Page 175 - 73_04
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VOL. 73 (4), 963-985, 2007 PHISIOLOGY OF PENILE VASCULATURE...
(76) the relaxations elicited by sildenafil in penile resistance arteries. Eur. J.
(77) Pharmacol. 531: 232-237.
SEFTEL, A.D. (2005) Phosphodiesterase type 5 inhibitors: molecular pharma-
(78) cology and interactions with other phosphodiesterases. Curr. Pharm. Des. 11:
(79) 4047-4058.
(80) WALDKIRCH, E.; UCKERT, S.; YILDIRIM, H.; SOHN, M.; JONAS, U.; STIEF, C.G., AN-
(81) DERSSON, K.-E. AND HEDLUND, P. (2005) Cyclic AMP-specific and cyclic GMP-
(82) specific phosphodiesterase isoenzymes in human cavernous arteries—immu-
(83) nohistochemical distribution and functional significance. World. J. Urol 23:
405-410.
(84) PRIETO, D.; RIVERA, L.; RECIO, P.; RUBIO, J.L.; HERNANDEZ, M. AND GARCIA-SACRIS-
TAN, A. (2006) Role of nitric oxide in the relaxation elicited by sildenafil in
(85) penile resistance arteries. J. Urol. 175: 1164-1170.
BALLARD, S.A.; GINGELL, C.J.; TANG, K.; TURNER, L.A.; PRICE, M.E. AND NAYLOR,
A.M. (1998) Effects of sildenafil on the relaxation of human corpus caverno-
sum tissue in vitro and on the activities of cyclic nucleotide phosphodieste-
rase isozymes. J. Urol. 159: 2164-2171.
RUIZ RUBIO, J.L.; HERNANDEZ, M.; RIVERA DE LOS ARCOS, L.; BENEDITO, S.; RECIO,
P.; GARCIA, P.; GARCIA-SACRISTAN, A. AND PRIETO, D. (2004) Role of ATP-sensitive
K+ channels in relaxation of penile resistance arteries. Urology 63: 800-805.
LEE, S.W.; WANG, H.Z.; ZHAO, W.; NEY, P:, BRINK, P.R. AND CHRIST, GJ. (1999)
Prostaglandin E1 activates the large-conductance KCa channel in human
corporal smooth muscle cells. Int. J. Impot. Res. 11: 189-199.
SEO, K.K.; YUN, H.Y.; KIM, H. AND KIM, S.C. (1999) Involvement of endothelial
nitric oxide synthase in the impaired endothelium-dependent relaxation of
cavernous smooth muscle in hypercholesterolemic rabbit. J. Androl. 20: 298-
306.
BIVALACQUA, T.J.; CHAMPION, H.C.; USTA, M.F.; CELLEK, S.; CHITALEY, K.; WEBB,
R.C.; LEWIS, R.L.; MILLS, T.M.; HELLSTROM, W.J. AND KADOWITZ, P. J. (2004)
RhoA/Rho-kinase suppresses endothelial nitric oxide synthase in the penis: a
mechanism for diabetes-associated erectile dysfunction. Proc. Natl. Acad. Sci.
USA. 101: 9121-9126.
BEHR-ROUSSEL, D.; GORNY, D.; MEVEL, K.; COMPAGNIE, S.; KERN, P.; SIVAN, V.;
BERNABE, J.; BEDIGIAN, M.P.; ALEXANDRE, L. AND GIULIANO F. (2005) Erectile
dysfunction: an early marker for hypertension? A longitudinal study in spon-
taneously hypertensive rats. Am. J. Physiol. Regul. Integr. Comp. Physiol. 288:
R276-R283.
MARTINEZ, A.C.; STANKEVICIUS, E.; JAKOBSEN, P. AND SIMONSEN, U. (2006) Blunted
non-nitric oxide vasodilatory neurotransmission in penile arteries from renal
hypertensive rats. Vascul. Pharmacol. 44: 354-62.
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