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Effects of diazepam and of serotonin agonists on hyponeophagia in rats.

The effects of serotonin agonists, fenfluramine (2 mg/kg) and 5-methoxy N,N dimethyltryptamine (5-MeODMT, 2.5 mg/kg) on hyponeophagia were studied both alone and in combination with diazepam (1 mg/kg). Male and female rats were used but sex differences were not found. The serotonin agonists enhanced hyponeophagia while diazepam attenuated it and antagonised the actions of both serotonin agonists. These findings are discussed in connection with the serotonin hypothesis of benzodiazepine action with the conclusion that diazepam acts distally to serotonergic drugs on hyponeophagia.

Animals↗

Drug interactions do not support reduction in serotonin turnover as the mechanism of action of benzodiazepines.

Interactions between 5-methoxy, N,N-dimethyltryptamine (5-MeODMT), chlordiazepoxide and para-chlorophenylalanine (pCPA) on conflict behaviour were studied. 5-Methoxy, N,N-dimethyltryptamine (1.0 and 3.0 mg/kg), induced observable effects and reduced unpunished response rates but did not affect punished behaviour either alone, on in the presence of 5 or 10 mg/kg chlordiazepoxide. However, 5-MeODMT (1 mg/kg) reversed the anti-conflict effects of chronic administration of pCPA (100 mg/kg). Chronic administration of pCPA did not prevent the increase in punished response rates induced by chlordiazepoxide (5 mg/kg). These findings are discussed in the context of the serotonin hypothesis of benzodiazepine action, with the conclusion that benzodiazepines act at a site distal to that of serotonergic drugs on conflict behaviour.

Analysis of Variance↗

Roles of dopamine and 5-hydroxytryptamine in stereotyped and non-stereotyped behaviour.

The roles of dopamine (DA) and 5-hydroxytryptamine (5-HT) in stereotyped and non-stereotyped components of the classical behavioural syndromes induced by 5-HT and DA were investigated by studying (a) behavioural interactions between the DA agonist apomorphine and the 5-HT agonist 5-methoxy-N,N-dimethyltryptamine (5-MeODMT) and (b) the effects of depletion of 5-HT on the behavioural responses to amphetamine and p-chloroamphetamine. In agreement with evidence [Andrews, Fernando and Curzon (1982) Neuropharmacology 21:63-68] that non-stereotyped (i.e. body shakes and hind limb abduction) and stereotyped (i.e. head weaving and reciprocal forepaw treading) behaviour induced by d-amphetamine (25 mg/kg, i.p.) were inhibited and enhanced respectively by DA, apomorphine inhibited two non-stereotyped behavioural responses induced by 5-MeODMT (hind limb abduction and Straub tail) but enhanced reciprocal forepaw treading. However, head weaving was inhibited. Evidence indicated that behaviour induced by DA (whether stereotyped or not) was inhibited by 5-HT. Thus, the induction by apomorphine of sniffing and mouth movements was enhanced when the synthesis of 5-HT was inhibited. Also, p-chloroamphetamine caused sniffing and mouth movements only when 5-HT synthesis was inhibited. Under the latter conditions, while most classical behavioural responses associated with 5-HT did not occur, hind limb abduction persisted. Similarly, amphetamine (25 mg/kg) caused hind limb abduction and forepaw treading even when 5-HT was almost completely depleted. These results may indicate that the amine releasers have some direct 5-HT agonist properties. Results in general indicate the multiplicity of behavioural interactions between DA and 5-HT.

Animals↗

The effects of lesions produced by 5,7-dihydroxytryptamine on 5-hydroxytryptamine-mediated behaviour induced by amphetamine in large doses in the rat.

The role of 5-hydroxytryptamine (5-HT)-containing terminals in the spinal cord and basal ganglia in behavioural responses induced by amphetamine in large doses have been investigated using the neurotoxin for 5-HT, 5,7-dihydroxytryptamine (5,7-DHT). The effects of pretreatment with 5,7-DHT were also examined using the 5-HT agonist, 5-methoxy-N,N-dimethyltryptamine (5-MeODMT). d-Amphetamine (25 mg/kg) induced several classical 5-HT-dependent behavioural responses (head weaving , forepaw treading, hind limb abduction, "wet dog" shakes, Straub tail), together with some classical dopamine (DA)-dependent behaviour and backward locomotion which requires both transmitters. Pretreatment with 5,7-DHT, given into the striatum significantly decreased "wet dog" shakes and virtually abolished backward walking. Pretreatment with 5,7-DHT in the nucleus accumbens or substantia nigra did not significantly alter behaviour. Pretreatment with 5,7-DHT intraspinally did not significantly alter behaviour induced by amphetamine, although a decrease of Straub tail just failed to reach significance (P = 0.056). Similar pretreatment in rats given 5-MeODMT (8 mg/kg) significantly enhanced both Straub tail and tremor but did not alter the other behavioural responses induced by this drug (limb abduction, forepaw treading, head weaving ). The results in general suggest that behavioural responses induced by 5-HT can be classified into 3 groups (a) those requiring striatal 5-HT ("wet dog" shakes and backward locomotion), (b) those requiring spinal 5-HT (Straub tail, tremor) and (c) those requiring neither spinal nor striatal 5-HT (hind limb abduction, head weaving and forepaw treading).

5,7-Dihydroxytryptamine↗

Ejaculations induced by p-chloroamphetamine in the rat.

The ejaculatory response following acute injections of p-chloroamphetamine (PCA) and several other drugs was measured by weighing the compact seminal material accumulated over 2 hr. p-Chloroamphetamine caused a dose-dependent ejaculatory response that was inhibited by the inhibitor of the synthesis of 5-hydroxytryptamine (5-HT), p-chlorophenylalanine (PCPA), neurotoxic doses of PCA, reserpine, DSP 4 a selective noradrenergic neurotoxin given 48 hr before PCA, the inhibitor of synthesis of noradrenaline (NA) FLA 63, the specific inhibitors of uptake of 5-HT, alaproclate, fluoxetine and norzimeldine and the selective inhibitor of the uptake of NA, CPP 199, the E form of norzimeldine. The doses of several receptor antagonists producing a 50% decrease in the weight of seminal material were determined. The non-selective 5-HT receptor antagonists, metitepine and methergoline, the selective alpha 1-adrenoreceptor antagonists, prazosin and phenoxybenzamine and the non-selective alpha-adrenoreceptor antagonist, phentolamine, had strong effects, followed by the selective 5-HT2 antagonists, ketanserin and pirenperone. Yohimbine, an alpha 2-adrenoreceptor antagonist and atropine, a muscarinic receptor antagonist, only produced a partial blockade. The rank order of potency for some dopamine (DA) receptor antagonists was chlorpromazine, domperidone, haloperidol, pimozide. Remoxipride, a selective DA2 receptor antagonist and the selective DA1 antagonist, Sch 23390, had no effect. The following drugs had no effect: propranolol, naloxone, picrotoxin, cimetidine and mepyramine. The 5-HT receptor agonist 5-methoxy-N,N-dimethyltryptamine (5-MeODMT 3 mg/kg, i.p.) produced a small effect on the weight of seminal material, although 72% of the rats ejaculated. d-Amphetamine did not induce ejaculation at 5 mg/kg but had a marked effect at 15 mg/kg.(ABSTRACT TRUNCATED AT 250 WORDS)

Amphetamines↗

Indolealkylamines and prolactin secretion. A structure-activity study in the central nervous system of the rat.

The present study was performed to examine the central effects of the indolealkylamine hallucinogens, 5-methoxy-N,N-dimethyltryptamine (MDMT), bufotenin and N, N-dimethyltryptamine (DMT), infused intracerebroventricularly (i.c.v.) into the lateral ventricle. They were found to have a stimulatory effect upon the secretion of prolactin. Their order of potency was compared. From a structure-activity point of view, MDMT is the most potent, followed by bufotenin, and then by DMT. Bufotenin, which does not readily cross the blood-brain barrier, caused a prolonged effect on the elevation of prolactin, with a suggestion of a biphasic effect at the maximum dose (0.02 M). N,N-dimethyltryptamine showed a clear dose-response relationship in the stimulation of the release of prolactin. The present results confirm those of previous investigators, who have demonstrated that these drugs cause the release of prolactin, with a possible biphasic effect. The present results suggest that, the response which was obtained was centrally mediated, and probably did not involve stimulation of peripheral receptors and the time course of action of indoles is different when infused centrally, compared to their time course when infused peripherally.

Animals↗

5-Hydroxytryptamine-mediated behaviour in male and female rats.

The responses of male and female rats to drugs causing the behavioural syndrome induced by 5-hydroxytryptamine (5-HT) were compared. Preliminary experiments showed that females had largely similar responses to the releaser of 5-HT, p-chloroamphetamine (PCA) and the 5-HT receptor agonist 5-methoxy-N,N-dimethyltryptamine (5-MeODMT) at different stages of the oestrus cycle. The behavioural responses to 5-MeODMT (with and without the monoamine oxidase inhibitor pargyline) or to p-chloroamphetamine were not significantly different to those of males except for tremor after p-chloroamphetamine which was more marked in the females. However, concentrations of p-chloroamphetamine in brain in these animals, when killed immediately after behavioural recording were greater in the females. When rats, pretreated with the monoamine oxidase inhibitor, pargyline, were given the precursor of 5-HT, tryptophan, the females showed substantially greater hypothermia and larger scores for components of the 5-HT syndrome than the males. This sex difference may have been due to the moderately but significantly higher levels of 5-HT (and possibly tryptamine) in brain attained by the female rats, than by similarly-treated males. The results as a whole therefore suggest that the greater behavioural response of female rats to pargyline and tryptophan reflects a greater effect of this treatment on the synthesis of indoleamines than that occurring in males.

Animals↗

Thermoregulatory responses to serotonin (5-HT) receptor stimulation in the rat. Evidence for opposing roles of 5-HT2 and 5-HT1A receptors.

The effects of serotonergic agonists and antagonists on the body temperatures of rats were investigated. The administration of the serotonin (5-HT) agonist 6-chloro-2(1-piperazinyl)-pyrazine (MK-212) produced a dose-related increase in body temperature. A maximal increase in body temperature of approx. 1.1 degrees C was observed 30 min after the administration of 3 mg/kg of MK-212. In contrast, administration of the putative 5-HT1A agonist 8-hydroxy-2-(di-n-propylamino)tetralin (8-OH-DPAT) resulted in marked, dose-related hypothermic responses. Body temperatures were decreased approx. 3 degrees C 30 min after an injection of 0.3 mg/kg of 8-OH-DPAT. Body temperatures were affected differentially by 5-methoxy-N,N-dimethyltryptamine (5-MeODMT). Large doses (3-10 mg/kg) of 5-MeODMT elicited hyperthermic responses, whereas small doses (0.5-1.0 mg/kg) produced hypothermic responses. Treatment of rats with ketanserin (3 mg/kg) completely prevented the hyperthermic effects of 5-MeODMT, and, in fact, converted a hyperthermic response to 5-MeODMT into a marked hypothermic response. Ketanserin (0.1-1.0 mg/kg) selectively antagonized the hyperthermic response to MK-212 but did not alter the hypothermic effect of 8-OH-DPAT. Mianserin (10 mg/kg) and pirenperone (0.03 mg/kg) also selectively antagonized hyperthermia induced by MK-212. In contrast, pindolol (0.03-0.1 mg/kg) and methiothepin (10 mg/kg) selectively antagonized hypothermia induced by 8-OH-DPAT but did not alter hyperthermia induced by MK-212. Spiperone (0.1-3 mg/kg) and pizotifen (10 mg/kg) attenuated the effects of both 8-OH-DPAT and MK-212. Xylamidine, a peripheral 5-HT antagonist, had no significant effect on hyperthermia induced by MK-212 or hypothermia induced by 8-OH-DPAT.(ABSTRACT TRUNCATED AT 250 WORDS)

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Phencyclidine-induced head-weaving and head-twitch through interaction with 5-HT1 and 5-HT2 receptors in reserpinized rats.

Phencyclidine mainly produced head-weaving and head-twitches at doses of 5-7.5 mg/kg and of 7.5-12.5 mg/kg, respectively. Phencyclidine-induced head-twitches and head-weaving were blocked by pretreatment with ritanserin (1 mg/kg), a selective serotonin (5-HT)2 receptor antagonist and with pindolol (20 mg/kg, s.c.), a 5-HT1 receptor antagonist, respectively. In reserpine-pretreated rats, the degree of utilization of 5-HT and the number of 5-HT1 ([3H]5-HT) and 5-HT2 ([3H]ketanserin) binding sites were significantly increased compared with the figures for the vehicle-pretreated rats. The intensity of phencyclidine-induced head-weaving (at the dose of 2.5 mg/kg) and head-twitch (at the doses of 2.5 and 5 mg/kg) was significantly increased in reserpine-pretreated rats compared with that of vehicle-pretreated rats. Furthermore, in the reserpine-pretreated rats, the intensity of phencyclidine (1.25 mg/kg)-induced head-weaving and head-twitches was increased in combination with imipramine, while the intensity of phencyclidine (2.5 mg/kg)-induced head-weaving and head-twitch was decreased by pretreatment with mianserin, a non-selective 5-HT receptor antagonist. These results indicate that phencyclidine induced head-weaving by interacting with 5-HT1 receptors, indirectly after the release of 5-HT and/or with some other mechanisms and induced head-twitch by interacting with 5-HT2 receptors directly and/or indirectly.

Animals↗

The serotonin (5-HT) autoreceptor in the hippocampus of the rabbit: role of 5-HT biophase concentration.

Slices of hippocampus from the rabbit were preincubated with [3H]5-HT), then superfused continuously and twice stimulated electrically. The stimulation-evoked overflow of tritium was inhibited by the 5-HT autoreceptor ligands 5-carboxamido-tryptamine (5-COHT), 5-HT, 5-methoxy-N,N-dimethyl-tryptamine (5-MeOMT), (+/-)-8-hydroxy-2-(di-n-propylamino)tetralin (8-OH-DPAT), methysergide and (+/-)-cyanopindolol in a concentration-dependent manner. These effects were competitively inhibited by the 5-HT autoreceptor antagonists, metitepin and metergoline. (+/-)-Cyanopindolol also reduced the evoked release of 5-HT from slices of cortex from the rat. The inhibitor of the uptake of 5-HT, 6-nitroquipazine diminished the autoreceptor-mediated depression of release of 5-HT. In cortex tissue from the rat, 6-nitroquipazine reversed the decreased release of 5-HT, due to (+/-)-cyanopindolol, to a facilitation. The disinhibition of the release of 5-HT by autoreceptor antagonists was further enhanced by 6-nitroquipazine. Non-linear regression analysis of concentration-response curves for 5-COHT yielded the following pKd of endogenous 5-HT at the autoreceptor: 7.753 +/- 0.116. This value corresponds to the pKd of 5-HT at the 5-HT1B binding site. The 5-HT biophase concentration at the autoreceptor of 10(-8.220 +/- 0.132)M was markedly enhanced by 6-nitroquipazine (10(-6)M) to 10(-7.476 +/- 0.132)M. It is concluded that the 5-HT autoreceptor belongs to the 5-HT1B subtype of receptor; the corresponding 5-HT biophase concentration can be estimated quantitatively; 8-OH-DPAT decreased the evoked release of 5-HT through both 5-HT autoreceptors and alpha 2-heteroreceptors and (+/-)-cyanopindolol acts as partial agonist at the 5-HT autoreceptor.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Effects of serotonin receptor antagonists and agonists on the tail-flick response in mice involve altered tail-skin temperature.

Tail-flick latency and tail-skin temperature were measured in mice after administration of serotonin (5-HT) receptor antagonists (metergoline and metitepin) and agonists [5-methoxy-N,N-dimethyltryptamine (5-MeODMT) and 8-hydroxy-2-(di-n-propylamino)tetralin (8-OH-DPAT)]. Metergoline (4 mg/kg) and metitepin (0.5 mg/kg) reduced the tail-flick latencies and increased the tail-skin temperatures, but the effect on the tail-flick latencies was non-significant when the effect of temperature was taken into account. Both 5-MeODMT (3 mg/kg) and 8-OH-DPAT (1 mg/kg) reduced the tail-skin temperature but only 5-MeODMT increased the tail-flick latencies. The effect of 5-MeODMT on tail-flick latencies was still highly significant when the effect of temperature was taken into account. The results show that the apparent hyperalgesia elicited by 5-HT receptor antagonists in the tail-flick test in the mouse is secondary to increased tail-skin temperature and not due to increased nociceptive sensitivity. The antinociceptive effect of 5-MeODMT in the tail-flick test can, however, not be explained by effects of temperature.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Behavioural profiles of putative 5-hydroxytryptamine receptor agonists and antagonists in developing rats.

The effects of a variety of 5-hydroxytryptamine (5-HT) receptor agonists and antagonists on behaviour in 5- and 20-day old rat pups have been investigated. Increased locomotion and head-weaving responses were induced in both age groups by 8-OH-DPAT (8-hydroxy-2-(di-n-propylamino)tetralin; 5-HT1A agonist); 5-MeODMT (5-methoxy-N,N-dimethyltryptamine; 5-HT1) and RU 24969 (5-methoxy-3(1,2,3,6-tetrahydropyrindin-4-yl)-1H-indole; 5-HT1B/5-5HT1A). The putative 5-HT1A-agonist LY165163 (1-2-(4-aminophenyl)ethyl 4-(3-trifluoromethylphenyl)piperazine) also produced hyperactivity in the developing pups. In contrast, locomotion was not affected by buspirone (5-HT1A); mCPP (1-(3-chlorophenyl)piperazine; 5-HT1B/5-HT1C) and DOI (1-(2,5-dimethoxy-4-iodophenyl)-2-aminopropane; 5-HT2) though buspirone produced a small increase in head-weaving at 5- and 20-days. The full 5-HT syndrome was induced in older animals (but not neonates) by both 8-OH-DPAT and 5-MeODMT. Large doses of buspirone, mCPP and DOI also produced signs of reciprocal forepaw treading and flattened body posture at 20-days. In addition, mCPP induced grooming and stereotyped mouthing, while DOI increased sniffing behaviour in the young rats. Catecholaminergic mechanisms were implicated in the head-weaving and locomotor responses to 8-OH-DPAT and RU 24969, following experiments with a number of monoamine receptor antagonists. Preliminary findings with (-)-pindolol, which was high affinity for 5-HT1-receptors, suggested that this subtype of receptor may play a role in hyperlocomotion induced by RU 24969.(ABSTRACT TRUNCATED AT 250 WORDS)

8-Hydroxy-2-(di-n-propylamino)tetralin↗

The effects of rubidium, caesium and quinine on 5-HT-mediated behaviour in rat and mouse--3. Quinine.

It has been shown that caesium, which shares properties with quinine as a K(+)-channel blocker, enhanced 5-HT-mediated behaviour in both rats and mice. It was therefore of interest to investigate the effects of quinine on 5-HT-mediated behaviour in the rat and mouse. Quinine, dose-dependently (ED50 = 5 mg/kg), produced the 5-HT behavioural syndrome in rats pre-treated with tranylcypromine (TCP) (15 mg/kg, i.p.). p-Chlorophenylalanine (i.p., 300 mg/kg x2) or (-)-propranolol (20 mg/kg, i.p.), pindolol (4 mg/kg, i.p.) and ritanserin (0.4 mg/kg, s.c.), all prevented the behavioural syndrome induced by quinine (72 mg/kg, i.p.) plus TCP. The administration of quinine (72 mg/kg, i.p.) enhanced the 5-HT syndrome elicited by p-chloramphetamine (4 mg/kg, i.p.) and the 5-HT agonists, 8-OH-DPAT (0.5 mg/kg, s.c.), 5-MeODMT (2 mg/kg, i.p.), DOI (8 mg/kg, s.c.) and quipazine (25 mg/kg, i.p.) in rats. Pretreatment with quinine also potentiated the 5-HT2-mediated head-twitch in the mouse but had no effect on the hypothermia in the mouse, induced by 8-OH-DPAT (0.5 mg/kg, s.c.). Quinine also enhanced the rate of synthesis of 5-HT in the brain of the rat. On the basis of these findings, together with those in the preceding two papers, it is suggested that the effects of rubidium, caesium and quinine, to enhance differentially various aspects of 5-HT function are mediated by actions on 5-HT-modulated K(+)-channels. This conclusion is also discussed in relation to the actions of lithium and electroconvulsive shock on 5-HT function in brain and the treatment of manic-depressive disease.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

The effects of corticosterone on 5-HT receptor function in rodents.

In the mouse, administration of corticosterone-21-acetate (30 mg/kg, s.c. daily) for 3 and 10 days produced an attenuation of the hypothermic response to the 5-HT1A receptor agonist 8-hydroxy-2-(di-n-propylamino)tetralin (8-OH-DPAT), which was not present after administration for 1 day. A similar effect was observed in the rat after administration of corticosterone-21-acetate (30 mg/kg, s.c. daily) for 10 days. Mice which had been given corticosterone for 10 days displayed the serotonin syndrome when injected with 5-hydroxytryptophan (5-HTP, 100 mg/kg, s.c.), 15 min after injection of carbidopa (25 mg/kg, i.p.). This was not seen in control animals. The serotonin syndrome was also induced in mice using 8-OH-DPAT; this increased in a dose-dependent manner and could be significantly decreased by pre-treatment with 1-(2-methoxyphenyl)-4-(4-phthalimidobutyl)-piperazine (NAN-190 5 mg/kg, i.p., 30 min prior to administration of 8-OH-DPAT), a 5-HT1A receptor antagonist. Administration of corticosterone (30 mg/kg, s.c. daily) did not significantly alter the serotonin syndrome induced in treated mice, compared with controls. Mice pre-treated for 3 or 10 days with corticosterone did not differ from controls in the number of head-twitches induced by 5-HTP and carbidopa or 5-methoxy-N,N-dimethyltryptamine, nor did they differ from controls in their response to the putative 5-HT1B agonist 5-methoxy-3 (1,2,3,6-tetrahydropyridin-4-yl)1-H indole (RU 24969, 3 mg/kg, i.p.).(ABSTRACT TRUNCATED AT 250 WORDS)

5-Hydroxytryptophan↗