Abstract
The discovery of atrial, brain, and C-type natriuretic peptides (ANP, BNP, and CNP) and their cognate receptors has greatly increased our knowledge of the control of hypertension and cardiovascular homeostasis. ANP and BNP are potent endogenous hypotensive hormones that elicit natriuretic, diuretic, vasorelaxant, antihypertrophic, antiproliferative, and antiinflammatory effects, largely directed toward the reduction of blood pressure (BP) and cardiovascular diseases (CVDs). The principal receptor involved in the regulatory actions of ANP and BNP is guanylyl cyclase/natriuretic peptide receptor-A (GC-A/NPRA), which produces the intracellular second messenger cGMP. Cellular, biochemical, molecular, genetic, and clinical studies have facilitated understanding of the functional roles of natriuretic peptides (NPs), as well as the functions of their receptors, and signaling mechanisms in CVDs. Transgenic and gene-targeting (gene-knockout and gene-duplication) strategies have produced genetically altered novel mouse models and have advanced our knowledge of the importance of NPs and their receptors at physiological and pathophysiological levels in both normal and disease states. The current review describes the past and recent research on the cellular, molecular, genetic mechanisms and functional roles of the ANP-BNP/NPRA system in the physiology and pathophysiology of cardiovascular homeostasis as well as clinical and diagnostic markers of cardiac disorders and heart failure. However, the therapeutic potentials of NPs and their receptors for the diagnosis and treatment of cardiovascular diseases, including hypertension, heart failure, and stroke have just begun to be expanded. More in-depth investigations are needed in this field to extend the therapeutic use of NPs and their receptors to treat and prevent CVDs.
Funder
National Institutes of Health
Subject
Physiology (medical),Physiology
Reference273 articles.
1. Atrial natriuretic factor inhibits proliferation of vascular smooth muscle cells stimulated by platelet-derived growth factor.;Abell;Biochem. Biophys. Res. Commun.,1989
2. Atrial natriuretic peptide induces natriuretic peptide receptor-cGMP-dependent protein kinase interaction.;Airhart;J. Biol. Chem,2003
3. Atrial natriuretic factor receptors and signal transduction mechanisms.;Anand-Srivastava;Pharmacol Rev,1993
4. Carotid aortic and renal baroreceptors mediate the atrial natriuretic peptide release induced by blood volume expansion.;Antunes-Rodrigues;Proc. Natl. Acad. Sci. U.S.A.,1992
5. Mechanism of atrial natriuretic factor-induced inhibition of rat mesangial cell mitogenesis.;Appel;Am. J. Physiol.,1990
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