Oxidative stress may explain how hypertension is maintained by normal levels of angiotensin II

Braz J Med Biol Res. 2000 Jun;33(6):653-60. doi: 10.1590/s0100-879x2000000600006.

Abstract

It is well known that essential hypertension evolves in most patients with "near normal" levels of plasma renin activity. However, these levels appear to be responsible for the high levels of arterial pressure because they are normalized by the administration of angiotensin II converting inhibitors or angiotensin receptor antagonist. In experimental animals, hypertension can be induced by the continuous intravenous infusion of small doses of angiotensin II that are not sufficient to evoke an immediate pressor response. However, this condition resembles the characteristics of essential hypertension because the high levels of blood pressure exist with normal plasma levels of angiotensin II. It is suggested that small amounts of angiotensin whose plasma levels are inappropriate for the existing size of extracellular volume stimulate oxidative stress which binds nitric oxide forming peroxynitrite. The latter compound oxidizes arachidonic acid producing isoprostaglandin F2alpha (an isoprostane) which is characterized by a strong antinatriuretic vasoconstrictor renal effect. In this chain of reactions the vasoconstrictor effects derived from oxygen quenching of nitric oxide and increased isoprostane synthesis could explain how hypertension is maintained with normal plasma levels of renin.

Publication types

  • Research Support, Non-U.S. Gov't
  • Research Support, U.S. Gov't, P.H.S.
  • Review

MeSH terms

  • Angiotensin II / blood
  • Angiotensin II / physiology*
  • Animals
  • Endothelins / physiology
  • Extracellular Space
  • Hypertension / blood
  • Hypertension / physiopathology*
  • Nitric Oxide / physiology
  • Oxidative Stress / physiology*
  • Receptors, Prostaglandin / physiology
  • Renin / blood
  • Renin / metabolism
  • Sodium Chloride / pharmacology
  • Swine

Substances

  • Endothelins
  • Receptors, Prostaglandin
  • prostaglandin F2alpha receptor
  • Angiotensin II
  • Nitric Oxide
  • Sodium Chloride
  • Renin