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1. The actions of angiotensin II, bradykinin, oxytocin, arginine vasopressin, relaxin, serotonin and the prostaglandins E2 and F2 alpha were examined on preparations of costo-uterine muscle from stilboestrol-treated rats. 2. All the agonists, except relaxin, when used in concentrations which contract the rat uterus, also produced contractions of costo-uterine muscles. Concentration-response curves were steep and maximal responses to the agonists were comparable. The negative log molar EC50 values were: serotonin, 6.5; angiotensin II, 8.8; bradykinin, 8.4; PGE2, 8.3; PGF2 alpha, 7.1. The EC50 values (units/L) for oxytocin and vasopressin were 4.4 and 2.7 respectively. 3. Indomethacin (2.8 or 5 mumol/L) did not decrease the contractile effects of the peptides or serotonin. The effects of serotonin were reduced, but not reversed, by methysergide (0.94 mumol/L). 4. Porcine relaxin inhibited field stimulation-induced contractions of costo-uterine muscle and uterine horns from immature rats pretreated with oestradiol cypionate and from stilboestrol-treated mature rats. It was much less potent, and its effects were less clearly concentration-related, on costo-uterine muscle. 5. The inhibitory effects of relaxin on the uterus were unaffected by propranolol (1 mumol/L), confirming that on this tissue relaxin acts independently of the release of catecholamines. Progesterone (30 mumol/L) was also without effect on the action of relaxin on the uterus. 6. These results taken together indicate that the costo-uterine muscle of the rat: (i) contracts in response to serotonin and the peptides angiotensin II, arginine vasopressin, bradykinin and oxytocin independently of the release of the contractile prostaglandins F2 alpha and E2; and (ii) in contrast to the uterus, may lack a significant population of receptors for relaxin.(ABSTRACT TRUNCATED AT 250 WORDS)
1 Cardiac glycosides have been used for centuries as therapeutic agents for the treatment of heart diseases. In patients with heart failure, digoxin and the other glycosides exert their positive inotropic effect by inhibiting Na(+)-K(+)-ATPase, thereby increasing intracellular sodium, which, in turn, inhibits the Na(+)/Ca(2+) exchanger and increases intracellular calcium levels. As the therapeutic index of digitalis is narrow, arrhythmias are common problems in clinical practice. The mechanisms and mediators of these arrhythmias, however, are not completely understood. 2 The involvement of the sympathetic and parasympathetic nervous system in digitalis cardiac toxicity is reviewed. 3 Receptors, channels, exchange systems or other cellular components involved in digitalis-induced cardiotoxicity are also reviewed. 4 Possible mediators of digitalis-induced cardiac toxicity are discussed. 5 Management of digitalis toxicity in patients is summarized. 6 The determination of the possible mediators of digitalis-induced cardiac toxicity will enhance our knowledge and lead to the development of new therapeutic strategies to treat these lethal arrhythmias.
1 A new in vitro preparation, the isolated lung strip of the cat, is described for investigating the direct effect of drugs on the smooth muscle of the peripheral airways of the lung. The preparation comprises a thin strip of lung parenchyma which can be mounted in a conventional organ bath for isometric tension recording. Its pharmacological responses have been characterized and compared with the isolated tracheal preparation of the cat. 2 The lung strip exhibited an intrinsic tone which was relaxed by catecholamines, aminophylline and flufenamate. It was contracted strongly by histamine, prostaglandin F2alpha, acetylcholine, compound 48/80, potassium depolarizing solution and alternating current field stimulation. In contrast, the cat trachea was unresponsive to histamine and prostaglandin F2alpha and did not exhibit an intrinsic tone. 3 (-)-Isoprenaline and (-)-adrenaline were much more potent in relaxing the lung strip than the trachea. The potency order of relaxation responses to isoprenaline, adrenaline and (+/-)-noradrenaline in the lung strip was isoprenaline greater than adrenaline greater than noradrenaline but in the trachea was isoprenaline greater than noradrenaline greater than or equal to adrenaline. 4 beta2-Adrenoceptor selective agonists salbutamol and terbutaline were more potent in the lung strip than the trachea, suggesting beta2-adrenoceptors predominated in the lung strip. Propranolol was equipotent in inhibiting isoprenaline relexations of the lung strip and trachea, whereas practolol was much less effective in inhibiting lung strip than trachea, further supporting a predominance of beta2-adrenoceptors in lung strip and beta1-adrenoceptors in trachea. 5 Strong Schultz-Dale type contractions were elicited in both lung strips and trachea by Ascaris lumbricoides antigen in actively sensitized cats. The initial phase of the contractile response of the lung strip following challenge was shown to be due to histamine release and was absent in the trachea. The delayed phase of the contraction which took several minutes to develop in both the mepyramine-treated lung strip and trachea was not due to prostaglandins E1, F2alpha or bradykinin, the probable mediator being slow reacting substance of anaphylaxis (SRS-A). 6 It is concluded that the isolated lung strip of the cat is useful as an in vitro model for investigating the effect of drugs on the smooth muscle of the peripheral airways of the lungs.
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The effects of some laxatives were examined on the formation of histamine, 5-hydroxytryptamine (5-HT) and prostaglandin-like material (PG-LM) by rat intestine in-vitro. Castor oil, senna, sulphosuccinate and bisacodyl, but not mannitol or lactulose, in doses that cause laxation, increased the formation of histamine, 5-HT and PG-LM. Indomethacin or hydrocortisone reduced the increase of PG-LM formation. The data support the idea that the laxative effects of these intestinal secretagogues are due to increased intestinal production of PG-LM, histamine and 5-HT.
Electrical and mechanical properties of smooth muscle cells and of neuro-effector transmission in the smooth muscle layer of the dog bronchiole (about 1 mm in diameter) were studied with double-sucrose-gap, micro-electrode or tension recording methods. Electrical field stimulation of short duration (50 microseconds) applied to the whole tissue excited the intrinsic nerves, and evoked excitatory junction potentials (e.j.p.s) followed by a twitch-like tension; these were abolished by tetrodotoxin (10(-7) M) or by atropine (10(-6) M). 5-Hydroxytryptamine (10(-5) M) produced a tonic contracture of the bronchiole, and electrical field stimulation applied during the tonic contracture produced an initial phasic contraction and a subsequent relaxation. Atropine (10(-6) M) and propranolol (10(-6) M) selectively abolished the phasic contraction and relaxation, respectively, indicating that dog bronchiolar muscles are innervated by excitatory cholinergic and inhibitory adrenergic nerve fibres. E.j.p.s and twitch contractions evoked by electrical field stimulation at 3 min intervals showed a gradual reduction in amplitude during superfusion with normal Krebs solution, and this reduction was overcome by pre-treatment with indomethacin (10(-5) M). The mean value of the resting membrane potential of the bronchiole smooth muscle cells was -70.2 +/- 2.2 mV (+/- S.D., n = 150), and an action potential was superimposed on e.j.p.s in 50% of the muscle cells examined when the amplitude of e.j.p.s exceeded 35 mV. During repetitive field stimulation at 0.1-0.2 Hz, the amplitude of the e.j.p.s gradually increased (facilitation); this phenomenon was markedly enhanced by indomethacin (10(-5) M) and was depressed by exogenously applied prostaglandins in low concentrations (10(-11)-10(-8) M). Histamine (5 X 10(-8)-5 X 10(-7) M) enhanced the amplitude of e.j.p.s and twitch contraction evoked by field stimulation, and this effect was antagonized by mepyramine (10(-7) M). Histamine (10(-7) M) enhanced the amplitude of the ACh-induced contraction when a relatively low concentration (10(-7) M) of ACh was applied, but not when concentrations of 10(-6) M- or 10(-5) M-ACh were applied. Histamine had no effects on the facilitation of e.j.p. Bronchiolar smooth muscle cells therefore showed larger resting potentials and a greater tendency to fire action potentials than trachealis muscle, and prostaglandins and histamine are involved in inhibitory and accelerative mechanisms related to excitatory neuro-effector transmission, respectively.
The effects of elevated levels of adenosine 3',5'-cyclic monophosphate (cAMP), in cultured endothelial cells from bovine aorta, on the ATP-induced increases in the intracellular free calcium concentration [( Ca2+]i) and the release of prostaglandin I2 (PGI2) and endothelium-derived relaxant factor (EDRF) were investigated. Endothelial cAMP production was assessed in terms of cAMP release in the presence of the phosphodiesterase inhibitor 3-isobutyl-1-methylxanthine; this release was increased fivefold by isoproterenol (1 microM), 1.6-fold by isoproterenol (0.1 microM), and 1.5-fold by the stable PGI2 analogue iloprost (10 microM). [Ca2+]i, measured with the fluorescent probe indo-1, was increased by ATP (1 microM) from 150 +/- 20 (SE) to 410 +/- 50 nM. Neither isoproterenol nor iloprost changed [Ca2+]i in unstimulated cells, but they significantly reduced [Ca2+]i levels in the presence of ATP. Similar inhibitions of increases in [Ca2+]i as by iloprost and isoproterenol (0.1 microM) were evoked by dibutyryl-cAMP (100 microM). Release of PGI2 was enhanced from 3.9 +/- 0.5 to 34.6 +/- 6 ng.min-1.5 x 10(6) cells-1 by ATP (3 microM); in the presence of isoproterenol, the ATP-stimulated release was reversibly reduced to 18.1 +/- 4.9 ng/min. Release of EDRF was assayed in terms of its stimulatory action on purified soluble guanylate cyclase. EDRF release in the first minute after stimulation with ATP (10 microM) was significantly attenuated by isoproterenol from 32.3 +/- 4.8 to 23.0 +/- 4.6 nmol.min-1.mg-1 (activity of soluble guanylate cyclase).(ABSTRACT TRUNCATED AT 250 WORDS)
The mechanisms of which nitric oxide (NO) and prostacyclin (PGI2) are released from endothelium-intact rabbit femoral arteries under resting conditions and after stimulation by either shear stress or acetylcholine (ACh) were investigated. The concentration of NO in the effluate was determined by monitoring the NO-mediated stimulation of purified soluble guanylyl cyclase, and that of PGI2 was done using a specific radioimmunoassay for its stable hydrolysis product, 6-ketoprostaglandin F1 alpha, NO release under static (no-flow) conditions and in the absence of a stimulus accounted for 10-15% of the maximum release of NO from luminally perfused segments stimulated with ACh and was attenuated by removal of extracellular Ca2+. A six- to sevenfold increase in shear stress (from 0.15 to 1 dyn/cm2), generated either by vasoconstriction at constant flow or by an increase in flow at constant diameter, elicited a five- to sevenfold increase in NO release, which was correlated with increasing shear stress. The same increase in shear stress also enhanced the release of PGI2 from the femoral artery segments by 11- to 12-fold. Removal of extracellular Ca2+ abolished the shear stress-dependent PGI2 released but did not affect that of NO. In contrast, the ACh-stimulated NO release was strongly inhibited in the absence of extracellular Ca2+ (78% inhibition). Charybdotoxin, an inhibitor of Ca(2+)-activated K+ channels, and glibenclamide, an inhibitor of the ATP-sensitive K+ channel, had no effect on the shear stress-dependent release of NO.(ABSTRACT TRUNCATED AT 250 WORDS)
Human umbilical vein endothelial (HUVE) cells plated on plastic or gelatin-coated dishes grow as a "cobblestone" monolayer. By contrast, endothelial cells cultured on a complex matrix (e.g., Matrigel) form three-dimensional, capillary-like structures. In the current study, we verified the capillary phenotype of the latter structures and asked whether the morphological changes induced by extracellular matrix also affect human endothelial gene expression and function in vitro. Concentrations of cellular fibronectin, prostacyclin, and endothelin-1 were measured in the conditioned media by enzyme-linked immunosorbent and radioimmunoassays. Steady-state concentrations of HUVE mRNA were estimated by reverse transcription-polymerase chain reaction and quantified by Northern analyses to assess fibronectin and endothelin-1 gene expression. We found that the subjacent extracellular matrix affects the morphology, proliferation, and differentiation of HUVE cells in vitro. Cells cultured on gelatin were more mitotically active, expressed significantly less cellular fibronectin, made similar amounts of prostacyclin, and secreted significantly more endothelin-1 compared with the same cells grown on a Matrigel substrate.
The inner medullary collecting duct (IMCD) of the rat consists of two structurally and functionally distinct segments, i.e., the initial and the terminal IMCD. To identify factors that may regulate the transport function in the IMCD segments, we assessed whether catecholamines, carbachol, prostaglandin E2 (PGE2), bradykinin, glucagon, calcitonin, parathyroid hormone, or epidermal growth factor affects adenosine 3',5'-cyclic monophosphate (cAMP) production in microdissected tubules in the presence and absence of arginine vasopressin (AVP, 0.1 nM). All experiments were performed in the presence of 3-isobutyl-1-methylxanthine, and cAMP was measured by radioimmunoassay. Epinephrine (greater than or equal to 50 nM) and clonidine (greater than or equal to 1 microM) markedly decreased AVP-induced cAMP levels in both IMCD segments. However, phenylephrine did not show an effect. The inhibitory effect of epinephrine was blocked by yohimbine (50 nM) but not by prazosin (50 nM). In isolated perfused terminal IMCDs, epinephrine inhibited AVP-stimulated urea permeability. Isoproterenol (1 microM), in the absence of AVP, caused a significant increase in cAMP level only in the initial IMCD. Propranolol (1 microM) inhibited this isoproterenol effect, but atenolol did not. Dopamine (less than or equal to 1 microM) had no effect on cAMP levels in either IMCD segment. Carbachol, PGE2, and the various peptide hormones had no effect on cAMP levels (+/- AVP) in either IMCD segment. We conclude that an adrenergic beta 2-receptor is present only in the initial IMCD, where its occupation increases cAMP production. We conclude also that an adrenergic alpha 2-receptor is present in both IMCD segments, where its occupation inhibits AVP-induced cAMP production.(ABSTRACT TRUNCATED AT 250 WORDS)
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Histamine, prostaglandin E(2), and catecholamines have been demonstrated to regulate the innate and acquired immune responses. In this review, we describe one of the mechanisms common to the action of these agonists; the regulation of the expression of costimulatory adhesion molecules such as ICAM-1 and B7 antigens on monocytes/macrophages. The specific receptor subtypes involved in the action of each agonist were H(2) for histamine, EP(2)/EP(4) for prostaglandin E(2), and beta(2) for catecholamines, all of which are coupled with adenylate cyclase via Gs protein. The regulation of the expression of adhesion molecules by these agonists in turn leads to the modulation of subsequent cytokine production mediated by cell-cell interaction under different stimuli. Histamine is synthesized in monocytes and T cells by the induction of histidine decarboxylase. The inducible histamine has different dynamics from that in storage granules of mast cells and basophils. Also, noradrenaline appears to be synthesized in lymphocytes. Thus, immune cells can produce histamine, prostaglandins, and noradrenaline by themselves and modulate the cell-cell interaction between monocytes and other cells. Some of the inhibitors of HMG-CoA reductase were shown to bind to the ICAM-1-binding domain of LFA-1, reducing the interaction mediated by ICAM-1/LFA-1. The regulation of interaction mediated by adhesion molecules may provide a new target for controlling inflammatory and immune responses.
Adult male Wistar rats were treated with one tracheal instillation of 5 or 10 mg chrysotile B asbestos fibers in 0.5 ml saline, or 0.5 ml saline only (controls). Rats were killed at 1, 3, and 6 months postinstillation. Serotonin and histamine were quantitated in lung tissue homogenate using high-performance liquid chromatography with electrochemical and fluorometric detection, respectively. Serotonin was also quantitated in the cytoplasm of grouped (NEB) and individual (NEC) neuroendocrine cells and in mast cells using formaldehyde vapor-induced fluorescence and microspectrofluorometry, and density indices of NEBs, NECs, and mast cells were determined. Tissue edema, fibrotic lesions, and medial hypertrophy of pulmonary arterioles were assessed morphometrically. Test rats had higher pulmonary serotonin and histamine levels than controls at 1, 3, and 6 months. They also had higher cellular serotonin in NEBs at 1 month, but not in NECs, and tended to have higher serotonin levels in mast cells at 6 months. Mast cell numbers were higher among tests at 1 and 3 months, whereas NEBs and NECs were unchanged by asbestos. There was no difference between tests and controls in the amount of tissue edema at any time. However, all test rats had distinct lung lesions characterized by peribronchiolar fibrosis and bronchiolitis obliterans. No such lesions were present among control rats. Typically, mast cells were located immediately beneath the epithelial basal lamina of the bronchiolar fibrotic projections and at their stalks, whereas no mast cells were noted beneath normal epithelium, indicating a role of mast cells in asbestos-induced peribronchiolar fibrosis. Moreover, arteriolar medial hypertrophy at all three ages in conjunction with the increased levels of serotonin was an index of putative chronic pulmonary hypertension. Our results suggest that asbestos-induced rises in serotonin and histamine are due primarily to increased numbers of mast cells.
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