PubMed HealthSearch

PubMed · 25021

New concepts in dysmenorrhea.

Abstract

The etiology of primary dysmenorrhea, which is the most common gynecologic complaint and cause of lost working hours, remains obscure but merits careful scientific investigation. Recent studies suggest that increased endometrial prostaglandin production and release may be responsible for dysmenorrhea. Prostaglandins cause myometrial contractility that, if excessive, leads to uterine ischemia and pain. This hypothesis has led to clinical trials of antiprostaglandin agents such as indomethacin and fenamates, which inhibit the synthesis of prostaglandin through the prostaglandin synthetase system as well as antagonize their action at the cell receptor level. The good response of dysmenorrhea to other conventional forms of therapy such as oral contraceptives and dilatation of the cervix can be partly explained on the basis of a reduced level of prostaglandins in the menstrual fluid with such therapy. There is a definite need for further evaluation of the antiprostaglandin compounds in the treatment of dysmenorrhea so that sound formulations can be evolved for the elimination of this incapacitating disorder.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

O Ylikorkala, M Y Dawood. 1978-04-01. New concepts in dysmenorrhea.. https://doi.org/10.1016/0002-9378(78)90019-4

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

cAMP activation of CF-affected Cl- conductance in both cell membranes of an absorptive epithelium.

Cystic fibrosis (CF) is characterized by abnormal epithelial Cl- conductance (GCl). In vitro studies that have shown that cAMP regulation is an intrinsic property of the CF-affected GCl(CF-GCl) have been carried out previously on cultured secretory cells and on nonepithelial cells. Even though GCl in absorption is defective in CF, a clear demonstration of cAMP regulation of CF-GCl in a purely absorptive tissue is lacking. We studied the cAMP regulation of CF-GCl in the microperfused intact human reabsorptive sweat duct. About 40% of the ducts responded to cAMP (responsive) while the remainder of the ducts did not. In responsive ducts, cAMP-elevating agents: beta-adrenergic agonist isoproterenol (IPR), CPT-cAMP, forskolin, theophylline or IBMX increased Gt by about 2.3-fold (n = no. of ducts = 8). Removal of media Cl-, but not amiloride pretreatment (in the lumen), abolished the cAMP response, indicating exclusive activation of GCl. cAMP activated both apical and basolateral GCl. cAMP hyperpolarized gluconate: Cl- (lumen:bath) transepithelial bionic potentials (delta Vt = -20.3 +/- 5.2 mV, mean +/- SE, n = 9) and transepithelial 3: 1 luminal NaCl dilution diffusion potentials (delta Vt = -8.8 +/- 2.9 mV, n = 5). cAMP activated basolateral GCl as indicated by increased bi-ionic (gluconate:Cl-, bath:lumen) diffusion potentials (by about 12 mV). The voltage divider ratio in symmetric NaCl solutions increased by 60%. Compared to responsive ducts, nonresponsive ducts were characterized by smaller spontaneous transepithelial potentials in symmetrical Ringer's solution (Vt = -6.9 +/- 0.8 mV, n = 24, nonresponsive vs. -19.4 +/- 1.8 mV, n = 22, responsive ducts) but larger bi-ionic potentials (-94 +/- 6 mV, n = 35, nonresponsive vs. -65 +/- 5 mV, n = 17, responsive ducts) and dilution diffusion potentials (-40 +/- 5 mV, n = 11, nonresponsive vs. -29 +/- 3 mV, n = 7, responsive ducts). These results are consistent with an inherently (prestimulus) maximal activation of GCl in nonresponsive ducts and submaximal activation of GCl in responsive ducts. We conclude that cAMP activates CF-GCl which is expressed and abnormal in both apical and basal membranes of this absorptive epithelium in CF.

Adrenergic beta-Agonists

Terbutaline-induced desensitization of beta 2-adrenoceptor in vivo function in humans: attenuation by ketotifen.

Use of beta-adrenoceptor agonists in long-term treatment of patients with chronic asthma bronchiale or heart failure is of limited value because beta-adrenoceptor desensitization develops. The antiallergic drug ketotifen prevents beta-adrenoceptor agonist-induced desensitization of rat and human pulmonary and lymphocyte beta 2-adrenoceptors. In 10 healthy volunteers in a double-blind, placebo-controlled study, we investigated whether ketotifen also prevents beta-adrenoceptor agonist-induced desensitization of beta 1- and/or beta 2-adrenoceptor-mediated physiologic in vivo effects. beta 1-Adrenoceptor-mediated effects were isoprenaline (ISO) infusion-induced increase in systolic blood pressure (SBP) and bicycle exercise-induced increase in heart rate (HR); beta 2-adrenoceptor-mediated effects were ISO infusion-induced increase in plasma norepinephrine (NE) and decrease in diastolic blood pressure (DBP); ISO infusion-induced increase in HR was assessed as mixed beta 1- and beta 2-adrenoceptor-mediated effect. These parameters were assessed before and after a 14-day treatment with the beta 2-adrenoceptor agonist terbutaline (5 mg three times daily) with or without simultaneous administration of ketotifen (1 mg twice daily). Terbutaline desensitized all in vivo effects involving beta 2-adrenoceptors (ISO-induced decrease in DBP and increase in plasma NE and, to a minor extent, the mixed beta 1- and beta 2-adrenoceptor-mediated increase in HR), but did not affect beta 1-adrenoceptor-mediated in vivo effects; concomitant treatment of the volunteers with ketotifen markedly blunted terbutaline-induced desensitization of beta 2-adrenoceptor in vivo function. We conclude that ketotifen prevents, or at least attenuates, beta-adrenoceptor agonist-induced desensitization of beta 2-adrenoceptor in vivo function.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic beta-Agonists

Positive inotropic effects due to partial agonistic activity of the beta-adrenoceptor antagonist celiprolol following amplification of cAMP formation in failing human myocardium.

The present study investigated the effects of celiprolol a novel beta 1-antagonist with partial beta 2-agonist activity on the human failing heart. Experiments were performed on isolated electrically driven atrial and ventricular cardiac preparations and in membrane preparations from the left ventricles of nine patients (four with dilated cardiomyopathy; five with ischemic cardiomyopathy) undergoing cardiac transplantation for terminal heart failure. Celiprolol produced a negative inotropic effect in atrial and ventricular heart muscle. However, in the presence of forskolin--which activates the catalyst of the adenylate cyclase-or the cAMP phosphodiesterase inhibitor milrinone, celiprolol produced concentration-dependent positive inotropic effects and positive lusitropic effects. Experiments with the beta 1-and beta 2-selective antagonists CGP 207.12A and ICI 118.551, respectively, suggest that the positive inotropic response is mediated by beta 2-adrenoceptors. In radioligand binding experiments, a selectivity of 15.7 [-Gpp(NH)p] or 23.9 [+Gpp(NH)p] as judged from the Ki values--of binding to beta 2-adrenoceptors was measured in the failing human ventricular myocardium. Competition curves with celiprolol alone and in the presence of the guanine nucleotide Gpp(NH)p revealed no evidence for agonist activity at beta 1- or beta 2-adrenoceptors. It is concluded that amplification of the cAMP response is able to unmask partial agonist activity of celiprolol in the failing human heart at beta 2-adrenoceptors. The inotropic measurements are a more sensitive approach than radioligand binding studies. Whether the pharmacological profile of celiprolol will be useful in conditions like heart failure is questionable with respect to the potential downregulation of beta 2-adrenoceptors by its partial agonist activity.

Adrenergic beta-Agonists