Literature DB >> 9107164

Vascular effects of acute hyperglycemia in humans are reversed by L-arginine. Evidence for reduced availability of nitric oxide during hyperglycemia.

D Giugliano1, R Marfella, L Coppola, G Verrazzo, R Acampora, R Giunta, F Nappo, C Lucarelli, F D'Onofrio.   

Abstract

BACKGROUND: Acute hyperglycemia may increase vascular tone in normal humans via a glutathione-sensitive, presumably free radical-mediated pathway. The objective of this study was to investigate whether or not the vascular effects of hyperglycemia are related to reduced availability of nitric oxide. METHODS AND
RESULTS: Acute hyperglycemia (15 mmol/L, 270 mg/dL) was induced in 12 healthy subjects with an artificial pancreas. Systolic and diastolic blood pressures, heart rate, and plasma catecholamines showed significant increases (P < .05) starting after 30 minutes of hyperglycemia; leg blood flow decreased significantly (15%; P < .05) at 60 and 90 minutes. Platelet aggregation to ADP and blood viscosity also showed significant increments (P < .05). The infusion of L-arginine (n = 7, 1 g/min) but not D-arginine (n = 5, 1 g/min) or L-lysine (n = 5, 1 g/min) in the last 30 minutes of the hyperglycemic clamp completely reversed all hemodynamic and rheological changes brought about by hyperglycemia. Infusion of NG-monomethyl-L-arginine (L-NMMA; 2 mg/min) to inhibit endogenous nitric oxide synthesis in 8 normal subjects produced vascular effects qualitatively similar to those of hyperglycemia but quantitatively higher (P < .05); however, heart rate and plasma catecholamine levels decreased during L-NMMA infusion, presumably as a consequence of baroreflex activation. Infusion of L-NMMA during hyperglycemia produced changes not different from those obtained during infusion of L-NMMA alone.
CONCLUSIONS: The results show that acute hyperglycemia in normal subjects causes significant hemodynamic and rheological changes that are reversed by L-arginine. Moreover, the effects of hyperglycemia are mimicked to a large extent, but not entirely, by infusion of L-NMMA. This suggests that hyperglycemia may reduce nitric oxide availability in humans.

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Year:  1997        PMID: 9107164     DOI: 10.1161/01.cir.95.7.1783

Source DB:  PubMed          Journal:  Circulation        ISSN: 0009-7322            Impact factor:   29.690


  54 in total

1.  Acute hyperglycemia induces an oxidative stress in healthy subjects.

Authors:  R Marfella; L Quagliaro; F Nappo; A Ceriello; D Giugliano
Journal:  J Clin Invest       Date:  2001-08       Impact factor: 14.808

Review 2.  Hyperglycemia and heart dysfunction: an oxidant mechanism contributing to heart failure in diabetes.

Authors:  K Esposito; R Marfella; D Giugliano
Journal:  J Endocrinol Invest       Date:  2002-05       Impact factor: 4.256

3.  Link between free radicals and protein kinase C in glucose-induced alteration of vascular dilation.

Authors:  Momoh A Yakubu; Olusoga A Sofola; Immaculata Igbo; Adebayo O Oyekan
Journal:  Life Sci       Date:  2004-10-29       Impact factor: 5.037

4.  Gender difference in rat aorta vasodilation after acute exposure to high glucose: involvement of protein kinase C beta and superoxide but not of Rho kinase.

Authors:  Aditya Goel; Yingmin Zhang; Leigh Anderson; Roshanak Rahimian
Journal:  Cardiovasc Res       Date:  2007-07-04       Impact factor: 10.787

5.  Acute effects of hyperglycaemia with and without exercise on endothelial function in healthy young men.

Authors:  Weili Zhu; Chongfa Zhong; Yingjie Yu; Keji Li
Journal:  Eur J Appl Physiol       Date:  2007-01-06       Impact factor: 3.078

6.  Enhanced tyrosine nitration of prostacyclin synthase is associated with increased inflammation in atherosclerotic carotid arteries from type 2 diabetic patients.

Authors:  Chaoyong He; Hyoung Chul Choi; Zhonglin Xie
Journal:  Am J Pathol       Date:  2010-03-26       Impact factor: 4.307

7.  Effect of acute hyperglycaemia and diabetes mellitus with and without short-term insulin treatment on myocardial ischaemic late preconditioning in the rabbit heart in vivo.

Authors:  Dirk Ebel; Jost Müllenheim; Jan Frässdorf; Andre Heinen; Ragnar Huhn; Thomas Bohlen; Jan Ferrari; Hendrik Südkamp; Benedikt Preckel; Wolfgang Schlack; Volker Thämer
Journal:  Pflugers Arch       Date:  2003-03-26       Impact factor: 3.657

8.  The effects of polyphenol-containing antioxidants on oxidative stress and lipid peroxidation in Type 2 diabetes mellitus without complications.

Authors:  A Kutan Fenercioglu; T Saler; E Genc; H Sabuncu; Y Altuntas
Journal:  J Endocrinol Invest       Date:  2009-10-15       Impact factor: 4.256

Review 9.  Defining the role of insulin lispro in the management of postprandial hyperglycaemia in patients with type 2 diabetes mellitus.

Authors:  D Giugliano; A Ceriello; E Razzoli; K Esposito
Journal:  Clin Drug Investig       Date:  2008       Impact factor: 2.859

10.  Prevalence and correlates of post-prandial hyperglycaemia in a large sample of patients with type 2 diabetes mellitus.

Authors:  E Bonora; G Corrao; V Bagnardi; A Ceriello; M Comaschi; P Montanari; J B Meigs
Journal:  Diabetologia       Date:  2006-03-11       Impact factor: 10.122

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