Erectile Dysfunction in Wistar Audiogenic Rats Is Associated With Increased Cavernosal Contraction and Decreased Neuronal Nitric Oxide Synthase Protein Expression - 26/07/17

Abstract |
Objective |
To test the hypothesis that naive Wistar audiogenic rats (WARs) display erectile dysfunction (ED), which is associated with increased sympathetic-mediated contractile tone and decreased nitric oxide-mediated relaxation responses of the cavernous tissue.
Methods |
Changes in the ratio of the maximal intracavernosal pressure-mean arterial pressure after the electrical stimulation of the right major pelvic ganglion were determined in vivo. Cavernosal contractility was induced by electrical field stimulation and phenylephrine. In addition, nonadrenergic-noncholinergic (NANC)-induced relaxation was determined. Rho-kinase (ROCK) pathway proteins, neuronal nitric oxide synthase (nNOS) protein expression, and endothelial nitric oxide synthase (eNOS) and extracellular signal-regulated kinase 1/2 activities were determined by Western blot.
Results |
WARs display a significant decrease in maximal intracavernosal pressure-mean arterial pressure responses suggesting ED in this strain. Sympathetic-mediated contractile responses were increased in WARs and contractile responses to phenylephrine were not changed. The increased sympathetic-mediated contractile responses were not associated with changes in the ROCK pathway. On the other hand, NANC-mediated relaxation responses were significantly reduced in WARs. This functional response was accompanied by decreased nNOS and total eNOS protein expressions, augmented phosphorylated eNOS, and decreased extracellular signal-regulated kinase 1/2 phosphorylation levels.
Conclusion |
Our data have demonstrated that naive WARs display ED in vivo that is associated with increased sympathetic-mediated contractile responses and decreased NANC-mediated relaxation responses. The increase in contractile responses is independent of the ROCK pathway, and the changes in relaxation responses are associated with a decrease in nNOS protein expression, which may activate compensatory mechanisms in the cavernous tissue.
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| Financial Disclosure: The authors declare that they have no relevant financial interests. |
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| Funding Support: This study was supported by grants from Fundação de Amparo à Pesquisa do Estado de São Paulo (2010/17362-4, 2015/21976-1, and 2016/11988-5 FAPESP; Norberto Garcia-Cairasco-Wistar Audiogenic Rats-Thematic Project (NGC-WAR)-Thematic Project, 2007/50261-4; NGC-WARs-FAPESP-Cinapce, 2005/56447-7) and Coordenadoria de Aperfeiçoamento de Pessoal de Nível Superior (CAPES) (23038008096/2010-2011), Brazil. |
Vol 106
P. 237.e1-237.e8 - août 2017 Retour au numéroBienvenue sur EM-consulte, la référence des professionnels de santé.
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