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D Hönack

Publications and source records attributed to D Hönack.

At least 19 recordsLinked to original sources

Kindled rats are more sensitive than non-kindled rats to the behavioural effects of combined treatment with MK-801 and valproate.

The effects of combined treatment with low doses (0.025-0.05 mg/kg i.p.) of the non-competitive NMDA receptor antagonist, MK-801 (dizocilpine), and the antiepileptic drug, valproate, were studied in amygdala-kindled and non-kindled rats. MK-801, 0.05 mg/kg, did not exert anticonvulsant effects in fully kindled rats but increased the anticonvulsant potency of valproate, 100 mg/kg i.p. However, the increase in anticonvulsant activity was paralleled by a marked increase in adverse effects such as motor impairment and hyperactivity, resulting in a considerable reduction of the therapeutic index of the combined treatment compared to valproate alone. Furthermore, MK-801 potentiated the adverse effects but not the anticonvulsant activity of 50 mg/kg valproate. Combined treatment with MK-801 and valproate induced much less marked adverse effects in non-kindled rats than in kindled rats. The competitive NMDA receptor antagonist, CGP 37849 1 mg/kg i.p., did not alter the effects of valproate in kindled rats. The data on combined treatment with MK-801 and valproate substantiate the conclusion that kindling alters the susceptibility to manipulations of NMDA receptor-mediated events.

2-Amino-5-phosphonovalerate

The behavioural effects of MK-801 in rats: involvement of dopaminergic, serotonergic and noradrenergic systems.

The non-competitive NMDA receptor antagonist, MK-801 (dizocilpine), induces in rats a characteristic behavioural syndrome with ataxia, stereotypies and hyperlocomotion. At least part of this behavioural syndrome is thought to be related to interactions between glutamatergic and dopaminergic neurotransmission. Based on recent biochemical evidence that serotonin (5-HT) might also be involved in the effects of MK-801 several 5-HT receptor ligands were tested for effects on MK-801-induced behaviours. The 5-HT1A receptor ligands, ipsapirone and NAN-190, which are known to display antagonist-like properties in functional models of postsynaptic 5-HT1A receptor activity attenuated or blocked the hyperlocomotion and head weaving observed after administration of MK-801, whereas the 5-HT2 receptor antagonist, ritanserin, was ineffective in this respect. The dopamine receptor antagonist, haloperidol, and the alpha 1-adrenoceptor antagonist, prazosin, also attenuated behaviours induced by MK-801. In contrast to its effects on stereotypies induced by MK-801, ipsapirone potentiated rather than attenuated the stereotyped behaviour induced by the dopamine receptor agonist, apomorphine, indicating that antagonism of MK-801-induced stereotypies by ipsapirone may not be related to the dopaminergic system. The data indicate that, in addition to catecholaminergic systems, serotonergic neurotransmission is significantly involved in the mechanisms by which MK-801 alters behaviour in rats.

Adrenergic beta-Agonists

Pharmacokinetics, anticonvulsant efficacy, and adverse effects of trans-2-en-valproate after acute and chronic administration in amygdala-kindled rats.

The trans isomer of 2-en-valproate (trans-2-en-VPA), an unsaturated metabolite of the clinically established antiepileptic valproate (VPA), was examined in the kindling model of epilepsy. As in the case of VPA, trans-2-en-VPA exerted potent anticonvulsant effects against partial seizures and secondarily generalized clonic seizures in amygdala-kindled rats after i.p. administration of acute doses. The anticonvulsant potency of trans-2-en-VPA appeared to be higher than that of VPA, especially in the case of secondarily generalized seizures. However, as previously reported for effects of valproate in the kindling model, trans-2-en-VPA exerted anticonvulsant effects against kindled seizures only at doses which were associated with motor impairment. Pharmacokinetic experiments with trans-2-en-VPA indicated non-linear kinetics with dose-dependent elimination rate and enterohepatic recirculation. According to the initial rapid decline in plasma concentrations of trans-2-en-VPA, the duration of anticonvulsant action in kindled rats was short-lasting so that an experimental protocol with 3 daily administrations was chosen for chronic experiments with this drug. During chronic treatment of kindled rats with 3 times daily injection of 100 mg/kg trans-2-en-VPA for 2 weeks, there was a marked reduction of anticonvulsant activity during the second week of treatment. This loss of anticonvulsant activity was not due to metabolic tolerance, i.e. reduction of drug levels by increased drug metabolism. Furthermore, additional experiments with altered experimental protocol indicated that the loss of anticonvulsant activity was not due to contingent tolerance, i.e. involvement of learning processes due to too frequent drug testing. However, the size of chronic treatment dose was important for the rate and degree of tolerance development, since an increase of dosage to 150 mg/kg 3 times daily resulted in significant anticonvulsant effects throughout the period of treatment with almost no indication of tolerance. The date indicate that trans-2-en-VPA is as effective as valproate in the kindling model. In view of previously reported experimental evidence that trans-2-en-VPA might have a lower hepatotoxic and teratogenic potential as valproate, the present study substantiates that trans-2-en-VPA might be an interesting alternative to valproate in antiepileptic therapy.

Amygdala

Withdrawal precipitation by benzodiazepine receptor antagonists in dogs chronically treated with diazepam or the novel anxiolytic and anticonvulsant beta-carboline abecarnil.

The effects of the benzodiazepine (BZ) receptor antagonists flumazenil (Ro 15-1788) and the beta-carboline ZK 93426 were compared in dogs before and after chronic treatment with diazepam or the novel BZ receptor ligand abecarnil (ZK 112119). Abecarnil, a beta-carboline, is thought to act as partial (low efficacy) and/or subtype selective agonist at central BZ receptors. Diazepam and abecarnil were administered at doses which, based on previous experiments on anticonvulsant activity, resulted in about equieffective drug concentrations during treatment. In dogs treated with diazepam, 6 mg/kg/day p.o., for 2 weeks, severe abstinence symptoms, including seizures, were precipitated in all animals by i.v. infusion of the BZ receptor antagonists, differences being found in the type of symptoms caused by flumazenil and ZK 93426. In dogs treated with abecarnil, 4 mg/kg/d s.c., for 6 weeks, only relatively mild abstinence symptoms were precipitated by infusion of flumazenil or ZK 93426, although pharmacologically active plasma concentrations of abecarnil had been maintained throughout the period of treatment. This suggests that BZ receptor ligands which act as partial and/or selective agonists might be more favourable than traditional agonists, such as diazepam, regarding the induction of physical dependence.

Animals

Regional alterations in brain amino acids during the estrous cycle of the rat.

Concentrations of 11 amino acids, including the neurotransmitters GABA, glutamate, aspartate, glycine and taurine, were determined in 12 brain regions of female rats during different stages of the estrous cycle. In addition, amino acids and sex hormone levels were determined in plasma. All sample collections were done in the forenoon between 9 and 11 a.m. Most regional amino acid levels measured did not change significantly during estrous cycle, but significant alterations were found for GABA and glutamate in hypothalamus. Both amino acids were slightly decreased in hypothalamus during proestrus, which might reflect an alteration of GABA turnover in response to the high estrogen levels during this stage. A decreased glutamate level during proestrus was also found in thalamus, while both glutamate and GABA did not vary throughout estrous cycle in any of the other examined regions, including substantia nigra, amygdala, striatum, cortex and hippocampus. When diestrus was subdivided according to progesterone levels, high levels of this hormone seemed to be associated with effects on metabolism of certain amino acids, including glycine in substantia nigra, alanine in thalamus and threonine in pons/medulla. However, the few changes in regional amino acid concentrations found during the estrous cycle were so small that the functional significance of these changes cannot be ascertained without further determination of the cellular or subcellular compartments of brain tissue involved.

Amino Acids

Effects of valproate and E-2-en-valproate on functional and morphological parameters of rat liver. I. Biochemical, histopathological and pharmacokinetic studies.

E-2-en-Valproate (E-2-en-VPA; trans-2-en-VPA) and VPA were studied for potential hepatotoxicity in young male Sprague-Dawley rats. Both drugs were administered daily at 750 mg/kg i.p. (divided into three doses a day) for 7 consecutive days. Clinical chemistry parameters were studied before and after the period of treatment. Furthermore, the drug pharmacokinetics and metabolism were analyzed at onset and end of the prolonged administration. Treatment with VPA induced hyperammonemia and other alterations in liver function tests which were not observed after treatment with E-2-en-VPA, although plasma levels of both drugs were comparable. The pharmacokinetics of VPA and E-2-en-VPA in young rats were similar, but analysis of metabolites by gas chromatography-mass spectrometry indicated marked differences in the metabolite profile, e.g., a lack of the suspected hepatotoxic metabolite 4-en-VPA in plasma of rats treated with E-2-en-VPA. Histopathological examination of liver sections showed that VPA and E-2-en-VPA did not induce degenerative liver lesions or significant alterations in hepatic content and distribution of lipids and glycogen at the doses administered. Only one of the VPA treated rats showed fatty infiltration (microvesicular steatosis). The data demonstrate that, although E-2-en-VPA is more potent than VPA as an anticonvulsant in rats, it does not exert more potent hepatotoxic effects and does not alter ammonia metabolism. Thus the data substantiate previous experimental studies that E-2-en-VPA might be a valuable substitute for VPA.

Animals

Intravenous valproate: onset and duration of anticonvulsant activity against a series of electroconvulsions in comparison with diazepam and phenytoin.

A series of 5 generalized tonic-clonic seizures within 30 min was induced by repeated transauricular electrical stimulation in mice. In this model, the anticonvulsant potency of intravenous valproate was compared with diazepam and phenytoin. All 3 drugs proved capable of rapidly suppressing the seizures after intravenous bolus injection. Potent anticonvulsant activity of diazepam and valproate was already obtained after 30 s, while phenytoin's onset of action was somewhat slower. In contrast to diazepam, valproate and phenytoin suppressed the seizures at non-sedative doses. ED50s for blockade of generalized tonic-clonic seizures throughout the 30-min period of repeated electrical stimulation were 6.6 mg/kg for diazepam, 28 mg/kg for phenytoin and 212 mg/kg for valproate. Determination of valproate in plasma and brain demonstrated that the rapid onset of anticonvulsant action after intravenous bolus injection was related to rapid drug penetration into brain tissue. The data indicate that an intravenous formulation of valproate might be a useful alternative to phenytoin as a non-sedative anticonvulsant for diazepam-resistant status epilepticus.

Animals

Tolerance to anticonvulsant effects of the partial benzodiazepine receptor agonist abecarnil in kindled rats involves learning.

The effects of chronic treatment with the beta-carboline, abecarnil, a novel partial and/or subtype-specific agonist at central benzodiazepine receptors, were studied on fully kindled amygdaloid seizures in rats. Two different experimental protocols were used to differentiate between "pharmacologic tolerance', i.e. tolerance as a function of drug exposure, and "contingent tolerance, i.e. tolerance contingent upon the repeated occurrence of the criterion effect, i.e. the anticonvulsant effect. When kindled seizures were repeatedly initiated during chronic treatment of rats with abecarnil (5 mg/kg i.p. three times daily), marked tolerance developed to its anticonvulsant effect, although plasma levels of abecarnil even increased during the 2 weeks of treatment. When the same treatment protocol was used, but seizures were initiated only at the start and end of the treatment period, almost no tolerance to the anticonvulsant effect of abecarnil was measured, indicating an important role of learning processes for the development of tolerance. In contrast to the differences in anticonvulsant tolerance between the two protocols, the motor impairment induced by abecarnil was similarly attenuated during chronic treatment according to both protocols. The data indicate that, because of the response contingency in abecarnil tolerance, development of tolerance to anticonvulsant effects of this compound depends critically on seizure frequency during drug administration, while adverse effects of this compound are reduced independently of seizure frequency.

Animals

Gabapentin increases aminooxyacetic acid-induced GABA accumulation in several regions of rat brain.

Gabapentin exerts anticonvulsant effects in different animal models of seizure states and in epileptic patients with different seizure types, but the mechanism of action of these effects is unknown. In the present study, the gamma-aminobutyric acid (GABA) accumulation induced by aminooxyacetic acid (AOAA) was used as a method to study the effects of gabapentin on regional turnover of GABA in the rat brain. Gabapentin was administered at a dose of 23 mg/kg i.p. (the ED95 against tonic electroconvulsions in rats) 1, 2 and 8 h prior to injection of AOAA, 100 mg/kg, i.p. Gabapentin significantly increased the AOAA-induced GABA accumulation in most of the 12 brain regions examined, but the time course of the increases in GABA accumulation differed from region to region. Regions in which the time course of the increase in GABA accumulation was similar to the anticonvulsant time course of gabapentin included substantia nigra, amygdala and thalamus. The data suggest that an effect of gabapentin on GABA synthesis might be involved in its mechanism of anticonvulsant action.

Acetates

The N-methyl-D-aspartate receptor antagonist MK-801 induces increases in dopamine and serotonin metabolism in several brain regions of rats.

MK-801 (dizocilpine maleate), a non-competitive, N-methyl-D-aspartate receptor antagonist which induces a characteristic phencyclidine-like motor syndrome in rodents, was administered to rats after handling habituation to examine the effects of this drug on concentrations of monoamines and their metabolites in 14 brain regions. MK-801 increased dopamine and serotonin metabolism in several regions, the most marked effects being determined in frontal and piriform cortex, nucleus accumbens and striatum. The data indicate that not only effects on dopaminergic transmission but also on serotonergic transmission may be involved in the pharmacological actions of MK-801.

Animals

Regional alterations in brain amino acids after administration of the N-methyl-D-aspartate receptor antagonists MK-801 and CGP 39551 in rats.

The effects of the non-competitive N-methyl-D-aspartate (NMDA) receptor antagonist MK-801 and the novel competitive NMDA receptor antagonist CGP 39551 on levels of 11 amino acids, including several excitatory and inhibitory neurotransmitters, were studied in 12 brain regions of rats. Both drugs were administered at doses which produced comparable behavioural effects (ataxia, hyperactivity). Amino acids were determined in brain tissue by high-performance liquid chromatography after o-phthaldialdehyde precolumn derivatization. MK-801 (0.1 mg/kg, i.p.) moderately increased the concentration of glutamate and GABA in several brain regions. Other amino acids (glutamine, taurine, asparagine, alanine, serine) were only altered in single brain regions, or were not altered at all (aspartate, glycine, threonine, arginine). In contrast to MK-801, CGP 39551 (10 mg/kg, i.p.) increased glutamate levels only in the cerebellum, and produced no significant alterations in levels of GABA. The data demonstrate differences in alterations of amino acid levels in response to competitive and non-competitive NMDA receptor antagonists and support the assumption that competitive NMDA antagonists may be more selective than non-competitive antagonists.

2-Amino-5-phosphonovalerate

Kindling from stimulation of a highly sensitive locus in the posterior part of the piriform cortex. Comparison with amygdala kindling and effects of antiepileptic drugs.

The piriform cortex, especially its deep anterior part, has been recently suggested to be a crucial epileptogenic site in the rat brain. We investigated the susceptibility of different parts of the piriform cortex to the development of electrical kindling as compared to that of the basolateral amygdala. A locus in the deep cell layer (layer III) of the rostral portion of the posterior piriform cortex (PPC) is described, which is considerably more sensitive to electrical stimulation than adjacent areas of the PPC, including the deep prepiriform cortex or the amygdala. The sensitive locus in the PPC can be readily kindled, and focal seizure thresholds in fully kindled rats are 60-90% lower than respective thresholds in rats kindled from other loci. Treatment of fully kindled rats with antiepileptic drugs diazepam, carbamazepine, phenobarbital, and valproate showed that anticonvulsant effects of these drugs in animals kindled from stimulation of the PPC were comparable to respective effects in animals kindled from stimulation of the basolateral amygdala, although the locus in the PPC tended to be more resistant. The data support the idea that the piriform area may contain the most sensitive neuronal tissue responsible for the generation of seizures during kindling. It remains to be determined if the described locus in the PPC is critical to the kindling process when kindling is induced from other structures within the olfactory-limbic system.

Amygdala

Kindling does not induce persistent changes in fluorographic labeling patterns of benzodiazepine binding proteins in various rat brain regions.

The GABAA receptor has been implicated in the mechanisms underlying the phenomenon of kindling. Photoaffinity labeling with 3H-flunitrazepam followed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis allows the fluorographic visualization of GABAA receptor proteins with benzodiazepine binding sites which presumably correspond to different alpha-subtypes. This method offers an opportunity to investigate whether up- or down-regulation of single benzodiazepine binding proteins occurs. In the present study, labeling patterns of benzodiazepine binding proteins were determined in 12 brains regions of amygdala-kindled rats (2 weeks after the last fully kindled seizure) and sham-operated controls. For most brain regions, labeling patterns were separately determined for the ipsi- and contralateral side. A comparison of the labeling patterns thus obtained revealed no persistent changes between kindled animals and controls in any of the brain regions, including amygdala, substantia nigra and hippocampus. Thus, we conclude that kindling does not induce fluorographically detectable changes in the expression patterns of the benzodiazepine binding proteins. The results confirm the existence of regional heterogeneity of benzodiazepine binding proteins and extend the findings to brain regions which had previously not been investigated.

Affinity Labels

Trans-2-en-valproate: reevaluation of its anticonvulsant efficacy in standardized seizure models in mice, rats and dogs.

The anticonvulsant potency of the trans isomer of 2-en-valproate (trans-2-en-VPA) was determined in standardized models for different seizure types in rodents and dogs. In mice and rats, adverse effects were quantified by the rotarod and chimney tests. Clinically established antiepileptic drugs (valproate, ethosuximide, phenobarbital, carbamazepine, phenytoin, diazepam) were used for comparison. Based on time course studies, drug potencies were determined and compared at the individual time of peak anticonvulsant effect. Potency comparisons were based on administered dosages and, in the case of trans-2-en-VPA and valproate, also on plasma levels determined after administration of anticonvulsant doses. The data show that trans-2-en-VPA exerts anticonvulsant effects against different seizure types, i.e., myoclonic, clonic, and tonic seizures in rodents and (myo)clonic seizures in dogs. In most seizure models, trans-2-en-VPA was more potent than valproate, when both compounds were compared at their individual times of peak effect. Time course and pharmacokinetic studies showed that duration of action and pharmacokinetic characteristics of trans-2-en-VPA and valproate are similar. In the rotarod and chimney tests in mice and rats, trans-2-en-VPA was more potent than valproate. However, because of the higher anticonvulsant potency of trans-2-en-VPA, protective indices calculated from rodent models were similar to those of valproate. Similarly, in dogs trans-2-en-VPA exerted anticonvulsant effects at doses below those which induced sedation and ataxia. In view of the previously reported advantages of trans-2-en-VPA compared to valproate with respect to teratogenic and hepatotoxic effects, the present data substantiate that trans-2-en-VPA might be a valuable alternative to valproate in antiepileptic therapy.

Animals

The role of technical, biological and pharmacological factors in the laboratory evaluation of anticonvulsant drugs. III. Pentylenetetrazole seizure models.

Although seizure models using systemic administration of the chemoconvulsant pentylenetetrazol (PTZ) for induction of generalized clonic seizures in rodents are widely employed to identify potential anticonvulsants, the important role of diverse technical, biological and pharmacological factors in interpretation of results obtained with these models is often not recognized. The aim of this study was to delineate factors other than sex, age, diet, climate, and circadian rhythms, which are generally known. For this purpose, experiments with 8 clinically established antiepileptic drugs were undertaken in the following PTZ models: (1) the threshold for different types of PTZ seizures, i.e., initial myoclonic twitch, generalized clonus with loss of righting reflexes, and tonic backward extension of forelimbs (forelimb tonus), in mice; (2) the traditional PTZ seizure test with s.c. injection of the CD97 for generalized clonic seizures in mice; and (3) the s.c. PTZ seizure test in rats. In rats, in addition to evaluating drug effects on generalized clonic seizures, a ranking system was used to determine drug effects on other seizure types. When drugs were dissolved in vehicles which themselves did not exert effects on seizure susceptibility, the most important factors which influenced drug potencies were: (1) bishaped dose-response curves, i.e., a decline in anticonvulsant dose-response at high doses of some drugs, leading to misinterpretations of drug efficacy if only a single high drug dosage is tested; (2) effects of route of PTZ administration (i.v. infusion vs. s.c. injection) on estimation of anticonvulsant potency; (3) species differences in drug metabolism; (4) differences in drug potencies calculated on the basis of administered doses compared to potency calculations based on 'active' drug concentrations in plasma; (5) qualitative and quantitative species differences in drug actions; (6) endpoints used for PTZ tests; (7) misleading predictions from PTZ seizure models. Analysis of anticonvulsant drug actions indicated that myoclonic or clonic seizures induced by i.v. or s.c. PTZ might be suitable for predicting efficacy against myoclonic petit mal seizures in humans, but certainly not to predict efficacy against absence seizures. Tonic seizures induced by PTZ were blocked by drugs, such as ethosuximide, which exert no effect on tonic seizures in humans. In order to reduce the variability among estimates of anticonvulsant activity in PTZ seizure models, the various factors delineated in this study should be rigidly controlled in experimental situations involving assay of anticonvulsant agents.

Animals

Anticonvulsant and behavioral effects of two novel competitive N-methyl-D-aspartic acid receptor antagonists, CGP 37849 and CGP 39551, in the kindling model of epilepsy. Comparison with MK-801 and carbamazepine.

The orally active competitive N-methyl-D-aspartate (NMDA) receptor antagonists CGP 37849 (DL-[E]-2-amino-4-methyl-5-phosphono-3-pentenoic acid) and its ethyl ester CGP 39551 were evaluated in amygdala-kindled rats, a model for complex partial and secondarily generalized seizures. Anticonvulsant and behavioral effects of these novel compounds were compared with those of the noncompetitive NMDA receptor antagonist MK-801 [(+)-5-methyl-10,11-dihydroxy-5H-dibenzo(a,d)cyclohepten-5,10-imin e] and the antiepileptic drug carbamazepine, one of the major drugs for treatment of partial and generalized seizures in humans. For comparative evaluation, the compounds were injected i.p. at the following doses: 1 to 10 mg/kg (CGP 37849 or CGP 39551), 0.05 to 0.3 mg/kg (MK-801) and 20 to 40 mg/kg (carbamazepine), respectively. In contrast to carbamazepine, CGP 37849, CGP 39551 and MK-801 exerted only weak anticonvulsant effects in fully kindled rats and did not increase the focal seizure threshold. The weak anticonvulsant effects of the NMDA receptor antagonists in kindled rats were associated with profound untoward behavioral effects. The behavioral syndrome induced by the NMDA receptor antagonists in kindled rats was characterized by marked ataxia, hyperactivity and, in case of CGP 37849 and MK-801, stereotypies, such as head weaving. The low or absent effectiveness of the novel NMDA receptor antagonists against kindled seizures suggests that these compounds will not be clinically useful antiepileptics against partial and secondarily generalized seizures. Furthermore, in view of the recent clinical findings on psychotomimetic effects of MK-801 in epileptic patients, the similarities in the excitatory effects produced by CGP 39551, CGP 37849 and MK-801 in kindled rats may indicate that competitive NMDA receptor antagonists may also produce psychotomimetic effects in humans.

2-Amino-5-phosphonovalerate

The novel competitive N-methyl-D-aspartate (NMDA) antagonist CGP 37849 preferentially induces phencyclidine-like behavioral effects in kindled rats: attenuation by manipulation of dopamine, alpha-1 and serotonin1A receptors.

The novel competitive N-methyl-D-aspartate (NMDA) receptor antagonist DL-(E)-2-amino-4-methyl-5-phosphono-3-pentenoic acid (CGP 37849) was found to produce a phencyclidine (PCP)-like behavioral syndrome (ataxia, locomotion, stereotypies) in amygdala-kindled rats, whereas the amphetamine-like behavioral alterations of the syndrome (locomotion, stereotypies) were only infrequently seen in nonkindled rats. In dose-response experiments in kindled and nonkindled rats, behavioral effects were scored using a ranked intensity scale, and the behaviors and behavioural scores determined after CGP 37849 were compared with those determined after i.p. administration of the noncompetitive NMDA receptor antagonist dizocilpine maleate (MK-801). In kindled rats, 20 mg/kg of CGP 37849 produced about the same scores for hyperlocomotion and head weaving as 0.1 mg/kg of MK-801. Kindled rats exhibited higher behavioral scores than nonkindled rats, especially in the case of CGP 37849. The behavioral effects produced by CGP 37849 in kindled rats were almost indistinguishable from the PCP-like behavioral effects induced by MK-801, indicating that CGP 37849 indeed produces a PCP-like pattern of behavior in kindled rats. Hyperlocomotion and head weaving induced by CGP 37849 in kindled rats could be attenuated or totally prevented by pretreatment with ipsapirone, a partial agonist/antagonist at postsynaptic 5-hydroxytryptamine (5-HT) receptors of the 5-HT1A subtype. Furthermore, these behavioural effects were attenuated or blocked by the dopamine antagonist haloperidol and the alpha-1 adrenoceptor antagonist, prazosin. The data demonstrate that kindling induces a hypersensitivity to PCP-like behavioral effects of competitive and noncompetitive NMDA receptor antagonists, which could relate to the recent finding of increased function of NMDA receptors following kindling.(ABSTRACT TRUNCATED AT 250 WORDS)

2-Amino-5-phosphonovalerate