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The chromogranin A-derived vasostatins: new players in the endocrine heart
1Department of Pharmaco-Biology, University of Calabria, 87030 Arcavacata di Rende (CS), Italy. tota@unical.it
Insights
The heart functions as an endocrine organ, producing catecholamines and natriuretic peptides. Chromogranin-A (CgA) and its peptides, like vasostatin-1, are key intracardiac modulators with potential cardiovascular applications.
Area of Science:
- Cardiovascular Physiology
- Endocrinology
- Molecular Cardiology
Background:
- The heart is recognized as an endocrine organ, synthesizing catecholamines (CAs) and natriuretic peptides (NPs) crucial for cardiovascular homeostasis.
- Intracardiac endocrine modulators, including Chromogranin-A (CgA) and its derived peptides, are increasingly identified.
Purpose of the Study:
- To explore the physio-pathological significance of CgA and its derived peptides within the heart.
- To highlight the potential of these peptides as cardiovascular therapeutic targets.
Main Methods:
- Review of existing evidence on CgA synthesis, storage, and release in cardiac cells.
- Analysis of the role of CgA-derived peptides, such as vasostatin-1 (VS-1), in cardiac function and disease models.
Main Results:
- CgA is co-stored and co-released with NPs in various cardiac cell types.
- Vasostatin-1 (VS-1) inhibits cardiac contraction/relaxation and protects against ischemia.
- Elevated circulating CgA levels correlate with chronic heart failure severity and mortality.
Conclusions:
- CgA and its peptides are integral to cardiac endocrine function and homeostasis.
- CgA-derived peptides, particularly VS-1, show promise as cardiocirculatory stabilizers.
- Further research into CgA peptides may lead to novel cardiovascular therapies.
Abstract:
Over the last 50 years, increasing evidence has documented the ability of cardiac non-neuronal cells to synthesize and release catecholamines (CAs) and the vasorelaxant natriuretic peptides (NPs), which both regulate cardiovascular homeostasis in health and disease. This knowledge has firmly established the concept of the heart as an endocrine organ. The contents of this frame have been richly expanded by the identification of an increasing number of intracardiac endocrine modulators, including Chromogranin-A (CgA) and its derived peptides. In the rat heart, CgA is co-stored and co-released with Atrial NP (ANP) in non-adrenergic myoendocrine atrial cells as well as in atrial and ventricular Purkinje fibres. In the ventricular myocardium of the human hypertrophic and dilated heart, CgA co-localizes with B-type NP (BNP). CgA is the precursor of biologically active peptides produced by proteolytic cleavage. One of them, the human recombinant 1-76 CgA-derived vasostatin-1 (VS-1), is an inhibitor of cardiac contraction and relaxation, a non-competitive counter-regulator of beta-adrenergic stimulation and a protecting agent in ischemic preconditioning. Therefore, it may function as a cardiocirculatory homeostatic stabilizer, particularly in the presence of intense adrenergic stimuli, e. g. under stress responses. Since in patients with chronic heart failure circulating CgA levels increase up to 10-20 nM, depending on the severity of the disease and are independent prognostic indicators of mortality, knowledge on the physio-pathological significance of locally produced and/or circulating CgA-derived peptides, as attemped in this synopsis, may pave the way for clinically-oriented cardiovascular applications.
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