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Differential ergoline and ergopeptine binding to 5-hydroxytryptamine2A receptors: ergolines require an aromatic residue at position 340 for high affinity binding.

In this paper we show that a highly conserved aromatic residue, phenylalanine at the 340-position, is essential for ergoline binding to 5-hydroxytryptamine2A receptors. We hypothesized that F340 was essential for a specific aromatic-aromatic interaction (e.g., pi-pi or hydrophobic) between the phenyl moiety of F340 and the aromatic ring of the ergoline nucleus. To test this hypothesis, eight point mutations of adjacent (F340 and F339) and nonadjacent (F125) phenylanaines were made, using conservative (phenylalanine to tyrosine) and nonconservative (phenylalanine to leucine, alanine, or serine) substitutions. The binding affinities of all of the tested simple ergolines were greatly reduced by specific mutations of F340 in which aromatic-aromatic interactions (e.g., F340A and F340L) were abolished, but they were unaffected when the replacement residue was aromatic (e.g., F340Y). In contrast, the binding affinities of four ergopeptines (bromocryptine, ergocryptine, ergocornine, and ergotamine) were relatively unaffected by the F340L substitution. Neither ergoline nor ergopeptine affinities were consistently altered by F339 mutations. These results support the notion that aromatic-aromatic interactions (either pi-pi of hydrophobic) with F340 are essential for the binding of simple ergolines but not ergopeptines to 5-hydroxytryptamine2A receptors. Our findings support models of ergoline and ergopeptine binding to serotonin receptors that suggest that the nature of the substituent at the 8-position of the ergoline nucleus may give rise to different modes of binding for the two classes of agents, particularly with respect to the phenyl ring of F340.

Animals↗

Stimulation of pre- and postsynaptic dopamine receptors by an ergoline and by partial ergoline.

The capacity of the ergoline, pergolide, and of the partial ergoline, LY 141865, to stimulate pre- and postsynaptic dopamine (DA) receptors was investigated. Binding studies have revealed that pergolide has a high affinity, while the partial ergoline, LY 141865, has a low affinity for the postsynaptic striatal DA receptors in vitro. Two behavioral animal models were used to assess the DA agonist potencies of these compounds for the postsynaptic DA receptors in vivo. Pergolide induced turning behavior in rats with 6-hydroxydopamine (6-OH-DA) lesions, and relief of tremor in monkeys with ventromedial tegmental lesions, at a lower dose and for a longer duration than LY 141865. An in vivo and an in vitro biochemical test was use to measure the ability of these compounds to stimulate presynaptic DA receptors. In the in vitro test, pergolide and LY 141865 were found to have low inhibitory activity for synaptosomal tyrosine hydroxylase, while in the in vivo test, both drugs were effective even in low doses in reversing the gamma-butyrolactone elicited increased accumulation of striatal DOPA. These results suggest that pergolide has a high affinity for pre- and postsynaptic DA receptors, while its partial ergoline analogue has a high affinity for the presynaptic, but not for the postsynaptic DA receptors. The data also suggest that dopamine synthesis in vitro and in vivo may be regulated by different presynaptic DA receptors.

Animals↗

Ergoline and non-ergoline derivatives in the treatment of Parkinson's disease.

There are a large variety of dopamine agonists available. Especially de novo patients are treated with dopamine agonists to avoid dyskinesia. Dopamine agonists can be subdivided into ergoline and non-ergoline derivatives. This distinction raises the question whether there are differences in the effects to treat symptoms, not only in the side effects between the individual dopamine agonists but also between these two groups. Pergolide is now considered a second line drug because of its particularly high tendency towards valvular heart disease. Some authors claim that all ergoline-derivatives may cause this problem, while own results do not necessarily support this view. We recommend performing echocardiography on those patients being treated with an ergot-derivative. New data support the view that all dopaminergic drugs may cause somnolence and that there is no preference for non-ergots. It may be that the number of gamblers is slightly higher among patients treated with pramipexole than in others. Dopamine agonists with a high affinity to D3 receptors have a good anti-anhedonic potency. In cell culture all dopamine agonists studied so far show neuroprotective properties in cell culture. The introduction of a slow-release formulation for ropinirole and the rotigotine and lisuride patches have opened new ways of continuous dopamine receptor stimulation. Taken together, dopamine agonists show individual properties and there are differences between ergot and non-ergot derivatives.

Dopamine Agonists↗

Studies related to the metabolism of ergoline drugs. Structure determination and spectroscopic properties of 1,6-dimethyl-12-hydroxy-10alpha-ergoline derivatives.

The structure of some 1,6-dimethyl-12-hydroxy-10alpha-ergoline derivatives, related to an active metabolite of metergoline, is established by using physical methods (mass spectrometry, electronic and fluorescence spectroscopy, and 1H N.M.R. spectroscopy). The 13C N.M.R. spectrum of compound (II), 1,6-dimethyl-8beta-(acetylaminomethyl)-12-hydroxy-10alpha-ergoline, is analyzed.

Chemical Phenomena↗

Amesergide and structurally related nor-D-ergolines: 5HT2 receptor interactions in the rat.

A series of tricyclic (nor-D) partial ergolines were synthesized via a highly convergent enantiospecific strategy, ultimately arising from a racemic tricyclic ketone. Michael addition to an acrylamide, followed by reductive methylation, afforded the key intermediate. Selective deprotection and oxidation provided the tricyclic ergoline. Vascular 5HT2 receptor interactions for the partial ergolines were dramatically reduced compared to the parent ergoline, amesergide, as determined in vivo by activation of a pressor response or blockade of 5HT-induced pressor responses in pithed rats. The desisopropyl tricyclic ergolines possessed some modest pressor activity that was unlikely to be related to 5HT2 receptor activation since these compounds did not inhibit the pressor response to serotonin. In contrast, the isopropyl tricyclic ergolines exhibited no agonist activity, but inhibited the pressor response to serotonin at 1 mg/kg i.v. The ergoline amesergide inhibited the pressor response to serotonin in doses of 0.01-0.1 mg/kg i.v. The homochiral isopropyl tricyclic ergoline was more potent as a 5HT2 receptor antagonist than the epimeric (unnatural stereochemistry) analogue. Thus, the isopropyl moiety on the indole nitrogen is important for vascular 5HT2 receptor affinity in the rat. Most importantly, these data suggest that conformational rigidity of the ergoline D-ring is required for optimal 5HT2 receptor interactions in the rat.

Animals↗

Species differences in the pharmacology of the 5-hydroxytryptamine2 receptor: structurally specific differentiation by ergolines and tryptamines.

Species differences in the recognition of a series of ergolines by the 5-hydroxytryptamine2 (5-HT2, serotonin2) receptor were investigated in four species, the rat, pig, squirrel monkey and human. In pig frontal cortical membranes the initial studies showed that the ergolines gave shallow displacement curves against [3H]ketanserin binding. The component of [3H]ketanserin binding having low affinity for the ergolines was determined to be the result of [3H]ketanserin binding to alpha-1 adrenergic receptors. Thus, in all subsequent assays prazosin was used to mask [3H]ketanserin binding to alpha-1 adrenergic receptors. Examination of a series of ergolines revealed a distinct pattern in the species selectivity. Compounds that were unsubstituted at the N1 position of the ergoline nucleus showed higher affinity for the pig, squirrel monkey and human 5-HT2 receptors than for the rat. Conversely, compounds that had an N1-isopropyl substituent showed higher affinity for the rat receptor compared to the pig, squirrel monkey and human 5-HT2 receptors. For example, LY53857, a widely used 5-HT2 antagonist, has an isopropyl substituent at position N1 of the ergoline nucleus and exhibited a 4- to 5-fold higher affinity for the rat 5-HT2 receptor, whereas its N1-unsubstituted homologue, LY86057, had more than 10-fold higher affinity for the pig, squirrel monkey and human 5-HT2 receptors. Similar results were seen with three additional ergoline pairs, each having different substituents at the C8 position compared to LY53857. Even an N1-substitution on LY53857 as small as a methyl group, LY108742, resulted in the compound having higher affinity for the rat 5-HT2 receptor compared to the other species.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Inhibition of serotonin-amplified human platelet aggregation by ketanserin, ritanserin, and the ergoline 5HT2 receptor antagonists-LY53857, sergolexole, and LY237733.

Human platelets are known to possess 5HT2 receptors which, when activated, amplify the aggregation response produced by other aggregating agents. Several 5HT2 receptor antagonists, including ketanserin and ritanserin, are known to antagonize serotonin-mediated aggregation of human platelets. In the present study, we document the ability of three ergoline 5HT2 receptor antagonists, LY53857, sergolexole, and LY237733, to antagonize the serotonergic component of the human platelet aggregation response. Potencies of the ergoline esters (LY53857 and sergolexole) and the ergoline amide (LY237733) to inhibit serotonin-amplified platelet aggregation responses were similar to the potencies of ketanserin and ritanserin under the conditions of our study. Furthermore, all five 5HT2 receptor antagonists were capable of fully inhibiting the serotonergic component of the platelet aggregation response. In contrast to these potent ergoline esters and amides, 1-isopropyl dihydrolysergic acid (up to 10(-5)M), a putative metabolite of the ergoline esters, was ineffective under these in vitro conditions. These data are consistent with the high potency of these ergolines as antagonists of 5HT2 receptors and further support the involvement of 5HT2 receptors on human platelets in the amplifying response to serotonin.

Adult↗

Elimination of ergoline alkaloids following treatment of Ipomoea asarifolia (Convolvulaceae) with fungicides.

Ergoline alkaloids are constituents of Clavicipitaceous fungi living on Poaceae plants. Ergoline alkaloids as well as volatile oil are also present in Ipomoea asarifolia Roem. & Schult (Convolvulaceae). Treatment of this plant with two fungicides (Folicur, Pronto Plus) eliminates the ergoline alkaloids but not the volatile oil. Elimination of ergoline alkaloids occurs concomitantly with loss of fungal hyphae associated with secretory glands on the upper leaf surface of the Ipomoea plant. Our observations suggest that accumulation of ergoline alkaloids in the Convolvulaceae may depend on the presence of a plant-associated fungus.

Ergolines↗

N(1)-substituted ergolines and tryptamines show species differences for the agonist-labeled 5-HT2 receptor.

Previous studies indicated that selected ergolines and tryptamines showed species differences for affinity to the antagonist-labeled 5-HT2 receptor. The present study examined these same compounds for affinity at the agonist-labeled 5-HT2 receptor in rat and squirrel monkey cortical homogenates using [125I]DOI ([125I]1-(2,5-dimethoxy-4-iodophenyl)-2-aminopropane). As seen with the antagonist-labeled 5-HT2 receptor, N(1) alkyl substitution of either the ergolines or tryptamines resulted in a slight increase or no effect on their affinity for the agonist-labeled rat 5-HT2 receptor. In contrast, these same N(1) substitutions resulted in significant decreases in affinity for the agonist-labeled monkey 5-HT2 receptor. It was also noted that N(1)-unsubstituted ergolines and tryptamines (such as ergonovine, LY86057, LY193525 and 5-methoxytryptamine) tended to have higher affinity for the monkey versus the rat agonist-labeled receptor. However, the N(1) alkyl-substituted ergolines and tryptamines (such as mesulergine, LY53857, amesergide, N(1)-isopropyltryptamine and N(1)-isopropyl-5-methoxytryptamine) showed significantly lower affinity for the monkey versus the rat 5-HT2 receptor. These data suggest that, at least in relation to the N(1) position, ergolines and tryptamines bind in a similar orientation. These results are also discussed in terms of what amino acid differences between species may account for this structure-activity relationship.

Amphetamines↗

Activity of 6-methyl-8-substituted ergolines against the 7,12-dimethylbenz(a)anthracene-induced mammary carcinoma.

The ability of a series of 8-beta-carboxamido ergolines, 8-formamido ergolines, and 8-methyl ergolines to cause regressions of established dimethylbenz[a]anthracene-induced mammary carcinomas was compared to some ergot alkaloids. Although most of the ergoline derivatives depressed serum prolactin concentrations in rats, only a few had pronounced effects against the dimethylbenz[a]anthracene-induced mammary carcinoma in rats. Some derivatives from each of the three groups of substituted ergolines gave comparable activities against the dimethylbenz[a]anthracene-induced mammary carcinoma.

Animals↗

Studies with new ergoline derivatives on the effects of central and peripheral 5-hydroxytryptamine receptors.

The antiserotonin properties of a series of new ergoline derivatives were investigated in several pharmacological test systems which have been proposed for the characterization of putative antagonists at central and peripheral 5-HT2 receptors. In radioligand binding studies with [3H]ketanserin among the new ergolines only 1-methyl-2-brom-9,10-dihydrolysergic acid-bis(beta-acetoxyethyl)-amide (AWD 52-336) showed high affinity at cortical 5-HT2 receptors (Ki-5.4 nmol/l). In 5-HT-amplified ADP-induced aggregation of human platelets 6-nor-6-propyl-9,10-dihydro ergometrine (AWD 52-227) and 9,10-dihydrolysergic acid-di-ethanol-amide (AWD 52-302) were potent inhibitors of 5-HT response. Comparison of this two in vitro tests demonstrated a significant correlation (r = 0.636; p < 0.05) between the ability of the ergolines to block the 5-HT aggregation mediated by platelet 5-HT2 receptors and their affinity to [3H]ketanserin-labelled binding sites in rat cortical membranes. In the used in vivo tests (tryptamine tremor, 5-HTP-induced head twitches) 1-methyl-9,10-dihydrolysergic acid-bis(beta-acetoxyethyl)-amide (AWD 52-83) and AWD 52-336 were found to antagonize the behavioural responses with comparatively moderate potency. The results suggest, therefore, that AWD 52-83 and AWD 52-336 may be both central and peripheral acting 5-HT2 antagonists, whereas AWD 52-227 and AWD 52-302 seem to be potent blockers at peripheral 5-HT2 receptors. Furthermore, the obtained results allow to reveal structure-activity relationships of ergolines. Substitution in position 1 in the tetracyclic ergoline ring system may be important with respect to the efficacy at central 5-HT2 receptors.(ABSTRACT TRUNCATED AT 250 WORDS)

5-Hydroxytryptophan↗

Agonism at 5-HT2B receptors is not a class effect of the ergolines.

Restrictive cardiac valvulopathies observed in Parkinson patients treated with the ergoline dopamine agonist pergolide have recently been associated with the agonist efficacy of the drug at 5-hydroxytryptamine2B (5-HT2B) receptors. To evaluate whether agonism at 5-HT2B receptors is a phenomenon of the class of the ergolines, we studied 5-HT2B receptor-mediated relaxation in porcine pulmonary arteries to five ergolines which are used as antiparkinsonian drugs. Pergolide and cabergoline were potent full agonists in this tissue (pEC50 8.42 and 8.72). Bromocriptine acted as a partial agonist (pEC50 6.86). Lisuride and terguride, however, failed to relax the arteries but potently antagonized 5-HT-induced relaxation (pKB 10.32 and 8.49). Thus, agonism at 5-HT2B receptors seems not to be a class effect of the ergolines.

Animals↗

Pleuropulmonary changes induced by ergoline drugs.

Classic ergolines, such as bromocriptine, methysergide and ergotamine, can induce chronic pleuropneumonitis. We present the cases of eight patients who developed similar changes whilst on other ergolines. In this retrospective case study spanning 1985-1995, clinical data, radiological material, pulmonary function, bronchoalveolar lavage and histopathology were reviewed. Earlier literature on ergoline-induced pleuropulmonary changes was reviewed. Eight middle-aged to elderly individuals of both sexes developed pleuropulmonary changes during long-term therapy with regular dosages of nicergoline (n = 4), dihydroergocristine (n = 3), or dihydroergotamine (n = 1). Bibasilar pleural thickening with or without pleural effusion was present on chest radiographs and computed tomographic (CT) scans in six cases. Increased erythrocyte sedimentation rate was seen in most. Pure interstitial pneumonitis developed in two patients on dihydroergocristine and was reversible in each. Bronchoalveolar lavage was performed in four cases and was abnormal in all, but demonstrated no consistent pattern. Most patients exhibited lung restriction. The outcome was favourable showing slow improvement in all cases following discontinuation of the ergoline. Slight residual pleural thickening was seen in five out of the six cases with pleural involvement. Nicergoline and dihydroergotamine can induce a syndrome of chronic pleural thickening/effusion that slowly improves after drug withdrawal. Dihydroergocristine can induce reversible interstitial pneumonitis.

Aged↗

Synthesis and structure-activity relationships of new (5R,8S,10R)-ergoline derivatives with antihypertensive or dopaminergic activity.

A series of new (5R,8S,10R)-ergoline derivatives was synthesized, and their antihypertensive and dopaminergic activities were evaluated in conscious spontaneously hypertensive rats and in rats with unilateral 6-hydroxydopamine-induced lesions of the substantia nigra, respectively. (5R,8S,10R)-6-Methyl-8- ergolinemethanols, prepared from the corresponding ergolinecarboxylates, were converted to the tosylates, which were treated with various five-membered heterocycles containing nitrogen atoms to afford the new ergolines. (5R,8S,10R)-8-(1-Imidazolylmethyl)-6-methylergoline (5a, BAM-2101) and (5R,8S,10R)-2-bromo-6-methyl-8-(1,2,4-triazol-1-ylmethyl) ergoline (7c, BAM-2202) exhibited potent antihypertensive activities. The maximum falls of systolic blood pressure after oral administration of 5a and 7c at 3 mg/kg were 95 and 132 mmHg, respectively, while those of cianergoline, bromocriptine mesylate, hydralazine, and nifedipine at the same dose were 40, 37, 47, and 49 mmHg, respectively. The durations of significant antihypertensive effects of these compounds except nifedipine were more than 7 h. None of the ergolines exhibited potent dopaminergic activity. Structure-activity relationships are discussed.

Animals↗

5-Hydroxytryptamine2 receptor antagonist activity of the acid metabolite (1-isopropyl dihydrolysergic acid) of the ergoline ester, sergolexole (LY281067).

The ergoline esters, LY53857 [6-methyl-1-(1-methylethyl)ergoline-8-carboxylic acid 2-hydroxy-1-methylpropylester (Z)-2-butenedioate] and sergolexole (LY281067) ([trans-(8 beta)]6-methyl-1-[1-methylethyl]ergoline-8-carboxylic acid, 4-methoxycyclohexyl ester (maleate salt] are potent 5-hydroxytryptamine2 (5-HT2) receptor antagonists in vivo and in vitro. Ester hydrolysis of either compound results in the formation of 1-isopropyl dihydrolysergic acid which in rats is a major metabolite of these ergoline esters. The present study details the pharmacological activity of 1-isopropyl dihydrolysergic acid and examines its relative contribution to the 5-HT2 receptor antagonism seen after sergolexole in rats. In vitro, 1-isopropyl dihydrolysergic acid was a competitive antagonist of 5-HT2 receptors in the rat jugular vein, with a dissociation constant approximating 10(-7) M. After i.v. administration to pithed rats, 1-isopropyl dihydrolysergic acid also antagonized the pressor response produced by serotonin, an in vivo estimate of vascular 5-HT2 receptor blockade. In fact, after i.v. administration, 1-isopropyl dihydrolysergic acid was nearly one-third as potent as sergolexole. After i.p. administration, 1-isopropyl dihydrolysergic acid was approximately one-tenth to one-thirtieth as potent as sergolexole. Likewise, 1-isopropyl dihydrolysergic acid antagonized central 5-HT receptors as measured by blockade of quipazine-induced increases in serum corticosterone concentration in rats and was approximately one-twentieth as potent as sergolexole.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral↗

Effect of ergolines on neurotransmitter systems in the rat brain.

The interaction of nicergoline with various monoaminergic receptors and its effects on monoamine turnover were studied in specific rat brain areas in comparison with those of its metabolites, 10-methoxy-1,6-dimethyl-ergoline-8 beta-methanol (MMDL) and 10-methoxy-6-methyl-ergoline-8 beta-methanol (MDL). Nicergoline showed marked in vitro affinity for alpha 1-noradrenergic receptors (IC50 = 0.2 nM), less for alpha 2, S1 and S2 (IC50 about 10(-7) M). Its strong interaction with alpha 1-receptors was confirmed in vivo. The affinity of the other ergolines for alpha 1-receptors was lower than that of nicergoline. The level of monoamine metabolites (HVA and DOPAC for dopamine, MOPEG-SO4 for noradrenaline and 5-HIAA for serotonin) was taken as a measure of their turnover in the rat brain. A single dose of nicergoline (20 mg/kg, s.c.) strongly enhanced noradrenaline turnover, less that of dopamine. These effects, probably due to the interaction with alpha-receptors, were more marked after parenteral than oral administration. MMDL shared nicergoline's effect on dopamine and MDL that on noradrenaline, but they were less active than the parent compound. The most interesting results were obtained after chronic treatment (6-7 weeks) with rather low doses: 5 mg/kg b.i.d. of nicergoline and equimolar doses of the metabolites. Nicergoline and MMDL both enhanced dopamine turnover, especially in mesolimbic areas. In conclusion, the present report confirms and extends previous results on nicergoline's effects on catecholamine turnover and shows that its metabolite MMDL shares its effects on dopamine. Finally, it is particularly interesting that both ergolines were more effective in old than in young rats.

Animals↗

Species variations in transmembrane region V of the 5-hydroxytryptamine type 2A receptor alter the structure-activity relationship of certain ergolines and tryptamines.

Previous work has suggested that species differences in the structure-activity relationship for ergolines and tryptamines at the 5-hydroxytryptamine (5-HT)2A (formerly known as the 5-HT2) receptor are related to aliphatic substitution at the N1-position on the indole nucleus. The present work has confirmed these findings by examining the rat and human cloned 5-HT2A receptors. As previously found, N1-substitution of ergolines or tryptamines had no effect or increased affinity for the rat 5-HT2A receptor but decreased affinity for the human receptor. Also, the N1-unsubstituted analogues had higher affinity for the human 5-HT2A receptor, whereas the N1-alkyl analogues had a higher affinity for the rat receptor. By mutating the rat 5-HT2A receptor, the importance of the Ala/Ser242 species variation in amino acid sequence was examined in relation to this structure-activity relationship. Three mutations of the rat 5-HT2A receptor were made, i.e., A242S, A242V, and A242T. All three mutations resulted in functional (able to stimulate inositol phosphate hydrolysis) 5-HT2A receptors with high affinity for [3H]ketanserin and 1-(2,5-dimethoxy-4-[125I]iodophenyl)isopropylamine. The A242S mutation resulted in a pharmacological profile that was almost identical to that of the human 5-HT2A receptor but differed significantly from that of the wild-type rat receptor. This strongly suggests that the Ala/Ser242 species variation accounts for the differences in the structure-activity relationship. The A242V and A242T mutations resulted in differing but profound effects on affinity for the different ergolines and tryptamines. The results are discussed in terms of the importance of position 242 in the binding of these ligands to 5-HT2A receptors. In addition, arguments are presented that suggest that a hydrogen-bonding interaction occurs between the human 5-HT2A receptor at Ser242 and the N1-hydrogen of N1-unsubstituted ergolines and tryptamines and may serve as an important contact point in the receptor.

Amphetamines↗