literature DB >> 7621992

Peroxidative stress in diabetic blood vessels. Reversal by pancreatic islet transplantation.

G M Pieper1, M Jordan, L A Dondlinger, M B Adams, A M Roza.   

Abstract

Diabetic complications are believed to arise, in part, through an increase in oxidative stress. We characterized antioxidant status in vascular tissue in untreated diabetic rats and in diabetic rats rendered euglycemic by pancreatic islet transplantation. Three key endogenous antioxidant enzymes (e.g., superoxide dismutase, catalase, and glutathione peroxidase) were measured. Sprague-Dawley rats with streptozotocin-induced diabetes were killed after 8 weeks of untreated hyperglycemia and compared with age-matched controls. Eight weeks of untreated diabetes resulted in a significant increase of tissue catalase in aorta, iliac artery, and femoral artery as compared with controls. No significant changes in either superoxide dismutase or glutathione peroxidase were observed in aorta, iliac artery, or femoral artery of diabetic animals. This increase in catalase in diabetic vascular tissue suggests increased oxidative stress due to chronic exposure to H2O2 in vivo. To assess the impact of islet transplantation on oxidative stress in vascular tissue, inbred Lewis strain rats were rendered diabetic with streptozotocin. After 8 weeks of untreated diabetes, rats received an intraportal islet isograft and were monitored for 4 subsequent weeks of euglycemia. Islet transplantation improved weight gain and normalized blood glucose and total glycosylated hemoglobin. While catalase was significantly increased in aorta and iliac artery at 8 and 12 weeks of diabetes, vascular catalase was restored to normal by islet transplantation. These data suggest that islet transplantation is an effective treatment strategy to minimize increased oxidative stress in diabetic vasculature.

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Year:  1995        PMID: 7621992     DOI: 10.2337/diab.44.8.884

Source DB:  PubMed          Journal:  Diabetes        ISSN: 0012-1797            Impact factor:   9.461


  19 in total

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6.  Early and intermediate Amadori glycosylation adducts, oxidative stress, and endothelial dysfunction in the streptozotocin-induced diabetic rats vasculature.

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7.  Effect of long-term treatment of morphine on enzymes, oxidative stress indices and antioxidant status in male rat liver.

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8.  Oxidative stress and antioxidant capacity in patients with chronic pancreatitis with and without diabetes mellitus.

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9.  Berberine ameliorates cold and mechanical allodynia in a rat model of diabetic neuropathy.

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10.  Loss of adaptation to oxidative stress as a mechanism for aortic damage in aging rats.

Authors:  F Mármol; J Sánchez; D López; N Martínez; J Roselló-Catafau; M T Mitjavila; P Puig-Parellada
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