Inhibitory Effect of Fentanyl on Phenylephrine-Induced Contraction on Rabbit Aorta
Sevda Sasmaz, Ayse Saide Sahin, Ipek Duman
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DOI: 10.4236/pp.2011.23019   PDF    HTML     3,869 Downloads   8,386 Views   Citations

Abstract

This in vitro study was designed to assess the effects of fentanyl on isolated rabbit thoracic aorta rings contracted with phenylephrine. Methods included contraction of aorta rings with phenylephrine (10–5 M) and recording the changes after increasing concentrations of fentanyl (10–9 M – 10–5 M). Similar experiments were done after incubation with Nω- nitro-L-arginine methyl ester (10–4 M), indomethacin (10-5 M), naloxone (10–5 M), ouabain (10–5 M), TEA (10–4 M) and glibenclamide (10–5 M). It was revealed that, fentanyl causes relaxation in rabbit aorta rings precontracted with phenylephrine. Removal of endothelium significantly reduces the relaxant response to fentanyl. Nitric oxide synthase inhibitor L-NAME, K+ channel blocker glibenclamide and Na+/K+ ATPase inhibitor ouabain inhibits the relaxant effect of fentanyl in endothelium intact aorta rings. These results suggest that fentanyl causes dose dependent vasodilatation in the rabbit aorta via activation of KATP channels and Na+-K+ -ATPase, and nitric oxide released from endothelium.

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S. Sasmaz, A. Sahin and I. Duman, "Inhibitory Effect of Fentanyl on Phenylephrine-Induced Contraction on Rabbit Aorta," Pharmacology & Pharmacy, Vol. 2 No. 3, 2011, pp. 141-145. doi: 10.4236/pp.2011.23019.

Conflicts of Interest

The authors declare no conflicts of interest.

References

[1] G. Feuerstein and A. L. Siren, “The Opioid System in Cardiac and Vascular Regulation of Normal and Hypertensive States,” Circulation, Vol. 75, no. 1 Pt 2, January 1987, pp. 125-129.
[2] G. A. Blaise, T. M. Witzeling, J. C. Sill, P. Vinay and P. M. Vanhoutte, “Fentanyl is devoid of major effects on coronary vasoreactivity and myocardial Metabolism in Experimental Animals,” Anesthesiology, Vol. 72, no. 3, March 1990, pp. 535-541.
[3] A. P. Klockgether-Radke, J. Gravemann, D. Kettler and G. Hellige, “Influence of Opioids on Vascular Tone of Isolated Porcine Coronary Artery Segments,” Acta Anaesthesiologica Scandinavica, Vol. 44, no. 9, October 2001, pp. 134-137.
[4] R. P. S. Introna, M. T. Bridges, E. H. Yoldlowski, T. E. Graver and J. K. Pruett, “Direct Effects of Fentanyl on Canine Coronary Artery Rings,” Life Sciences, Vol. 56, no. 15, March 1995, pp. 1265-1273.
[5] F. Karasawa, V. Iwanov and R. F. Moulds, “Effects of Fentanyl on the Rat Aorta are Mediated by Alpha- Adrenoceptors rather than by the Endothelium,” British Journal of Anaesthesia, Vol. 71, no. 6, December 1993, pp. 877-880.
[6] K. E. Park, J. T. Sohn, Y. S. Jeong, H. J. Sung, I. W. Shin, H. K. Lee and Y. K. Chung, “Inhibitory effect of fentanyl on phenylephrine-induced contraction of the rat aorta,” Yonsei Medical Journal, Vol. 50, no. 3, June 2009, pp. 414-421.
[7] D. A. White, J. A. Reitan, N. D. Kein and S. J. Thorup, “Decrease in vascular resistance in the isolated canine hindlimb after graded doses of alfentanil, fentanyl, and sufentanil,” Anesthesia Analgesia, Vol. 71, no. 1, July 1990, pp. 29-34.
[8] R. F. Furchgott and J. V. Zawadzki, “The Obligatory Role of Endothelial Cells in the Relaxation of Arterial Smooth Muscle by Acetylcholine,” Nature, Vol. 288, no. 5789, November 1980, pp. 373-376.
[9] G. M. Rubanyi, “The Discovery of Endothelin: The Power of Bioassay and the role of Serendipity in the discovery of Endothelium-Derived Vasocative Substances,” Pharmacological Research, Vol. 8, no. September 2010, (Ahead of print).
[10] S. Gursoy, I. Bagcivan , M. K. Yildirim, O. Berkan and T. Kaya, “Vasorelaxant effect of opioid analgesics on the isolated human radial artery,” European Journal of Anaesthesiology, Vol. 23, no. 6, June 2006, pp. 496-500.
[11] S. Moncada S and J. R. Vane, “Pharmacology and Endogenous Roles of Prostaglandin Endoperoxides, Throm- boxane A2, and Prostacyclin,” Pharmacological Reviews, Vol. 30, no. 3, September 1978, pp. 293-320.
[12] A. S. Sahin, A. Duman, E. K . Atal?k, C. O. Ogun, T. K. ?ahin, A. Erol and U. Ozergin, “The Mechanisms of the Direct Vascular Effects of Fentanyl on Isolated Human Saphenous Veins In Vitro,” Journal of Cardiothoracic and Vascular Anesthesia, Vol. 19, no. 2, April 2005, pp. 197- 200.
[13] J. T. Sohn, K. E. Park, C. Kim, Y. S. Jeong, I. W. Shin, H. K. Lee and Y. K. Chung , “Alfentanil attenuates phenyle- phrine-induced contraction in rat aorta,” European Jour- nal of Anaesthesiology, Vol. 24, no. 3, March 2007, pp. 276-282.
[14] A. D. Kaye, J. M. Hoover, I. N. Ibrahim, J. Phelps, A. Baluch, A. Fields and S. Huffman, “Analysis of the Effects of Fentanyl in the Feline Pulmonary Vascular Bed,” American Journal of Therapeutics, Vol. 13, no. 6, November-December 2006, pp. 478-484.
[15] M. Hirafuji, F. Kawahara, T. Ebihara, A. Nezu, A. Tanimura and M. Minami, “5-Hydroxytryptamine Induces Transient Ca2+ Influx Through Ni2+- Insentive Ca2+ Channels in Rat Vascular Smooth Muscle Cells,” European Journal of Pharmacology, Vol. 380, no. 2-3, September 1999, pp.163-170.
[16] J. Daut, N. B. Standen and M. T. Nelson, “The Role of the Membrane Potential of Endothelial and Smooth Muscle Cells in the Regulation of Coronary Blood Flow,” Journal of Cardiovascular Electrophysiology, Vo. 5, no. 2, February1994, pp. 154-181.
[17] J. Marin, C. F. Sanchez-Ferrer and M. Salaices, “Effects of Ouabain on Isolated Cerebral and Femoral Arteries of the Cat: a Functional and Biochemical Study,” British Journal of Pharmacology, Vol. 93, no. 1, January 1988, pp. 43-52.
[18] M. S. Fernandez-Alfonso, C. F. Sanchez-Ferrer, M. C. Hernandez and J. Marin, “Na+/Ca2+ Exchange Mediation in the Ouabain-Induced Contraction in Human Placental Vessels,” General Pharmacology, Vol. 23, no. 3, May 1992, pp. 439-444.
[19] C. Barajas-Lopez and J. D. Huizinga, “Ouabain-Induced Excitation of Colonic Smooth Muscle due to Block of K+ Conductance by Intracellular Na+ Ions,” European Journal of Pharmacology, Vol. 221, no. 1, October 1992, pp. 75-82.
[20] R. Shibata, S. Morita, K. Nagai, S. Miyata and T. Iwasaki, “Calcium Dependence of Ouabain-Induced Contraction in Aortas from Spontaneously Hypertensive Rats,” European Journal of Pharmacology, Vol. 190, no. 1-2, November 1990, pp. 147-157.

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