Raloxifene Relaxes Rat Pulmonary Arteries and Veins: Roles of Gender, Endothelium, and Antagonism of Ca2+ Influx
- 1 March 2005
- journal article
- Published by Elsevier in The Journal of Pharmacology and Experimental Therapeutics
- Vol. 312 (3) , 1266-1271
- https://doi.org/10.1124/jpet.104.077990
Abstract
Effects of raloxifene have been documented in the systemic circulation. However, its impact on the pulmonary circulation is unclear. The present study investigated the role of gender, endothelial modulation, and Ca2+ channel in relaxations evoked by raloxifene in rat pulmonary arteries and veins. Vascular responses were studied on isolated pulmonary blood vessels mounted in a myograph and constricted by U46619 (9,11-dideoxy-11α,9α-epoxymethanoprostaglandin F2α). Constrictions to CaCl2 were studied in Ca2+-free, 60 mM K+ solution. Changes in the intracellular calcium ion concentration ([Ca2+]i) in vascular smooth muscle were measured using a calcium fluorescence imaging method. Raloxifene was more effective in relaxing U46619-constricted pulmonary arteries from male than female rats. Raloxifene-induced relaxation was unaffected by ICI 182,780 [7α-[9-[(4,4,5,5,5,-pentafluoropentyl)-sulfinyl]nonyl]-estra-1,3,5(10)-triene-3,17β-diol], inhibition of the nitric oxide (NO) pathway, or removal of the endothelium. In arteries without endothelium, raloxifene attenuated CaCl2-induced constriction and CaCl2-stimulated increase in [Ca2+]i with similar potencies. Raloxifene caused endothelium-independent relaxations in pulmonary veins, albeit to a lesser degree than in pulmonary arteries. The venous responses showed a gender difference because raloxifene was more potent in male veins. In summary, raloxifene relaxed rat pulmonary arteries, and this effect did not involve the endothelium/NO or ICI 182,780-sensitive estrogen receptors. Raloxifene, like nifedipine, reduced constriction and [Ca2+]i increase in response to CaCl2 in high K+ solution. Raloxifene also relaxed high K+-constricted pulmonary veins. Our data indicate that raloxifene acutely relaxes rat pulmonary blood vessels primarily via inhibition of Ca2+ influx through voltage-sensitive Ca2+ channels. Finally, raloxifene induced more relaxation in blood vessels isolated from male than female rats.Keywords
This publication has 17 references indexed in Scilit:
- Estrogen and Tamoxifen Modulate Cerebrovascular Tone in Ovariectomized Female RatsHypertension, 2004
- Raloxifene Relaxes Rat Cerebral Arteries In Vitro and Inhibits L-Type Voltage-Sensitive Ca 2+ ChannelsStroke, 2004
- Risks and Benefits of Estrogen Plus Progestin in Healthy Postmenopausal Women: Principal Results From the Women's Health Initiative Randomized Controlled TrialJAMA, 2002
- Mechanism of Raloxifene-Induced Relaxation in Femoral Veins Depends on Ovarian Hormonal StatusJournal of Cardiovascular Pharmacology, 2002
- Raloxifene Improves Endothelial Dysfunction in Hypertension by Reduced Oxidative Stress and Enhanced Nitric Oxide ProductionCirculation, 2002
- Raloxifene and Cardiovascular Events in Osteoporotic Postmenopausal WomenJAMA, 2002
- Randomized, Double-Blind, Placebo-Controlled Study on Effects of Raloxifene and Hormone Replacement Therapy on Plasma NO Concentrations, Endothelin-1 Levels, and Endothelium-Dependent Vasodilation in Postmenopausal WomenArteriosclerosis, Thrombosis, and Vascular Biology, 2001
- Acute Activation of Maxi-K Channels ( hSlo ) by Estradiol Binding to the β SubunitScience, 1999
- Raloxifene Acutely Relaxes Rabbit Coronary Arteries In Vitro by an Estrogen Receptor–Dependent and Nitric Oxide–Dependent MechanismCirculation, 1999
- Loss of endothelium-dependent relaxant activity in the pulmonary circulation of rats exposed to chronic hypoxia.Journal of Clinical Investigation, 1991