Key result
Essential hypertension is characterized by reduced basal nitric oxide release and blunted endothelium-dependent vasodilation, which chronic pharmacological treatment only partially restores.
Endothelial dysfunction in essential hypertension involves both defective basal nitric oxide release and impaired agonist-evoked vasodilation, with the latter likely being a primary phenomenon.
Impaired agonist-evoked endothelial vasodilation in hypertension appears primary; hypothesis-generating for targeted therapies, needs prospective validation.
In normotensive humans, endothelium modulates vascular tone mainly by the production of nitric oxide. In human essential hypertension the basal release of nitric oxide is reduced and forearm vasodilation to the endothelium-dependent agonists acetylcholine or bradykinin is blunted. Defective basal release of nitric oxide seems to be secondary to blood pressure increase while impaired agonist-evoked endothelium-dependent vasodilation is probably a primary phenomenum. This latter endothelial dysfunction seems to be caused by the simultaneous presence of an alteration in the L-arginine-nitric oxide pathway and the production of constrictor prostanoids. Defective nitric oxide production is already detectable in normotensive offspring of hypertensive patients and young essential hypertensive. In contrast, vasoconstrictor prostanoid production seems to be associated with aging. In essential hypertensive patients, although only scanty data are available, chronic effective pharmacological treatment seems to restore impaired basal production of nitric oxide but does not improve vascular response to endothelial agonists.
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Taddei et al. (1996) conducted a review in Essential hypertension. Endothelial dysfunction vs. Normotensive humans was evaluated. Essential hypertension is characterized by reduced basal nitric oxide release and blunted endothelium-dependent vasodilation, which chronic pharmacological treatment only partially restores.
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