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Results 1 to 14 of 14

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Cardiac role of frog ANF: negative inotropism and binding sites in Rana esculentaCERRA, Maria Carmela; GATTUSO, Alfonsina; TOTA, Bruno et al.Regulatory peptides. 2003, Vol 114, Num 2-3, pp 91-99, issn 0167-0115, 9 p.Article

Nitrite is a positive modulator of the Frank-Starling response in the vertebrate heartANGELONE, Tommaso; GATTUSO, Alfonsina; IMBROGNO, Sandra et al.American journal of physiology. Regulatory, integrative and comparative physiology. 2012, Vol 71, Num 6, issn 0363-6119, R1271-R1281Article

Full-Length Human Chromogranin-A Cardioactivity: Myocardial, Coronary, and Stimulus-Induced Processing Evidence in Normotensive and Hypertensive Male Rat HeartsPASQUA, Teresa; CORTI, Angelo; GENTILE, Stefano et al.Endocrinology (Philadelphia). 2013, Vol 154, Num 9, pp 3353-3365, issn 0013-7227, 13 p.Article

Peptides from the N-terminal domain of chromogranin A (vasostatins) exert negative inotropic effects in the isolated frog heartTOTA, Bruno; MAZZA, Rosa; ANGELONE, Tommaso et al.Regulatory peptides. 2003, Vol 114, Num 2-3, pp 123-130, issn 0167-0115, 8 p.Article

Crucial role of cytoskeleton reorganization in the negative inotropic effect of chromogranin A-derived peptides in eel and frog heartsMAZZA, Rosa; MANNARINO, Cinzia; IMBROGNO, Sandra et al.Regulatory peptides. 2007, Vol 138, Num 2-3, pp 145-151, issn 0167-0115, 7 p.Article

Human recombinant chromogranin A-derived vasostatin-1 mimics preconditioning via an adenosine/nitric oxide signaling mechanismCAPPELLO, Sandra; ANGELONE, Tommaso; TOTA, Bruno et al.American journal of physiology. Heart and circulatory physiology. 2007, Vol 62, Num 1, issn 0363-6135, H719-H727Article

Cytoskeleton mediates negative inotropism and lusitropism of chromogranin A-derived peptides (human vasostatin1-78 and rat CgA1-64) in the rat heartANGELONE, Tommaso; QUINTIERI, Anna Maria; CARMELA CERRA, Maria et al.Regulatory peptides. 2010, Vol 165, Num 1, pp 78-85, issn 0167-0115, 8 p.Article

Myocardial production of chromogranin A in human heart : a new regulatory peptide of cardiac function. CommentarySCHULZE, Paul Christian; PIERONI, Maurizio; MASERI, Attilio et al.European heart journal. 2007, Vol 28, Num 9, issn 0195-668X, 1052-1053,1117-1127 [13 p.]Article

A novel catestatin-induced antiadrenergic mechanism triggered by the endothelial P13K-eNOS pathway in the myocardiumBASSINO, Eleonora; FORNERO, Sara; PIA GALLO, Maria et al.Cardiovascular research. 2011, Vol 91, Num 4, pp 617-624, issn 0008-6363, 8 p.Article

The interplay between chromogranin A-derived peptides and cardiac natriuretic peptides in cardioprotection against catecholamine-evoked stressMAZZA, Rosa; IMBROGNO, Sandra; TOTA, Bruno et al.Regulatory peptides. 2010, Vol 165, Num 1, pp 86-94, issn 0167-0115, 9 p.Article

Catestatin (chromogranin A344-364) is a novel cardiosuppressive agent : inhibition of isoproterenol and endothelin signaling in the frog heartMAZZA, Rosa; GATTUSO, Alfonsina; MANNARINO, Cinzia et al.American journal of physiology. Heart and circulatory physiology. 2008, Vol 64, Num 1, issn 0363-6135, H113-H122Article

Phosphodiesterase type-2 and NO-dependent S-nitrosylation mediate the cardioinhibition of the antihypertensive catestatinANGELONE, Tommaso; QUINTIERI, Anna Maria; PASQUA, Teresa et al.American journal of physiology. Heart and circulatory physiology. 2012, Vol 71, Num 1, issn 0363-6135, H431-H442Article

The Antihypertensive Chromogranin A Peptide Catestatin Acts as a Novel Endocrine/Paracrine Modulator of Cardiac Inotropism and LusitropismANGELONE, Tommaso; QUINTIERI, Anna Maria; BRAR, Bhawanjit K et al.Endocrinology (Philadelphia). 2008, Vol 149, Num 10, pp 4780-4793, issn 0013-7227, 14 p.Article

Endothelium-derived nitric oxide mediates the antiadrenergic effect of human vasostatin-1 in rat ventricular myocardiumGALLO, Maria Pia; LEVI, Renzo; RAMELLA, Roberta et al.American journal of physiology. Heart and circulatory physiology. 2007, Vol 61, Num 6, issn 0363-6135, H2906-H2912Article

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