Oxidative stress is not associated with vascular dysfunction in a model of alloxan-induced diabetic rats

Author:

Capellini Verena Kise1,Baldo Caroline Floreoto1,Celotto Andréa Carla1,Batalhão Marcelo Eduardo2,Cárnio Evelin Capellari2,Rodrigues Alfredo José1,Evora Paulo Roberto Barbosa

Affiliation:

1. Universidade de São Paulo, Brazil

2. USP, Brazil

Abstract

OBJECTIVES: To verify if an experimental model of alloxan-diabetic rats promotes oxidative stress, reduces nitric oxide bioavailability and causes vascular dysfunction, and to evaluate the effect of N-acetylcysteine (NAC) on these parameters. METHODS: Alloxan-diabetic rats were treated or not with NAC for four weeks. Plasmatic levels of malondialdehyde (MDA) and nitrite/nitrate (NOx), the endothelial and inducible nitric oxide synthase (eNOS and iNOS) immunostaining and the vascular reactivity of aorta were compared among diabetic (D), treated diabetic (TD) and control (C) rats. RESULTS: MDA levels increased in D and TD. NOx levels did not differ among groups. Endothelial eNOS immunostaining reduced and adventitial iNOS increased in D and TD. The responsiveness of rings to acetylcholine, sodium nitroprusside, and phenylephrine did not differ among groups. CONCLUSIONS: NAC had no effect on the evaluated parameters and this experimental model did not promote vascular dysfunction despite the development of oxidative stress.

Publisher

FapUNIFESP (SciELO)

Subject

General Medicine,Endocrinology, Diabetes and Metabolism

Reference46 articles.

1. Diabetes and vascular disease: pathophysiology, clinical consequences, and medical therapy: Part I;Creager MA;Circulation,2003

2. Diabetes and vascular disease: basic concepts of nitric oxide physiology, endothelial dysfunction, oxidative stress and therapeutic possibilities;Capellini VK;Curr Vasc Pharmacol

3. Normalizing mitochondrial superoxide production blocks three pathways of hyperglycaemic damage;Nishikawa T;Nature,2000

4. Disfunção endotelial no diabetes do tipo 2;Wajchenberg BL;Arq Bras Endocrinol Metab,2002

5. NAD(P)H oxidase and uncoupled nitric oxide synthase are major sources of glomerular superoxide in rats with experimental diabetic nephropathy;Satoh M;Am J Physiol Renal Physiol,2005

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