Search PubMed⌕ Search

Biomedical subjects

W Feniuk

Publications and source records attributed to W Feniuk.

At least 73 records · Page 4Linked to original sources

Neurogenically mediated contractions of dog basilar artery involve the release of a thromboxane-like substance.

Electrical field stimulation of dog isolated basilar artery produced neurogenically mediated contractions which were unaffected by phentolamine (1 microM), atropine (1 microM), ketanserin (1 microM) or methiothepin (0.1 microM). Responses were abolished by GR32191 (1-10 nM), BM 13.177 (0.1-10 microM) or flurbiprofen (0.5 microM) and markedly attenuated by dazoxiben (1-10 microM). Removal of the endothelium by Triton X-100-perfusion did not modify the magnitude of contractions to electrical stimulation and GR32191 still abolished the responses. GR32191 (1-10 nM) did not modify neurogenically mediated contraction of rabbit ear artery or potassium chloride-induced contraction of dog basilar artery. The results suggest that electrical field stimulation of dog basilar artery causes contractions which are mediated via a cyclo-oxygenase product with characteristics similar to thromboxane. This thromboxane-like substance is not endothelial in origin, nor released by contraction of the cerebrovascular smooth muscle per se and is therefore derived from a subendothelial, possibly neuronal, source.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

5-Hydroxytryptamine contracts human coronary arteries predominantly via 5-HT2 receptor activation.

5-Hydroxytryptamine (5-HT) caused contractions of human isolated epicardial coronary arteries which were markedly antagonised by ketanserin (10 nM-1 microM). The antagonism was not competitive. The selective 5-HT1-like receptor agonist, GR43175, caused only small, ketanserin-resistant contractions. These results suggest that the predominant contractile effect of 5-HT in human isolated large coronary arteries is mediated via 5-HT2 receptors but that, in addition, 5-HT1-like receptors contribute to some degree to this response in vitro.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

The pharmacology of the novel 5-HT1-like receptor agonist, GR43175.

We describe the identification of a novel drug, GR43175, for the acute treatment of migraine. GR43175 is a tryptamine analogue with a very selective agonist action at a 5-HT1-like receptor subtype first identified in the dog saphenous vein. Using this drug as a research probe, we have now shown that this 5-HT receptor type predominates in the carotid circulation, which explains the remarkably selective vasoconstrictor action of GR43175 in vivo in the carotid arterial bed of dogs and cats. Its vasoconstrictor action can be shown to be localized even further to arteriovenous anastomoses (shunts) within the carotid circulation, in such a way that blood flow to the brain as well as to extracerebral capillary beds remains unaffected or may even be increased. In the treatment of migraine demonstrated to date, the impressive effectiveness of GR43175 must reinforce the evidence in favour of an important vascular component being involved in the aetiology of the disease. The question is again raised as to whether the opening of carotid shunts is involved, as suggested by Heyck. If not, an alternative vascular locus needs to be identified.

Animals↗

GR43175 does not share the complex pharmacology of the ergots.

The aim of this study was to compare the effects of the selective 5-HT1-like receptor agonist, GR43175, with several ergot derivatives in several different pharmacological preparations. In the rat isolated uterus, ergotamine, dihydroergotamine, ergometrine and methylergometrine (all at concentrations of 1 microM) caused marked uterotonic activity whilst GR43175 (10 and 30 microM) was inactive. Similarly, in the pithed rat the ergot derivatives caused marked increases in diastolic blood pressure (in doses up to 1000 micrograms/kg intravenously), whilst GR43175 (in doses up to 1000 micrograms/kg intravenously) was inactive. In anaesthetized dogs, both ergotamine (0.3-1000 micrograms/kg intravenously) and GR43175 (1-1000 micrograms/kg intravenously) caused dose-dependent vasoconstriction in the carotid artery bed. However, the effects of ergotamine, unlike those of GR43175, were accompanied by increases in diastolic blood pressure and coronary vasoconstriction. These studies provide further evidence for the remarkably selective vasoconstrictor action of GR43175.

Animals↗

The selective closure of feline carotid arteriovenous anastomoses (AVAs) by GR43175.

The haemodynamic effects of the selective 5-HT1-like agonist GR43175 have been compared with that of ergotamine in anaesthetized cats. Both GR43175 (30-1000 micrograms/kg intravenously) and ergotamine (0.3-30 micrograms/kg intravenously) caused a dose-dependent reduction in the proportion of cardiac output passing through arteriovenous anastomoses (AVAs). However, unlike GR43175, the effect of ergotamine (30 micrograms/kg intravenously) was associated with marked increases in diastolic blood pressure and total peripheral resistance. In further studies, the effect of GR43175 on the distribution of blood flow within the carotid bed has been examined. GR43175 caused a reduction in total carotid arterial blood flow which was entirely due to a reduction in flow through carotid AVAs. These results demonstrate that GR43175, unlike ergotamine, has a highly selective vasoconstrictor action on AVAs within the cranial circulation of anaesthetized cats. Such a mechanism may be important in its antimigraine activity.

Animals↗

The selective carotid arterial vasoconstrictor action of GR43175 in anaesthetized dogs.

1. GR43175 is a highly selective agonist at 5-HT1-like receptors in the dog saphenous vein. This study describes the haemodynamic effects of GR43175 in barbitone-anaesthetized dogs. 2. GR43175 (1-1000 micrograms kg-1, i.v.) produced dose-dependent decreases in carotid arterial blood flow with little or no change in arterial blood pressure. The decrease in blood flow was associated with an increase in carotid arterial vascular resistance. In preliminary studies, the dose of GR43175 producing 50% of the maximum carotid vasoconstrictor response was 39 +/- 8 micrograms kg-1, i.v. 3. In comparative regional haemodynamic studies, GR43175 (1-1000 micrograms kg-1, i.v.) had little effect on total peripheral resistance or resistance in the mesenteric, vertebral and coronary arterial vascular beds. Low doses of GR43175 decreased, whilst high doses (100 micrograms kg-1, i.v. and above) increased femoral arterial vascular resistance. GR43175 (1-1000 micrograms kg-1, i.v.) had no effect on respiratory inflation pressure. In doses of 100 micrograms kg-1 i.v. and above, GR43175 caused small decreases in heart rate. 4. The carotid arterial vasoconstrictor action of GR43175 was resistant to antagonism by the 5-HT2 receptor, 5-HT3 receptor and alpha-adrenoceptor blocking drugs, ketanserin, MDL72222 and phentolamine respectively, but could be antagonized by the non-selective 5-HT1-like receptor blocking drug methiothepin. Methiothepin had no effect on the carotid vasoconstrictor action of the thromboxane A2 mimetic, U46619. 5. The results demonstrate that GR43175 produces a selective vasoconstriction in the carotid arterial circulation of anaesthetized dogs via activation of 5-HT1-like receptors, which appear similar to those mediating contraction of the dog isolated saphenous vein.

Animals↗

Influence of the endothelium on contractile effects of 5-hydroxytryptamine and selective 5-HT agonists in canine basilar artery.

1. We have investigated the influence of endothelial damage on the cerebrovascular reactivity to 5-hydroxytryptamine (5-HT) and some selective 5-HT agonists in canine basilar artery. 2. 5-HT, alpha-methyl 5-HT, GR 43175 (3-[2-dimethyl amino] ethyl-N-methyl-1H-indole-5-methane sulphonamide) and 5-carboxamidotryptamine (5-CT) produced concentration-dependent contractions of untreated dog basilar artery with a functional endothelium. Following endothelial damage by perfusion with Triton X-100 (0.1%), which abolished the relaxant response to substance P, the maximum contractile effect of 5-HT, alpha-methyl 5-HT, GR 43175 and 5-CT was markedly enhanced although there was little change in the EC50 values. Endothelial damage did not modify the vasoconstrictor effect of the thromboxane agonist, U46619, or potassium chloride. 3. Neither 5-HT nor 5-CT caused relaxation of untreated canine basilar arteries contracted with prostaglandin F2 alpha, U46619, uridine triphosphate or potassium chloride. 4. These results suggest that canine basilar artery spontaneously releases endothelium-derived relaxing factor which can attenuate the vasoconstrictor effect of 5-HT and selective 5-HT agonists. This effect appeared to be specific since the vasoconstrictor response to U46619 was not modified. 5. These results demonstrate that the cerebrovascular endothelium can markedly influence the reactivity of the vascular smooth muscle of canine basilar artery to 5-HT and 5-HT1-like receptor agonists. However we could find no evidence that 5-HT receptor activation stimulates endothelial cell function as it does in some other blood vessels.

Animals↗

Characterization of 5-HT receptors mediating contraction of canine and primate basilar artery by use of GR43175, a selective 5-HT1-like receptor agonist.

1. The aim of this study was to characterize the 5-hydroxytryptamine (5-HT) receptor which mediates contraction of canine and primate isolated basilar artery by use of a variety of selective 5-HT agonists and antagonists. 2. 5-HT, alpha-methyl 5-HT and the selective 5-HT1-like receptor agonists, GR43175 and 5-carboxamidotryptamine (5-CT), each caused contraction of canine and primate basilar artery with a rank order of agonist potency of 5-CT greater than or equal to 5-HT greater than GR43175 greater than alpha-methyl 5-HT. The 5-HT1-like receptor agonists, GR43175 and 5-CT, produced maximum effects which were less than that produced by 5-HT or alpha-methyl 5-HT. 3. In canine basilar artery, ketanserin (0.1-1 microM) caused some depression of the maximum effect of 5-HT but produced little or no shift of the concentration-effect curve. The contractile effects of GR43175 were not modified by ketanserin (1 microM), MDL72222 (1 microM) or cyanopindolol (1 microM). However, the effects of 5-HT and GR43175 were specifically antagonized by methiothepin (0.1 microM); the mean agonist concentration-ratios were 33 and 48 respectively. 4. In primate basilar artery, ketanserin (1 microM) again caused a small depression of the 5-HT maximum response but had not effect against GR43175-induced contractions. In contrast, methiothepin (0.1 microM) antagonized both 5-HT- and GR43175-induced contractions; the mean agonist concentration-ratios were 35 for both. 5. These results demonstrate that a large component of the effects of 5-HT in canine and primate basilar artery is produced by stimulation of a 5-HT1-like receptor. This receptor can be characterized by the high potency of the novel, selective agonist, GR43175, and susceptibility to blockade by methiothepin. However, there also appears to be a population of 5-HT2 receptors in these prepAarations which contribute to the contractile effects of 5-HT.

Animals↗

5-HT1-like receptors mediate 5-hydroxytryptamine-induced contraction of human isolated basilar artery.

1. The 5-hydroxytryptamine (5-HT) receptor mediating contraction of endothelium denuded human basilar artery has been characterized in vitro. 2. 5-HT and a variety of 5-HT agonists contracted human isolated basilar artery with a rank order of agonist potency, 5-carboxamidotryptamine (5-CT) greater than 5-HT identical to methysergide greater than GR43175 much greater than 8-OHDPAT much greater than 2-methyl-5-HT. The maximum response produced by these agonists differed. 3. None of the agonists relaxed human basilar artery when tone was elevated with prostaglandin F2 alpha, indeed further contraction was seen. 4. The contractile responses of human basilar artery to 5-HT and the selective 5-HT1-like agonist GR43175 were highly reproducible whilst those to 5-CT were not. 5. The contractile response to both 5-HT and GR43175 was resistant to antagonism by ketanserin and GR38032, thus excluding activation of 5-HT2 and 5-HT3 receptors. The contractile action of 5-HT and GR43175 was also not antagonized by (+/-)-cyanopindolol, excluding the activation of receptors similar to 5-HT1A and 5-HT1B recognition sites identified in ligand binding studies. 6. In marked contrast, methiothepin was a potent antagonist of the contractile actions of both 5-HT and GR43175, with a pA2 value of 8.8 against both agonists. Methiothepin (100 nM) had no effect on the contractile response to the thromboxane A2-mimetic U46619. 7. We conclude that 5-HT and GR43175 contract the human isolated basilar artery by activating the same receptor type. This receptor appears identical to the 5-HT1-like receptor causing contraction of the dog isolated saphenous vein and cerebral blood vessels from the dog and primate.

Basilar Artery↗

Further characterization of the 5-HT receptor mediating vascular relaxation and elevation of cyclic AMP in porcine isolated vena cava.

1. 5-Hydroxytryptamine (5-HT) and 5-carboxamidotryptamine (5-CT) produce both smooth muscle relaxation and elevation of tissue adenosine 3':5'-cyclic monophosphate (cyclic AMP) levels in isolated rings of neonatal porcine vena cava. We now present studies attempting to characterize in more detail the 5-HT receptor mediating these responses. 2. Both 5-HT and 5-CT relaxed porcine isolated vena cava rings (EC50 values 200 nM and 4 nM respectively) and elevated tissue cyclic AMP levels (EC50 values 1500 nM and 16 nM respectively). For both responses 5-CT was approximately 50-100 fold more potent than 5-HT. 3. Both 5-CT-induced smooth muscle relaxation and cyclic AMP elevation were potently and specifically antagonized to a similar extent by methiothepin, methysergide and spiperone. 4. At concentrations up to 1 microM, 8-hydroxy-2-(di-n-propylamino) tetralin, buspirone, ipsapirone, n,n-dipropyl-5-CT, cyanopindolol, RU24969, ketanserin, GR38032 and GR43175 were devoid of both agonist and antagonist activity for both responses. 5. These findings suggest that the same 5-HT1-like receptor mediates both smooth muscle relaxation and elevation of cyclic AMP. This receptor is unlike any known 5-HT1 ligand binding site or adenylate cyclase-coupled 5-HT receptor in brain tissues.

Animals↗

GR43175, a selective agonist for the 5-HT1-like receptor in dog isolated saphenous vein.

1. We describe the actions of a novel and selective 5-HT1-like receptor agonist, GR43175, in a range of isolated tissue preparations containing different 5-hydroxytryptamine (5-HT) receptor types. 2. GR43175 was a potent agonist at 5-HT1-like receptors mediating contraction of the dog isolated saphenous vein and also at those inhibiting neuronally mediated contractions in the same preparations. For both actions, GR43175 was approximately four times weaker than 5-HT. 3. GR43175 was devoid of agonist properties at 5-HT1-like receptors mediating relaxation of the cat isolated saphenous vein. 4. GR43175 was devoid of agonist properties at 5-HT2 receptors mediating contraction of the rabbit isolated aorta, pig coronary artery, greyhound coronary artery and beagle femoral artery. 5. GR43175 was devoid of agonist properties at 5-HT3 receptors mediating depolarization of the rat isolated vagus nerve. 6. The contractile response to GR43175 in the dog isolated saphenous vein was selectively antagonized by methiothepin but was resistant to antagonism by the 5-HT2 receptor blocking drug ketanserin and the 5-HT3 receptor blocking drug MDL 72222. Methiothepin antagonized the contractile action of 5-HT and GR43175 to an equal extent suggesting that both agonists act at the same receptor. 7. The results demonstrate that GR43175 is a highly selective agonist for the 5-HT1-like receptors found in the dog saphenous vein. The absence of an action of GR43175 at 5-HT1-like receptors mediating relaxation of the cat isolated saphenous vein provides further evidence that 5-HT1-like receptors are heterogeneous.

Animals↗

Role of endothelium in haemoglobin-induced contraction of dog basilar artery.

Haemoglobin (10 nM-30 microM) caused contraction of dog isolated basilar artery. In preparations which were perfused with Triton X-100 (0.1%) for one min to remove the endothelium, substance P relaxation was abolished but haemoglobin-induced contractions were unchanged. Endothelium removal or damage was confirmed histologically. These results suggest that the integrity of the endothelium is not essential for haemoglobin to produce contraction in dog basilar artery.

Animals↗

5-Carboxamidotryptamine: a potent agonist mediating relaxation and elevation of cyclic AMP in the isolated neonatal porcine vena cava.

5-Carboxamidotryptamine (5-CT) caused concentration dependent relaxation of isolated rings from the porcine vena cava contracted with either prostaglandin F2 alpha, histamine or alpha-methyl 5-hydroxytryptamine. Relaxation was not inhibited by propranolol (l microM), atropine (1 microM), indomethacin (3 microM), mepyramine (1 microM), cimetidine (1 microM), or cocaine (10 microM). Methysergide, but not cyproheptadine, was a competitive antagonist of the relaxant effect of 5-CT with a pA2 value of 7.88. 5-Carboxamidotryptamine also increased the intracellular levels of cyclic AMP, an effect which was antagonised by methysergide (apparent pA2: 7.95) but not cyproheptadine. The alpha-methyl analogue of 5-hydroxytryptamine did not cause relaxation or elevate cyclic AMP. These results suggest that 5-CT causes relaxation and elevation of cyclic AMP by interaction with a specific 5-hydroxytryptamine receptor which is '5-HT1-like'.

1-Methyl-3-isobutylxanthine↗

Proposals for the classification and nomenclature of functional receptors for 5-hydroxytryptamine.

As a result of controversy in the literature regarding the classification and nomenclature of functional receptors for 5-hydroxytryptamine (5-HT), a framework for classification is proposed. The formulation of these proposals has only been made possible by the recent advent of new drug tools. It is considered that there are three main types of 5-HT receptor, two of which have been well characterised pharmacologically, using selective antagonists, and which it is proposed to name 5-HT2 and 5-HT3. These two groups broadly encompass the "D" and "M" receptors, respectively, which Gaddum identified in the guinea-pig ileum (Gaddum and Picarelli, 1957). The 5-HT2 receptor, which mediates a variety of actions of 5-HT, has been definitively shown to correlate with the 5-HT2 binding site in the brain. No binding studies in brain tissue have yet been published with radiolabelled ligands specific for 5-HT3 receptors. A number of other actions of 5-HT appear to be mediated via receptors distinct from 5-HT2 or 5-HT3 receptors. Since selective antagonists are not yet available, these receptors cannot be definitively characterised, although in many cases they do have some similarities with 5-HT1 binding sites, which are a heterogeneous entity. Criteria are proposed for tentatively classifying these receptors as "5-HT1-like" (Table 1). Definitive characterisation of these receptors will await the identification of specific antagonists. This classification of 5-HT receptors into three main groups (Table 1) is based largely, but not exclusively, on data from studies in isolated peripheral tissues where definitive classification is possible. However, it is believed that this working classification will be relevant to functional responses to 5-HT in the central nervous system.

Animals↗

An investigation into the mechanisms of the cardiovascular effects of 5-hydroxytryptamine in conscious normotensive and DOCA-salt hypertensive rats.

The actions of intravenously administered 5-hydroxytryptamine (5-HT) have been analysed in conscious DOCA-salt hypertensive rats using selective 5-HT receptor agonists and antagonists to determine the receptor mechanisms involved and to compare them with those in conscious normotensive rats. In both normotensive and hypertensive rats 5-HT, 3 and 10 micrograms i.v., produced a complex triphasic effect on blood pressure consisting of an initial short lasting depressor response, which was followed by a pressor response and then, finally, a hypotensive phase. Marked decreases in heart rate were observed immediately after dosing, which were followed by small increases in rate. The selective 5-HT3-receptor agonist, 2-methyl 5-HT, 3-30 micrograms i.v., produced immediate and marked dose-related decreases in blood pressure and heart rate in both normotensive and DOCA-salt hypertensive rats. The 5-HT3-receptor antagonist, MDL 72222, 0.03 and 0.1 mg/kg i.v., antagonised these effects in both normotensive and DOCA-salt hypertensive rats. Treatment with MDL 72222, 0.3 mg/kg i.v., abolished the initial depressor response and bradycardia produced by 5-HT. The 5-HT2 receptor agonist, alpha-methyl 5-HT, 3-30 micrograms i.v., produced dose-related increases in blood pressure which were significantly greater in magnitude in DOCA-salt hypertensive than normotensive rats. Bradycardia was observed consistently at 30 micrograms only. The 5-HT 2 receptor antagonist, ketanserin, 0.03-0.3 mg/kg i.v., caused a dose-dependent antagonism of the pressor responses produced by alpha-methyl 5-HT, but had no effect on the increases in blood pressure produced by angiotensin.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

5-Carboxamidotryptamine is a selective agonist at 5-hydroxytryptamine receptors mediating vasodilatation and tachycardia in anaesthetized cats.

We have attempted to characterize the 5-hydroxytryptamine (5-HT) receptors mediating bronchoconstriction, vasodilatation, vasodepression and tachycardia in anaesthetized cats following bilateral vagosympathectomy and beta-adrenoceptor blockade with propranolol. 5-HT (1-100 micrograms/kg-1 i.v.) caused dose-related bronchoconstriction and tachycardia but variable and complex effects on diastolic blood pressure and carotid arterial vascular resistance. In contrast, 5-carboxamidotryptamine (5-CT; 0.01-1 micrograms kg-1 i.v.) caused consistent, dose-related decreases in diastolic blood pressure and carotid arterial vascular resistance and increases in heart rate. 5-CT did not cause bronchoconstriction. The 5-HT-induced bronchoconstriction was dose-dependently antagonized by methiothepin, methysergide and ketanserin (10-100 micrograms kg-1 i.v.). The highest doses used of these antagonists did not antagonize bronchoconstriction induced by prostaglandin F2 alpha. The high potency of all three antagonists indicate a 5-HT2-receptor mediated effect. The 5-HT- and 5-CT-induced tachycardia as well as the 5-CT-induced vasodepressor and carotid arterial vasodilator responses were dose-dependently antagonized by low doses of methiothepin (10-100 micrograms kg-1 i.v.) and by high doses of methysergide (100-1000 micrograms kg-1 i.v.) but were little affected by ketanserin in doses up to 1000 micrograms kg-1 i.v. These selective effects of 5-CT appear to be mediated by '5-HT1-like' receptors.

Animals↗

A comparison of 5-hydroxytryptamine receptors mediating contraction in rabbit aorta and dog saphenous vein: evidence for different receptor types obtained by use of selective agonists and antagonists.

Using recently available selective agonists and antagonists we have examined further our postulate (Apperley et al., 1980) that 5-hydroxytryptamine (5-HT) mediates contraction of dog saphenous vein via a different 5-HT receptor type from that in the rabbit aorta. In the rabbit isolated aorta, ketanserin and spiperone were potent, specific, competitively-acting antagonists of the contractile effects of 5-HT. In contrast, in the dog isolated saphenous vein neither ketanserin nor spiperone caused any rightward displacement of concentration-response curves to 5-HT although the maximum response was reduced by about 10%. In the rabbit aorta 5-carboxamidotryptamine (5-CONH2-T) was a weak agonist whilst the 5-N,N-dimethyl and 5-N-ethyl derivatives were even weaker or inactive. The contractile effect of 5-CONH2-T in the rabbit aorta was potently and competitively antagonized by ketanserin. In contrast, in the dog saphenous vein 5-CONH2-T and its 5-N,N-dimethyl and 5-N-ethyl derivatives were all potent agonists. The contractile effect of 5-CONH2-T was not markedly affected by ketanserin. The profile of action of ketanserin and spiperone in the rabbit aorta is consistent with the view that 5-HT2 receptors mediate contraction in this preparation. However, the 5-HT receptor mediating contraction in the dog saphenous vein appears to be '5-HT1-like', sharing a number of characteristics with the 5-HT1 recognition site identified from [3H]-5-HT ligand binding studies in brain tissue.

Animals↗