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L-arginine attenuates cardiovascular impairment in DOCA-salt hypertensive rats

journal contribution
posted on 2017-12-06, 00:00 authored by Andrew FenningAndrew Fenning, G Harrison, R Rose'Meyer, A Hoey, L Brown
Nitric oxide (NO) is essentialfor normal function of the cardiovascular system. This study has determined whether chronic administration of L-arginine, the biological precursor of NO, attenuates the development of structural and functional changes in hearts and blood vessels of deoxycorticosteroneacetate (DOCA)-salt hypertensive rats. Uninephrectomized rats treated with DOCA (25 mg every 4th day sc) and 1% NaCl in the drinking water for 4 wk were treated with L-arginine (5% in food,3.4 0.3 g.kg body wt-1 day-1). Changes in cardiovascular structure and function were determined by echocardiography, microelectrode studies, histology, and studies in isolated hearts and thoracic aortic rings. DOCA-salt hypertensive rats developed hypertension, left ventricular hypertrophy with increased left ventricular wall thickness and decreased ventricular internal diameter, increased inflammatory cell infiltration, increased ventricular interstitial and perivascular collagen deposition, increased passive diastolic stiffness, prolonged action potential duration, increased oxidative stress, and inability to increase purine efflux in response to an increased workload. L-Arginine markedly attenuated or prevented these changes and also normalized the reduced efficacy of norepinephrine and acetylcholinein isolated thoracic aortic rings of DOCA-salt hypertensive rats. This study suggests that a functional NO deficit in blood vessels and heart due to decreased NO synthase activity or increased release of reactive oxygen species such as superoxide may be a key change initiating many aspects of the cardiovascular impairment observed in DOCA salt hypertensive rats. These changes can be prevented or attenuated by administration of L-arginine.

Funding

Category 1 - Australian Competitive Grants (this includes ARC, NHMRC)

History

Volume

289

Issue

4

Start Page

1408

End Page

1416

Number of Pages

9

ISSN

0363-6135

Location

United States

Publisher

American Physiological Society

Language

en-aus

Peer Reviewed

  • Yes

Open Access

  • No

Era Eligible

  • Yes

Journal

American journal of physiology : heart and circulatory physiology.