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G W John

Publications and source records attributed to G W John.

At least 19 recordsLinked to original sources

Dimerization of sumatriptan as an efficient way to design a potent, centrally and orally active 5-HT1B agonist.

A new bivalent ligand of formula 3 which results from the covalent coupling of two sumatriptan molecules with a p-xylyl spacer at the level of the sulfonamide nitrogen has been prepared and evaluated as a 5-HT1B/1D receptors agonist. In vitro experiments at 5-HT1B human cloned receptors (Ki = 0.64 nM; EC50 = 0.58 nM) and at the level of the contraction of the New Zealand white rabbit saphenous vein (pD2 = 6.6) demonstrate the superior potency of dimer 3 as a 5-HT1B receptor agonist when compared to sumatriptan or zolmitriptan. Interestingly enough, the new bivalent agonist 3 was found to induce hypothermia in the guineapig upon oral administration suggesting good oral activity and access to the brain.

Animals

Activation of recombinant h 5-HT1B and h 5-HT1D receptors stably expressed in C6 glioma cells produces increases in Ca2+-dependent K+ current.

The putative coupling between stably expressed recombinant h 5-HT1B or h 5-HT1D receptors and K+ channels which regulate excitability was investigated in C6 glioma cells. Outward K+ currents (IK) were examined in nontransfected C6 glioma cells and in cells expressing cloned h 5-HT1B or h 5-HT1D receptors using the patch-clamp technique in the whole-cell configuration. IK was elicited by a depolarizing step from a holding potential of -60 mV. In C6 glioma cells expressing either recombinant h 5-HT1B or h 5-HT1D receptors, sumatriptan similarly increased IK in a concentration-dependent manner (maximum increase 19.4+/-7.2%, n=8, P<0.05 and 25.1+/-3.9%, n=6, P<0.001, respectively) with EC50 values (geometric mean with 95% confidence intervals in parentheses) of 56.3 nM (7.9-140 nM) and 68.7 nM (16-120 nM), respectively. Sumatriptan failed to elicit increases in IK in non-transfected cells, confirming a specific involvement of the respective membrane h 5-HT1B and h 5-HT1D receptors in transfected C6 cells. In the presence of the mixed 5-HT1B/D receptor antagonist GR 127935 (0.1 microM), sumatriptan (1 microM) failed to significantly increase IK in C6 cells expressing h 5-HT1B receptors (-7.5+/-3.5%, P=NS, n=6), although a higher concentration of GR 127935 (1 microM) was required to significantly inhibit sumatriptan-evoked increases in IK in C6 cells expressing h 5-HT1D receptors (-1.8+/-3.5%, P=NS, n=6), confirming that sumatriptan-evoked responses were indeed mediated by h 5-HT1B and h 5-HT1D receptors, respectively. In C6 cells expressing either cloned h 5-HT1B or h 5-HT1D receptors, sumatriptan-induced increases in IK were prevented by the calcium chelator EGTA (5 mM) when included in the patch pipette (maximum increase 0.57+/-0.6%, n=3, P=NS and -2.8+/-1.6%, n=5, P=NS, respectively). In C6 cells expressing cloned h 5-HT1B receptors, sumatriptan (1 microM) similarly failed to significantly increase IK in the presence of dibutyryl cAMP (10 microM) or when a nominally Ca2+-free medium was included in the patch pipette (-19.4+/-5.1%, n=5 and -5.2+/-4.3%, n=5, respectively, P=NS in each case). In addition, the Ca2+-dependent K+ channel blockers iberiotoxin (0.1 microM) and tetraethylammonium (TEA, 1 mM) abolished sumatriptan-induced increases in IK (-0.5+/-1.0%, n=4 and -3.9+/-3.1%, n=4, respectively, P=NS in each case) in C6 cells expressing h 5-HT1B receptors, confirming the involvement of Ca2+-dependent K+ channels. In C6 cells expressing cloned h 5-HT1B receptors, sumatriptan (1 microM) similarly failed to significantly increase IK after 30-min incubation with thapsigargin (1 microM) or when heparin (2 mg/ml) was included in the patch pipette (1.1+/-0.4%, n=5 and 1.2+/-2.4%, n=5, respectively, P=NS). In conclusion, evidence is provided that both recombinant h 5-HT1B and h 5-HT1D receptors stably transfected in C6 glioma cells are positively coupled to Ca2+-dependent K+ channels, and the outward hyperpolarizing current mediated by these channels is dependent upon IP3 receptor-mediated intracellular Ca2+ release.

Animals

Pharmacological analysis of the haemodynamic effects of 5-HT1B/D receptor agonists in the normotensive rat.

1 The receptors involved in mediating the haemodynamic effects of three 5-HT1B/D receptor agonists were investigated in pentobarbitone anaesthetized rats (n = 6-17 per group). 2 Cumulative intravenous (i.v.) infusions of rizatriptan and sumatriptan (from 0.63 to 2500 microg kg(-1); each dose over 5 min) induced dose-dependent and marked hypotension (-42+/-6 and -34+/-4 mmHg at the highest dose, respectively; both P<0.05 vs vehicle: +5+/-3 mmHg) and bradycardia (-85+/-16 and -44+/-12 beats min(-1) at the highest dose, respectively; both P<0.05 vs vehicle: +16+/-6 beats min(-1)). Zolmitriptan evoked only moderate hypotension at the highest dose (-19+/-9 mmHg; P<0.05 vs vehicle). 3 A high dose of the 5-HT1B/D receptor antagonist, GR 127935 (0.63 mg kg(-1), i.v.), failed to antagonize the hypotension and bradycardia evoked by sumatriptan (-35+/-6 mmHg and -52+/-19 beats min(-1), respectively; both not significant vs sumatriptan in untreated rats), but moderately reduced the hypotension and bradycardia evoked by rizatriptan (-20+/-5 mmHg and -30+/-17 beats min(-1), respectively; both P<0.05 vs vehicle and vs rizatriptan in untreated rats). 4 The selective 5-HT1A receptor antagonist, WAY 100635 (0.16 and 0.63 mg kg(-1), i.v.), dose-dependently attenuated the haemodynamic responses evoked by rizatriptan and sumatriptan, which were almost abolished by the higher dose of WAY 100635 (-4+/-3 mmHg and -15+/-8 beats min(-1); both not significant vs vehicle and P<0.05 vs rizatriptan in untreated rats). A slight but statistically significant reduction in mean arterial pressure (MAP) persisted at the highest dose of sumatriptan (-13+/-4 mmHg following the higher dose of WAY 100635; P<0.05 vs vehicle). 5 In pithed rats with MAP normalized by angiotensin II, rizatriptan failed to induce hypotension or bradycardia (+5+/-4 mmHg and -6+/-16 beats min(-1), respectively; both NS vs vehicle and P<0.05 vs rizatriptan in untreated rats). Similarly, sumatriptan failed to induce bradycardia in pithed rats (+5+/-6 beats min(-1); not significant vs vehicle and P<0.05 vs sumatriptan in untreated rats), whereas a slight but statistically significant reduction in MAP, compared to controls, occurred at the highest dose (-9+/-9 mmHg; P<0.05 vs both vehicle and sumatriptan in untreated rats). 6 In bilaterally vagotomized and atropine-treated (1 mg kg(-1), i.v.) rats, the reductions in MAP and heart rate evoked by rizatriptan (-31+/-4 mmHg and -64+/-9 beats min(-1), respectively; both P<0.05 vs vehicle and not significant vs rizatriptan in controls) and sumatriptan (-47+/-8 mmHg and -56+/-10 beats min(-1), respectively; both P<0.05 vs vehicle and not significant vs sumatriptan in controls) were not statistically significantly different from those observed in controls. 7 In conclusion, the 5-HT1B/D receptor agonists, rizatriptan and sumatriptan, elicit hypotension and bradycardia in the normotensive anaesthetized rat predominantly via activation of central 5-HT1A receptors, and a consequent reduction in sympathetic outflow.

Animals

Late sodium current inhibition in human isolated cardiomyocytes by R 56865.

R 56865, a cytoprotective agent, has been shown to prevent myocardial ischemia and reperfusion injury by blockade of the late sodium current (I(Nal)). The effect of R 56865 on I(Nal) in isolated human atrial myocytes was investigated by using the whole-cell patch-clamp technique. I(Nal) recorded at the end of a 350-ms test pulse evoked from -100 to +20 mV was significantly increased by the addition of veratrine (100 microg/ml: quantity of charge corresponding to total I(Nal): 6.1 +/- 1.2 at baseline vs. 86.9 +/- 15; p < 0.001). Tetrodotoxin (TTX; 1 microM) fully prevented veratrine-induced increases in I(Nal). R 56865 (0.1-10 microM, n = 14) significantly and reversibly decreased veratrine-induced I(Nal) (42.01 +/- 8.6%, n = 6; p < 0.001 at 10 microM). Moreover, R 56865 reduced I(Nal) without significantly affecting kinetic parameters of inactivation [tau1 = 1.04 +/- 0.1 ms and tau2 = 119.3 +/- 2.3 ms (baseline) vs. tau1 = 1.57 +/- 0.5 ms and tau2 = 134.4 +/- 14 ms in the presence of 10 microM R 56865; NS]. The data indicate that R 56865 is a potent blocker of the late inducible component of sodium current in human cardiomyocytes.

Benzothiazoles

Effects of sumatriptan on coronary flow and left ventricular function in the isolated perfused guinea pig heart.

The effects of the 5-HT1B/D receptor agonist, sumatriptan, on coronary flow (CF) and left ventricular function in the isolated perfused guinea pig heart were investigated in the presence and absence of coronary endothelial dysfunction induced by nitric oxide (NO) synthase inhibition with Nomega-nitro-L-arginine methyl ester (L-NAME; 10 microM). Hearts were perfused under constant pressure (80 cm H2O) with oxygenated (95% O2/5% CO2) Krebs bicarbonate buffer (pH 7.4) and were driven at 4 Hz. In the absence of L-NAME (n=37), sumatriptan (0.1-32 microM) failed statistically significantly to affect left ventricular developed pressure (LVDP; maximal change, -8.1+/-1.8%; NS vs. vehicle), left ventricular end-diastolic pressure (LVEDP; +10.4+/-9.8%, NS), or CF (-12.2+/-1.4%; NS compared with vehicle). L-NAME per se significantly reduced coronary flow (CF; -26.3+/-2.9%; p < 0.001), thereby increasing coronary vascular tone, and decreased LVDP (-17.1+/-1.8%; p < 0.01). In hearts perfused with L-NAME (10 microM; n=61), sumatriptan (0.1-32 microM) still failed significantly to affect CF (maximal change, 0.2+/-5.7%, NS) but concentration-dependently increased LVEDP [maximal increase, 89.0+/-30.3%; p < 0.05; geometric mean EC50 3.6 (2.9-5.7) microM], which was not prevented by the 5-HT1B/D receptor antagonist, GR 127935 (0.1 microM; maximal increase, 51.8+/-11.1%; n=48, NS compared with sumatriptan alone). In conclusion, sumatriptan failed significantly to affect CF even in the presence of endothelial dysfunction. LV function similarly remained unaffected in normal hearts, but sumatriptan produced diastolic contracture in the presence of coronary endothelial dysfunction by a mechanism apparently not involving 5-HT1B/D receptors. Collectively the data indicate that 5-HT1B/D receptor expression or effector coupling or both are absent or low in the guinea pig heart, because no detectable functional responses were observed.

Animals

Contractile responses evoked by dihydroergotamine, naratriptan and sumatriptan in the canine isolated coronary artery.

Contractile responses evoked by the 5-HT IB/D receptor agonists, dihydroergotamine, naratriptan and sumatriptan, were compared in canine isolated coronary artery rings before and after endothelial dysfunction as obtained by inhibition of nitric oxide synthase with Nw-nitro-L-arginine methyl ester (L-NAME; 10 microM). The three agonists contracted rings in the potency order of dihydroergotamine (geometric mean pD2 value with 95% confidence limits in parentheses: 6.9 [5.3-7.9] and 7.0 [5.4-7.3] in the absence and presence of nitric oxide synthase (NOS) inhibition [I], respectively) > or = naratriptan (6.8 [5.7-7.3] and 6.4 [5.7-6.6]) > sumatriptan (4.8 [3.6-5.6] and 5.0 [3.6-5.6]) independently of the presence or absence of L-NAME. In absence of L-NAME, efficacy, as assessed by the mean maximal contractile response (Emax), tended to be greater, although not significantly, for sumatriptan and naratriptan compared to dihydroergotamine. L-NAME per se markedly increased developed tension (43.0 +/- 4.6 mN; n = 50) and potentiated maximal responses (0.6 +/- 0.2 and 10.7 +/- 2.4 mN for dihydroergotamine in the absence and presence of L-NAME respectively; 1.7 +/- 0.6 and 18.7 +/- 3.7 mN for naratriptan; 2.5 +/- 0.6 and 21.3 +/- 3.8 mN for sumatriptan; P < 0.01 in each case). Emax values of sumatriptan and naratriptan were greater than those produced by dihydroergotamine in the presence of L-NAME but remained lower than the sub-maximal contractile responses evoked by the thromboxane A2 analogue, U-46619 (ie, 32.4 +/- 5.2 mN in the absence of L-NAME; n = 50), or L-NAME per se. In conclusion, 5-HT IB/D receptor agonist efficacies in contracting coronary arteries are relatively low under basal conditions and are potentiated in the presence of a dysfunctional endothelium, whereas agonist potencies remain unaffected.

Animals

Evidence for partial agonist properties of daltroban (BM 13,505) at TP receptors in the anaesthetized open-chest rat.

We sought to determine whether the intrinsic pulmonary hypertensive activity of the purported thromboxane A2/prostanoid (TP) receptor antagonist, daltroban, was mediated by TP receptors, using the high efficacy TP receptor agonist, U-46619, and the silent TP receptor antagonist, SQ 29,548. In pentobarbitone-anesthetized, open-chest rats (n = 4-10 per group), non-cumulative injections of U-46619, dose-dependently increased mean pulmonary arterial pressure (MPAP) with an ED50 (geometric mean with 95% confidence limits in parentheses) of 1.4 (1.1-2.3) microg/kg i.v.. Daltroban increased MPAP in a bell-shaped manner, with an apparent ED50 [29 (21-35) microg/kg i.v.] being 21 fold less potent than that of U-46619. The maximal pulmonary hypertensive responses evoked by daltroban represented about half those induced by U-46619 (25.4+/-1.0 vs. 12.7+/-2 mmHg; P < 0.05 between groups). The TP receptor antagonist SQ 29,548 fully antagonized increases in MPAP evoked by equihypertensive doses of U-46619 (1.25 microg/kg) or daltroban (80 microg/kg). Further experiments were carried out to determine whether daltroban antagonized the pulmonary hypertensive responses evoked by the high efficacy agonist, U-46619, or by itself as receptor theory would predict for a partial agonist. Daltroban (10-2500 microg/kg) antagonized, although not fully, U-46619 (20 microg/kg)-evoked pulmonary hypertensive responses, since prominent intrinsic pulmonary hypertensive effects of daltroban were observed in the same range of doses. Furthermore, in contrast to U-46619 (1.25 microg/kg), daltroban (80 microg/kg) failed to evoke a second pulmonary hypertensive response following a previous injection, as would be expected for a partial agonist. Collectively, the results strongly suggest that daltroban behaves as a partial agonist at TP receptors in the pulmonary vascular bed of the rat in vivo.

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

Losartan prevents thromboxane A2/prostanoid (TP) receptor mediated increase in microvascular permeability in the rat.

We explored the putative inhibitory effects of losartan, a potent nonpeptide, AT1 receptor antagonist, against thromboxane A2 (TxA2)/prostanoid (TP) receptor-mediated transcapillary shift of plasma fluid and proteins. The effects of the TP receptor agonist U-46619 (1.25 or 10 microg/kg intravenously) on hematocrit (Hct), albumin extravasation (AE), and mean arterial pressure (MAP) were evaluated in anesthetized Sprague-Dawley rats. U-46619 dose-dependently increased Hct (by 4.5% +/- 0.7% and 7.5% +/- 1.0% at the low and high dose, respectively; both P < .05 v vehicle-infused group) and decreased MAP (by 7.9% +/- 4.1% and 16.8% +/- 5.7% at the low and high dose, respectively; P = NS and P < .05 v vehicle-infused group, respectively). In these experiments, using a quantitative Evans blue technique, we showed that U-46619 dose-dependently increased AE in kidney, lung, spleen, and testis (by approximately 31%, 172%, 52%, and 57% at the highest dose) but not in adipose tissue, brain, liver, mesentery, and skeletal muscle. In the heart, AE was maximally increased by the low dose of U-46619. The U-46619 (10 microg/kg)-induced increases in Hct and AE and decreases in MAP were blocked by pretreatment with the TP receptor antagonist SQ 29,548 (2.5 mg/kg intravenously + 2.5 mg/kg/h) and the high dose of losartan (40 mg/kg intravenously). The low dose of losartan (10 mg/kg intravenously) did not significantly alter the responses to U-46619 except for the AE, which was reduced in some but not all tissues. Furthermore, the U-46619-induced changes in Hct (+6.3% +/- 1.7%), MAP (-13.9% +/- 8.4%) and AE were not affected in rats pretreated with the converting-enzyme inhibitor enalapril. Thus, selective activation of TP receptors by U-46619 induced plasma fluid and protein exudation; these responses were specifically attenuated by the relatively high dose of losartan, suggesting that this compound acts as a TP receptor antagonist in this experimental model.

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

Analysis of the pulmonary hypertensive effects of the isoprostane derivative, 8-iso-PGF2alpha, in the rat.

1. We analysed the pulmonary hypertensive effects of the F2-isoprostane derivative, 8-iso-prostaglandin F2alpha (8-iso-PGF2alpha), in comparison with those of the high efficacy thromboxane A2/prostanoid (TP) receptor agonist, U-46619, in pentobarbitone-anaesthetized, open-chest rats (n=4-15 per group). 2. 8-iso-PGF2alpha produced dose-dependent increases in mean pulmonary arterial pressure, with an ED50 of 39.0 (31.4-50.6) microg kg(-1), i.v. (geometric mean with 95% confidence limits in parentheses) compared to 1.4 (1.1-2.3) microg kg(-1), i.v., for U-46619. The maximum responses evoked by U-46619 and 8-iso-PGF2alpha were not statistically significantly different (21.0+/-1.0 and 25.8+/-1.9 mmHg at 10 microg kg(-1) of U-46619 and 630 microg kg(-1) of 8-iso-PGF2alpha, respectively). 3. The TP receptor antagonist, SQ 29,548 (0.63 mg kg(-1), i.v. + 0.63 mg kg(-1) h(-1)) fully antagonised both U-46619 and 8-iso-PGF2alpha-induced pulmonary hypertensive responses. 4. Further experiments were carried out to determine whether 8-iso-PGF2alpha antagonized the pulmonary hypertensive responses evoked by U-46619, or those induced by itself, as would be predicted for a partial agonist. However, ED10 or ED25 doses of 8-iso-PGF2alpha (10 or 20 microg kg(-1), i.v.) failed to reduce the pulmonary hypertensive responses induced either by U-46619 or by itself. 5. The data suggest that in the pulmonary vascular bed of the rat, 8-iso-PGF2alpha acts as an agonist of high intrinsic activity at SQ 29,548-sensitive (probably TP) receptors.

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

Differential involvement of serotonin 2A/C and thromboxane A2/prostanoid receptors in high- vs. low-shear rate arterial thrombosis in rabbits.

Experiments performed in 226 pentobarbitone-anesthetized rabbits were designed to investigate the involvement of thromboxane/prostanoid and 5-hydroxytryptamine (5-HT)2A/C receptors during arterial thrombus formation in distinct low- and high-shear rate thrombosis models. Antithrombotic activities of the thromboxane/prostanoid receptor antagonist SQ 29,548 and two chemically distinct 5-HT2A/C receptor antagonists, ritanserin and ketanserin, were assessed first in low-shear rate (approximately 600 sec(-1)) arterial thrombosis, produced by insertion of a silk thread as thrombogenic substrate into the central section of an extracorporeal arteriovenous shunt established between the left carotid artery and the right jugular vein (n = 77), and second in high-shear rate (approximately 40,000 sec(-1)) arterial thrombosis, produced by critical stenosis and local endothelial injury of a carotid artery, characterized by cyclic flow reductions (CFRs) due to recurrent platelet aggregation and subsequent dislodgement of the thrombus (n = 149). Under low shear rate, SQ 29,548 (10-2500 microg/kg plus 10-2500 microg/kg/hr i.v.), but not ritanserin or ketanserin (both at 2500 microg/kg i.v.), dose-dependently inhibited thrombus formation. In contrast, under high shear rate, SQ 29,548 (10-160 microg/kg plus 10-160 microg/kg/hr i.v.) and both ritanserin and ketanserin (both at 10-2500 microg/kg i.v.) dose-dependently reduced CFR frequency, with ID50 values of 35 microg/kg (95% confidence limits, 24-58 microg/kg), 77 microg/kg (95% confidence limits, 40-132 microg/kg) and 89 microg/kg (95% confidence limits, 36-285 microg/kg) i.v., respectively. Furthermore, local infusion of the stable thromboxane A2 analog U-46619 (0.63 microg/kg/min) or 5-HT (20.8 microg/kg/min) proximal to the site of injury and stenosis in rabbits pretreated with either SQ 29,548 (40 microg/kg plus 40 microg/kg/hr i.v.) or ritanserin (160 microg/kg i.v.), respectively, restored CFR frequency to vehicle group levels in animals whose CFR frequency was previously reduced. The inhibitory activity of ketanserin and ritanserin on CFRs could not be attributed to 5-HT1B/D or alpha-1 adrenoceptor antagonist properties or to any hypotensive activity. These results provide firm evidence that thromboxane/prostanoid receptors are involved in arterial thrombosis in rabbits independently of the shear rate, whereas 5-HT2A/C receptors play a major role only in high-shear rate thrombus formation.

Animals

Nitric oxide regulation of TP receptor-mediated pulmonary vasoconstriction in the anesthetized, open-chest rat.

We investigated the influence of endothelial nitric oxide (NO) on the pulmonary pressor activity of the stable thromboxane A2 analogue, U-46619 (9,11-dideoxy-9 alpha-(methanoepoxy) prostaglandin F2 alpha), in anesthetized open-chest Sprague-Dawley rats (n = 6-9 per group). NO synthase inhibition, as obtained by N omega-nitro-L-arginine methyl ester (L-NAME; 0.63 mg/kg i.v. + 20 mg/kg/h), induced sustained systemic hypertension (mean maximal increase, delta, in mean systemic arterial pressure = 38 +/- 6 mmHg; P < 0.05 vs. vehicle) associated with slight bradycardia (delta heart rate = -42 +/- 8 beats/min; P < 0.05 vs. vehicle) and delayed- (> 30 min) onset pulmonary hypertension (delta mean pulmonary arterial pressure = 10 +/- 3.4 mmHg; P < 0.05 vs. vehicle). In separate experiments, when mean systemic arterial pressure was maximally increased by L-NAME, the difference between mean pulmonary arterial pressure and mean left atrial pressure was greater in L-NAME-treated rats (41 +/- 16% compared to 10 +/- 1% in the vehicle group; P < 0.05), strongly suggesting that spontaneously released NO modulated pulmonary vascular resistance. L-Arginine at a dose which reduced by approximately 50% the L-NAME-associated systemic hypertension did not alter the late rise in mean pulmonary arterial pressure (delta mean pulmonary arterial pressure = 12 +/- 4 mmHg; P = NS vs. L-NAME alone). U-46619, elicited rapid, dose-dependent, and transient increases in mean pulmonary arterial pressure (delta = 8.8 +/- 2.0 and 21.2 +/- 1.9 mmHg at 1.25 and 20 micrograms/kg i.v. respectively; both P < 0.01 vs. vehicle). U-46619 (1.25 micrograms/kg)-induced increases in mean pulmonary arterial pressure were fully antagonized by the thromboxane A2/prostanoid (TP) receptor antagonist, SQ 29,548 ([1S-[1 alpha,2 alpha(5Z),3 alpha,4 alpha]]-7-[3-[[2-[(phenyl-amino)-carbonyl] hydrazino] methyl]-7-oxabicyclo [2.2.1]hept-2-yl]-5-heptenoic acid) (0.63 mg/kg i.v. + 0.63 mg/kg/h). Injection of U-46619 (1.25 micrograms/kg), 15 min after L-NAME administration, evoked a 24.7 +/- 0.9 mmHg increase in mean pulmonary arterial pressure (P < 0.01 vs. U-46619 in control rats), which was (i) greater than that produced by a 16-fold higher dose of U-46619 alone, (ii) fully antagonized by SQ 29,548, (iii) significantly attenuated during coadministration of L-NAME and L-arginine (10 mg/kg i.v. + 160 mg/kg/h; delta mean pulmonary arterial pressure = 14.6 +/- 4.3 mmHg; P < 0.05 vs. U-46619 following L-NAME alone and P = NS vs. U-46619 in control rats). These results indicate that, under normal circumstances, pulmonary vasomotor tone is regulated by spontaneously released NO. Moreover, pulmonary vascular NO attenuates TP receptor-mediated pressor responses, strongly suggesting that in addition to mediating pulmonary vasoconstriction, TP receptor activation also concomitantly releases NO within the pulmonary vasculature.

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

Serotonin dimers: application of the bivalent ligand approach to the design of new potent and selective 5-HT(1B/1D) agonists.

A series of serotonin dimers of formula 4 in which two serotonin moeities are linked together through their 5-hydroxyl residue has been prepared and evaluated as 5-HT(1B/1D) receptor agonists. Binding experiments at cloned human 5-HT(1B), 5-HT(1D), and 5-HT(1A) receptors show that all of these dimers are very potent ligands at 5-HT(1B/1D) receptors with increased binding selectivity vs the 5-HT(1A) receptor when compared to serotonin. Studies of inhibition of the forskolin-stimulated c-AMP formation mediated by the human 5-HT(1B) receptor (formerly the 5-HT(1Dbeta) receptor) demonstrate that all of these serotonin dimers behave as full agonists. Among them, the piperazide derivatives of bis-serotonin, 4g,j, were also identified as very potent agonists in contracting the New Zealand white rabbit saphenous vein (pD2 = 7.6 in each case compared to 5.8 for sumatriptan). Results analysis supports the hypothesis that the important increase in potency of the serotonin dimers can be attributed to the presence of two serotonin pharmacophores in the same molecule, while the enhanced selectivity for 5-HT(1B/1D) receptor subtypes may be due to the position of the spacer attachment to serotonin.

Animals

HOE 694 affords protection versus veratrine contractures in rat atria by Na+ channel blockade.

We examined the effects of the benzoylguanidine derivative HOE 694, an inhibitor of Na(+)-H+ exchange, against veratrine-induced diastolic contractures and action potentials recorded in rat isolated left atria. Concentration-dependent protective effects against veratrine-contractures, in the absence of negative inotropic responses, were observed with HOE 694 (IC50 = 20.1(7.6-27.0) microM, n = 24) and with the chemically related amiloride derivatives DMA, EIPA, HMA and MIA, but not with amiloride itself. Concomitant Na(+)-H+ exchange blockade by a high concentration of amiloride (100 microM) failed to significantly modify the protective effects of HOE 694. HOE 694 decreased Vmax significantly at 10 microM (166.7 +/- 21 vs 154.7 +/- 20 V/s, P < 0.05, n = 6) without any effect on resting potential or action potential duration. High concentrations (100 microM) of HOE 694 further decreased Vmax and increased action potential duration. The protective effects of HOE 694 were compared with three of the class 1 antiarrhythmic agents, quinidine, lidocaine and flecainide against veratrine contracture. These Na+ channel blockers exerted protective effects in the same range of concentrations as HOE 694. Our findings demonstrate that HOE 694 prevents veratrine contractures at concentrations which presumably affect Na(+)-H+ exchange. However, the mechanism by which HOE 694 affords protection is apparently mediated by class 1-type Na+ channel blockade.

Action Potentials

Influence of the endothelium and nitric oxide on the contractile responses evoked by 5-HT1D receptor agonists in the rabbit isolated saphenous vein.

1. We investigated whether contractile responses evoked by 5-HT1D receptor agonists were influenced by the endothelium (E) and nitric oxide (NO) in the rabbit isolated saphenous vein. 2. Saphenous vein rings were set up for isometric tension recording in oxygenated (5% CO2 in O2) Krebs solution (pH 7.4) containing (10(-6) M): idazoxan (1), indomethacin (10), ketanserin (0.1), prazosin (10), and N(omega) nitro-L-arginine methyl ester (L-NAME; 0 or 10), a NO synthase inhibitor. In some experiments, the E was removed mechanically. 3. 5-Hydroxytryptamine (5-HT), 5-carboxamidotryptamine (5-CT) and sumatriptan (Sum) contracted rabbit saphenous vein rings in the potency order (pD2 range) of 5-CT(7.2-7.6) > 5-HT(6.2-7.1) > Sum(5.0-5.8), irrespective of the presence or absence of the E or L-NAME (n = 9-37 per group) indicating that the potencies of the 3 agonists were not significantly affected by either the E or L-NAME. 4. Efficacy, as assessed by the maximal contractile response (Emax), was significantly greater for Sum compared to 5-HT and 5-CT with intact E irrespective of the presence (77 +/- 3, 62 +/- 3, and 50 +/- 3 mN respectively; P < 0.05 Sum versus 5-HT and 5-CT) or absence (26 +/- 3, 14 +/- 4, and 13 +/- 2 mN respectively; P < 0.05 Sum versus 5-HT and 5-CT) of L-NAME. In E-denuded rings, the Emax values were all higher than in E-intact rings and did not differ between the 3 agonists (36 +/- 4, 37 +/- 4, and 36 +/- 5 mN for Sum, 5-HT and 5-CT, respectively; P > 0.5 between the 3 agonists) indicating that an endothelium-derived relaxing factor (EDRF) counteracted the constrictor activities of the 5-HT1D receptor agonists and raising the possibility that a component of the Sum-induced contractile responses was E-dependent. Without E, the presence of L-NAME did not significantly affect the Emax values of the 3 agonists (41 +/- 4, 41 +/- 5, and 41 +/- 4 mN for Sum, 5-HT, and 5-CT respectively; P > 0.5 between the 3 agonists) indicating that the NO synthase inhibited was of endothelial origin. 5. Potentiation of the Emax of the 3 agonists by L-NAME was significantly albeit partially reversed by L-arginine (10(-2) M) indicating that NO synthase was indeed inhibited by L-NAME. Furthermore, in the presence of E, potentiation of Emax of the 3 agonists by L-NAME was mimicked by methylene blue (10(-5) M) providing further evidence that NO was involved in the attenuation by the E of the contractile responses induced by the 5-HT1D receptor agonists. 6. In the presence of an intact E and L-NAME, contractile responses elicited by 5-HT and Sum were competitively antagonized by the non-selective 5-HT1D receptor antagonist, methiothepin (pA2: 9.4 and 8.8; slopes: 0.66 and 0.81, respectively) and the highly selective 5-HT1D receptor antagonist, GR 127935 (pA2: 9.0 in each case; slopes: 1.04 and 0.93, respectively) indicating that contractions were mediated through activation of a single population of 5-HT1D receptors. Contractile responses elicited by 5-CT were also competitively antagonized by methiothepin and GR 127935, but non parallel rightward shifts of the concentration-response curves were observed suggestive of the involvement of additional but as yet unidentified receptors in mediating the 5-CT-induced responses. 7. In conclusion, the efficacy, but not the potency, of 5-HT, 5-CT and Sum in evoking 5-HT1D receptor-mediated contractile responses are subject to a substantial inhibitory influence of the E and of an EDRF (probably NO).

Animals

Synthesis and serotonergic activity of arylpiperazide derivatives of serotonin: potent agonists for 5-HT1D receptors.

A series of new arylpiperazide derivatives of serotonin has been prepared and evaluated as 5-HT1D receptor agonists. Binding experiments at cloned human 5-HT1D alpha, 5-HT1D beta, and 5-HT1A receptors show that all the compounds are very potent and selective ligands for 5-HT1D receptor subtypes. Functional activity studies (contraction of the New Zealand white rabbit saphenous vein) demonstrate that most of the derivatives behave as full agonists. Among them, the aryl sulfonamide derivative 5q (pD2 = 8.33 compare to 5.75 for sumatriptan) was also identified as a very potent agonist in inhibiting the forskolin-mediated cyclase coupled to 5-HT1D beta receptors (EC50 = 0.52nM).

Animals

Increased resistance to ischaemic injury in the isolated perfused atherosclerotic heart of the cholesterol-fed rabbit.

OBJECTIVE: In isolated, Langendorff-perfused hearts in the early stages of atherosclerosis from rabbits exposed to hypercholesterolaemia induced by 2% cholesterol feeding for 6 weeks (n = 23), and age-matched normal controls fed standard chow (n = 12), we studied baseline cardiac haemodynamics and the susceptibility of these hearts to 30 min global, normothermic ischaemia and 90 min reperfusion. METHODS: Spontaneously beating hearts were perfused with oxygenated Krebs buffer (pH 7.4) at constant pressure, and were enclosed in a thermostated water jacket at 37 degrees C. Isovolumetric left ventricular (LV) pressure was measured by means of a balloon placed in the LV cavity. An electromagnetic flow probe placed around the perfusion cannula determined coronary flow. At the end of an initial 30 min stabilisation period, several baseline cardiodynamic variables were measured, just before subjecting the hearts to 30 min ischaemia. Recovery of mechanical function and lactate dehydrogenase (LDH) and creatine phosphokinase (CPK) activities in the coronary effluent were recorded throughout 90 min reperfusion. RESULTS: Baseline spontaneous heart rate, LV developed pressure (LVDP), coronary flow and pressure-rate index (PRI) were all significantly lower in hearts from cholesterol-fed rabbits (CFR) than in age-matched controls (P < 0.01). Although large differences in several baseline haemodynamic parameters in hearts from CFR and controls were evident before ischaemia, no statistically significant differences were discernible in these parameters between the two groups from 60 min reperfusion onwards (p = NS). Furthermore, CPK and, to a lesser extent, LDH release during reperfusion was attenuated in hearts from CFR compared to controls. CONCLUSIONS: Hearts from CFR exhibited markedly improved recovery upon reperfusion compared to age-matched controls, strongly suggesting increased myocardial resistance to ischaemic injury.

Animals

Attenuation by R 56865, a novel cytoprotective drug, of regional myocardial ischemia- and reperfusion-induced electrocardiographic disturbances in anesthetized rabbits.

We investigated the antiischemic and antiarrhythmic effects of R 56865 in pentobarbital-anesthetized, open-chest rabbits subjected to 10 min regional myocardial ischemia and 20 min reperfusion, using two experimental protocols. In the first, R 56865 (0.02-0.16 mg/kg) was administered as a bolus intravenous (i.v.) injection 5 min before ligation of a branch of the left circumflex coronary artery (LCX); in the second, the drug, at the highest dose studied (0.16 mg/kg), was injected by the same route during ischemia, 5 min after coronary artery ligation. Ischemia-induced ST segment increase and reperfusion-induced ventricular arrhythmias were determined in lead II of the four-limb ECG. Mean carotid arterial pressure and heart rate (HR) were also measured. When given before ischemia, R 56865 dose-dependently prevented ischemia-induced ST segment increase and reperfusion arrhythmias. The antiischemic and antiarrhythmic dose-response curves were superimposable, suggesting a common mechanism of action. R 56865 (0.16 mg/kg) fully attenuated ischemia-induced ST segment shift and ventricular arrhythmias on reperfusion. These protective effects were not associated with systemic hypotension or bradycardia. When high-dose R 56865 (0.16 mg/kg) was given during ischemia, ST segment shift and ventricular arrhythmias on reperfusion were not attenuated. The results strongly suggest that R 56865 affords protection against the deleterious effects of moderate ischemia by mechanisms not associated with an indirect reduction of cardiac work. R 56865 may elicit cardioprotection directly in ischemic tissue.

Analysis of Variance

Ketanserin inhibits the transient outward current in rabbit ventricular myocytes.

The effects of ketanserin on the calcium-independent component of the transient outward potassium current (Ito) was investigated in isolated rabbit ventricular myocytes using the whole-cell patch-clamp technique. Ketanserin concentration-dependently (0.1-100 microM) reduced Ito (IC50 2.25 +/- 2.2 microM; Hill coefficient, nH 0.91), and decreased both the fast and slow Ito inactivation time constants so that the decay of the peak outward current was significantly accelerated. Our results indicate that, in addition to its antagonist activity on 5HT2A/C receptors, ketanserin reduces the calcium-independent component of Ito. Blockade of Ito could explain the proarrhythmic properties of ketanserin in vivo.

Animals