Naunyn-Schmiedebergs Archives of Pharmacology 2007-05-01

Functional evidence of des-Arg10-kallidin enzymatic inactivating pathway in isolated human umbilical vein.

Wanda Nowak, Ezequiel Dario Goldschmidt, Alejandra Georgina Falcioni, Mariana Ines Pugliese, Andrea Emilse Errasti, Facundo German Pelorosso, Federico Manuel Daray, Juan Ezequiel Gago, Rodolfo Pedro Rothlin

Index: Naunyn Schmiedebergs Arch. Pharmacol. 375(3) , 221-9, (2007)

Full Text: HTML

Abstract

It has been known for many years that plasma and tissues contain a variety of enzymes capable of metabolizing kinins. The aim of the present study was to evaluate, by means of functional studies in a capacitance vessel such as the human umbilical vein (HUV), the possible role played by the metallopeptidases angiotensin-converting enzyme (ACE), neutral endopeptidase (NEP), and aminopeptidase M (APM) as an inactivating pathway of the B(1) receptor endogenous agonist des-Arg(10)-kallidin (DAKD). In HUV rings with and without endothelium, concentration-response curves (CRCs) to DAKD were determined after a 300-min incubation period, and enzymatic inhibitors were added to the organ baths 30 min before construction of the CRC. Presence of endothelial layer was confirmed by histological studies. There was a significant leftward shift observed in control HUV rings devoid of endothelium compared with intact tissues. Exposure to 1 microM captopril (ACE inhibitor) potentiated DAKD-elicited vasoconstrictor responses in HUV rings with endothelium while no such effect was observed in tissues devoid of endothelium. Application of 10 microM amastatin (APM inhibitor) induced a leftward shift of DAKD-elicited contractile responses in HUV with and without endothelium. On the other hand, 10 microM phosphoramidon (NEP inhibitor) showed no potentiating effect in HUV rings either with or without endothelium. However, under concurrent inhibition of ACE, NEP and APM, there was a higher potentiation of DAKD-elicited contractile responses compared with the effect observed with combined inhibition of ACE and APM. Moreover, when we evaluated contractile responses induced by Sar(0)-D-Phe(8)-des-Arg(9)-BK (a metabolically protected B(1) receptor agonist), no potentiating effect was observed under triple enzymatic inhibition. In conclusion, in the present study for the first time, we demonstrated in a capacitance vessel, HUV, that metallopeptidases ACE, NEP and APM represent a relevant functional inactivation pathway of DAKD.


Related Compounds

  • Lys- [Des-Arg9]...

Related Articles:

Potentiation of des-Arg9-kallidin-induced vasoconstrictor responses by metallopeptidase inhibition in isolated human umbilical artery.

2005-06-01

[J. Pharmacol. Exp. Ther. 313(3) , 1355-60, (2005)]

Kinins and neuroinflammation: dual effect on prostaglandin synthesis.

2006-09-28

[Eur. J. Pharmacol. 546(1-3) , 197-200, (2006)]

Essential role of TM V and VI for binding the C-terminal sequences of Des-Arg-kinins.

2008-02-01

[Int. Immunopharmacol. 8(2) , 282-8, (2008)]

B1 kinin receptor does not contribute to vascular tone or tissue plasminogen activator release in the peripheral circulation of patients with heart failure.

2005-04-01

[Arterioscler. Thromb. Vasc. Biol. 25(4) , 772-7, (2005)]

Na+/Ca2+ exchanger activity modulates connective tissue growth factor mRNA expression in transforming growth factor beta1- and Des-Arg10-kallidin-stimulated myofibroblasts.

2005-04-15

[J. Biol. Chem. 280(15) , 14378-84, (2005)]

More Articles...