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Biomedical subjects

J A Engel

Publications and source records attributed to J A Engel.

At least 73 records · Page 4Linked to original sources

Centrally administered neuropeptide Y (NPY) produces anxiolytic-like effects in animal anxiety models.

Effects of intracerebroventricular (ICV), neuropeptide Y (NPY) (0.2-5.0 nmol) and its C-terminal 13-36 amino acid (AA) fragment (0.4-2.0 nmol) have been examined with respect to anxiolytic properties in two rat anxiety models, Montgomery's conflict test (MT), and Vogel's drinking conflict test (VT). In the MT, 1.0 and 5.0 nmol NPY abolished the normal preference for the closed arms of the maze. At 5.0 nmol, the total number of entries made into both closed and open arms was decreased by 50%. In the VT, both 0.2 and 1.0 nmol NPY markedly increased the number of shocks accepted. The effect of 5.0 nmol NPY was less pronounced. In control experiments, NPY (0.2 nmol) did not affect pain sensitivity or thirst. Pretreatment with the selective alpha 2-adrenergic receptor antagonist idazoxan, at a dose which by itself did not affect behaviour (2.0 mg/kg), antagonized the effect of 1.0 nmol NPY in the VT. NPY 13-36 was without significant effect in both models. The results suggest that NPY exerts anxiolytic-like effects, and that these effects are mediated through an interaction with noradrenergic systems. Higher doses of NPY produce sedation and ataxia, which decrease overall activity in the MT, and interfere with the ability fully to express behaviourally the anxiolytic-like effect in the VT. The findings are discussed in relation to the noradrenaline hypothesis of anxiety, and to observations indicating involvement of NPY in the pathophysiology of major depression.

Adrenergic alpha-Antagonists↗

Alpha 2-adrenoceptor antagonists potentiate the anticonflict and the rotarod impairing effects of benzodiazepines.

Putative interactions between the specific alpha 2-adrenoceptor antagonist idazoxan and benzodiazepines (BDZs) were examined in two different rat conflict models; Vogel's drinking conflict test (VT) and Montgomery's conflict test (MT) (the elevated +-maze). In the MT, idazoxan (0.031 mg/kg) produced anxiogenic-like effects, which were counteracted both by the triazolo-BDZ alprazolam (APZ; 0.2 mg/kg) and the conventional BDZ diazepam (DIZ; 0.2 mg/kg). In fact, the anxiolytic-like effects of APZ were significantly potentiated when co-administering idazoxan. A tendency to such a phenomenon was seen also in rats treated with DIZ and idazoxan. In the VT, the anxiolytic-like effects both of APZ (1.0 mg/kg) and DIZ (4.0 mg/kg) were significantly enhanced when co-administering idazoxan (1.0 mg/kg) in a dose not affecting the behavior per se. Similar potentiating phenomena by behaviorally inert doses of alpha 2-adrenoceptor antagonists (idazoxan 1.0 mg/kg; yohimbine 2.0 mg/kg) were seen with regard to the ataxic/sedative effects of the BDZs (APZ 0.25 mg/kg; DIZ 1.5 mg/kg). The present results provide further support for the notion that the anxiolytic-like effects of BDZs are not related to attenuation of Locus Coeruleus activity. In addition, it is suggested that the potentiation caused by the alpha 2-adrenoceptor antagonist is mediated via a noradrenaline induced increase in signal-to-noise ratio in target neurons of the brain noradrenergic system.

Adrenergic alpha-Antagonists↗

Does the PCPA induced anticonflict effect involve activation of the GABAA/benzodiazepine chloride ionophore receptor complex?

The effects of the benzodiazepine (BDZ) receptor antagonist flumazenil (Ro 15-1788) and the GABAA receptor antagonist bicuculline on the anticonflict effect observed after depletion of brain serotonin (5-HT), were examined in a modified Vogel's punished drinking conflict model. Pretreatment with para-chlorophenylalanine (PCPA; 300 mg/kg/day for three days, last injection - 24 h) markedly decreased brain 5-HT levels and produced clearcut anticonflict effects. The anticonflict effect, but not the biochemical effect, of PCPA pretreatment was completely counteracted by both flumazenil (10 mg/kg, - 30 min) and bicuculline (2.0 mg/kg, - 10 min), in doses not altering the behavior per se. The findings suggest a behavioral interaction between 5-HT systems and the GABAA/BDZ chloride ionophore receptor complex, possibly involving a direct neuronal interaction, neuromodulation or hormonal alterations.

Animals↗

Effects of 5-HT1A receptor agonists and L-5-HTP in Montgomery's conflict test.

The effects of the pyrimidinyl-piperazines buspirone, gepirone, ipsapirone and their common metabolite 1-(2-pyrimidinyl)-piperazine (PmP) as well as of 8-hydroxy-2-(di-n-propylamino)tetralin (8-OH-DPAT) and L-5-hydroxytryptophan (L-5-HTP) were investigated in Montgomery's conflict test--an animal anxiety model based on the animal's inborn urge to explore a new environment and its simultaneous fear of elevated, open spaces. Subcutaneous buspirone (32-128 nmol/kg), gepirone (32-128 nmol/kg), ipsapirone (32-512 nmol/kg) and 8-OH-DPAT (50-200 nmol/kg), as well as intraperitoneal L-5-HTP (56 mumol/kg) produced anxiolytic-like effects. However, at higher doses the magnitude of these effects decreased and overall the dose-response curves displayed inverted U-shapes. The highest doses (2048 nmol/kg) of buspirone and of gepirone even decreased responding below control levels, possibly in part due to concomitant sedation/motor impairment. After L-5-HTP (448 mumol/kg) and PmP (512 nmol/kg) anxiogenic-like effects were observed. The results indicate that anxiolytic- and anxiogenic-like effects of drugs affecting central serotonergic neurotransmission can be obtained in a sensitive rat anxiety model which neither involves consummatory behavior nor punishment. The anxiolytic-like effects of these compounds may be due to their 5-HT1A agonistic properties. Moreover, the present data may provide support for a possible reciprocal association of presynaptic 5-HT1A receptors vs. postsynaptic 5-HT1A as well as 5-HT2 receptors with regard to anxiety.

5-Hydroxytryptophan↗

Anticonflict and rotarod impairing effects of alprazolam and diazepam in rat after acute and subchronic administration.

1. The anticonflict and the rotarod impairing effects of the triazolo-benzodiazepine alprazolam (APZ) and the conventional 1,4-benzodiazepine (BDZ) diazepam (DIZ) were studied in the rat. 2. After acute administration the two drugs displayed approximately equal potency with respect to anticonflict effects in Vogel's conflict test and in Montgomery's conflict test. The results obtained in the former model indicate that also the efficacies of the two drugs are approximately equal. The shapes of the dose response curves obtained in this model differed, however, markedly. Thus, while APZ displayed a wide high efficacy dose-range (0.5-16.0 mg/kg), a maximal effect of DIZ was obtained in a narrow dose-range only (around 4.0 mg/kg). 3. Acutely, APZ was more rotarod impairing than DIZ; total impairment after 2.0 mg/kg of APZ and 3.5 mg/kg of DIZ. 4. After daily treatment with doses producing approximately equal and close to maximal anticonflict effects (APZ 1.25 mg/kg/day; DIZ 3.0 mg/kg/day) tolerance developed to the rotarod impairing (6 days of treatment) and the anticonflict (Vogel's conflict test; 9 days of treatment) effects of both drugs. It appeared, however, as if tolerance was more pronounced to the ataxic/sedative effects (approximately a four-fold rightward shift of the dose-response curve) than to the anticonflict effect (approximately a two-fold shift) of APZ, whereas tolerance developed to about the same extent to the two effects of DIZ (approximately two-fold shifts). 5. In conclusion, for APZ, but not for DIZ, after long-term administration of a dose producing marked anxiolytic-like effects, the relationship anxiolytic-like effect vs. ataxic/sedative effects was altered. These findings offer a tentative explanation to the putative advantage of APZ over conventional BDZs in the treatment of panic disorder.

Alprazolam↗

Effects of amperozide in two animal models of anxiety.

The novel psychotropic agent amperozide (amp) was investigated in two different rat anxiety models, Vogel's conflict test (VT) and Montgomery's conflict test (MT). In the VT, amp in lower doses (0.2-0.6 mg/kg subcutaneously) increased the number of shocks accepted, as compared to controls. Pretreatment with the specific benzodiazepine receptor antagonist Ro 15-1788 (10.0 mg/kg orally) or the GABA-A receptor antagonist bicuculline (2.0 mg/kg intraperitoneally) antagonized the anticonflict effect of amp (0.4 mg/kg subcutaneously). At the highest dose tried (2.0 mg/kg subcutaneously) amp instead decreased the number of shocks accepted. Both 0.4 mg/kg and 2.0 mg/kg of amp raised the shock threshold, as compared to controls. The latter dose also decreased the motivation to drink. Pretreatment with Ro 15-1788 (10.0 mg/kg orally) did not significantly change the shock threshold or the drinking motivation, as compared to the group receiving amp alone. In the MT, amp (0.05-0.1 mg/kg subcutaneously) increased the percentage time spent in the open arms, while no changes were seen in the number of entries made into these arms. After higher doses (0.4-0.8 mg/kg subcutaneously) no differences, as compared to controls, were observed. Amp (1 nM-10microM) exhibited no affinity for 3H-flunitrazepam binding sites in mouse forebrain membranes in vitro. Taken together, the present data suggest that amp in low doses produces anticonflict (anxiolytic-like) effects. These effects appear to be mediated through an indirect (via 5-HT and/or DA systems?) activation of the GABA/benzodiazepine chloride ionophore receptor complex.

Animals↗

Biochemical and behavioral evidence for an interaction between ethanol and calcium channel antagonists.

In the present series of experiments we have studied the effects of the dihydropyridine calcium channel antagonist nifedipine on ethanol-induced changes in behavior and dopamine (DA) release and metabolism. The locomotor-stimulatory effect of low doses of ethanol (2.5 g/kg) was antagonized by nifedipine, whereas ethanol-induced sedation observed after higher doses (4.5 g/kg) was potentiated. Biochemical studies indicated that ethanol enhanced the metabolism and release of DA in the striatum and the DA-rich limbic regions measured by post mortem analyses of DA-metabolites by HPLC with electrochemical detection and by in vivo voltammetry in anaesthetized rats, respectively. Pretreatment with nifedipine antagonized the stimulatory effects of ethanol on the DA-system. Nifedipine reduced the preference for ethanol, estimated by the relative intake of ethanol (6% v/v) and water in a free-choice situation, suggesting an influence of nifedipine not only on the stimulatory but also on the positive reinforcing effects of ethanol. The present results suggest that the locomotor-stimulatory and positive reinforcing effects of ethanol as well as its enhancing effect on dopaminergic activity may involve an enhancement of calcium mediated mechanisms.

Animals↗

Ethanol enhances the calcium-dependent stimulus-induced release of endogenous dopamine from slices of rat striatum and nucleus accumbens in vitro.

When slices of striatum from the rat were preincubated for 40 min in calcium-free medium in vitro, the subsequent release of endogenous dopamine (DA) induced by 40 mM KCl was completely calcium-dependent, showing a maximal response in the presence of 1.5 mM CaCl2, and a half-maximal response in the presence of 0.5 mM CaCl2. In this calcium-dependent preparation, ethanol, at concentrations of 80-120 mM, significantly increased the KCl-induced release of endogenous DA from the striatum by 19-29%. This effect was not reproducible in calcium-replete incubation medium (2.0 mM CaCl2), suggesting that the phenomenon was calcium-dependent. Preliminary studies in the nucleus accumbens of the rat showed a similar increase (30%) in the calcium-dependent, KCl-induced release of endogenous DA in the presence of 100 mM ethanol.

3,4-Dihydroxyphenylacetic Acid↗

Biphasic effects of clonidine on conflict behavior: involvement of different alpha-adrenoceptors.

The effect of the alpha-2-adrenoceptor agonist clonidine on anxiety-related behavior was investigated using two different rat anxiety models: a modified Vogel's drinking conflict model and Montgomery's elevated plus-maze. In both models biphasic dose-response curves were obtained; in a narrow low-dose range (6.25-10.0 micrograms/kg) the drug produced anxiolytic-like effects, while anxiogenic-like properties were found after higher doses (12.5-80.0 micrograms/kg). Attempts to block the effects obtained were made in Montgomery's elevated plus-maze. The specific alpha-2-adrenoceptor antagonist idazoxan blocked the anxiolytic-like effect but did not influence the anxiogenic-like activity. Conversely, the specific alpha-1-adrenoceptor antagonist prazosin blocked the anxiogenic-like effect but did not alter the anxiolytic-like activity. These findings may suggest that alpha-1- and alpha-2-adrenergic receptor mechanisms are reciprocally involved in anxiety-related behavior.

Animals↗

Sigmoidity of the ventricular septum revisited: progression in early adulthood, predominance in men, and independence from cardiac mass.

Meager quantitative anatomic information is available regarding the orientation of the left ventricular outflow tract (LVOT) relative to the ventricular septum (VS), or the relation of these variables to patient age, sex, or other cardiac features. We studied 57 formaldehyde-fixed adult human heart specimens at autopsy from 29 men and 28 women ranging in age from 20 to 91 years (mean age = 66 years). Blinded measurement of 10 morphologic parameters, repeated on 2 occasions, included anatomic indexes of VS sigmoidity (angle between the aortic and the mitral plane). While sigmoidity was not correlated with patient height, body weight, body mass index, cardiac mass (or presence of systemic hypertension), cause of death, or VS length, it was significantly (p less than 0.05) progressive through age groups 20-39 years, 40-59, 60-79 and greater than or equal to 80. The overall correlation of aortic-mitral plane angle (A-MPA) with age was +0.59 (P less than 0.0001), a relationship also noted within each age group. The mean A-MPA increased from 118 degrees to 127, 131 and 134 considering all specimens. Men had consistently greater sigmoidity than women. The steady increase in sigmoidity of the ventricular septum from early adulthood may alter clinical conclusions about pathologic conditions which are based on septal curvature or prominence.

Adult↗

Anxiolytic-like action of the 3-PPP enantiomers in the Vogel conflict paradigm.

The effect of the (+)- and (-)-enantiomers of 3-PPP [conventional and atypical dopamine (DA)-receptor active agent, respectively] were investigated in a commonly used animal model of anxiety: the Vogel licking-conflict test. Low doses (less than or equal to 0.5 mg/kg SC) of both 3-PPP enantiomers resulted in anti-conflict (= anxiolytic-like) actions in this test. (-)-3-PPP proved to be almost as potent as apomorphine in releasing the punished responding (minimum effective doses; (-)-3-PPP: 0.016, and apomorphine: 0.006 mg/kg SC), whereas (+)-3-PPP was about 10 times less effective than apomorphine. In the higher dose range (greater than or equal to 1.0 mg/kg), both 3-PPP enantiomers instead induced an apparent "pro"-conflict effect; i.e. decreased responding to a level significantly below baseline, thus resulting in a biphasic dose-response curve. Simple alterations in the animals' motivation to drink, in shock threshold or in motor capabilities did not seem to be major explanatory factors either for the anti- or for the "pro"-conflict effects. With regard to the latter, the possibility is discussed of an interaction between the experimental test situation and non conflict-related effects of the drugs, thus interfering with the punished drinking. The findings are interpreted within the concept that low doses of the 3-PPP enantiomers, in particular (-)-3-PPP, may attenuate anxiety-elicited increases in the neurotransmission in certain meso-cortical/limbic DA pathways, i.e. consistent with the previously shown preferentially "limbic" net antidopaminergic profile of action of (-)-3-PPP.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Biphasic effect of L-5-HTP in the Vogel conflict model.

The effect of L-5-HTP (25 400 mg/kg IP) following inhibition of the peripheral aromatic amino acid decarboxylase by means of benserazide (25 mg/kg IP) was investigated in a test modified from Vogel's drinking conflict model. At 50 mg/kg an anti-conflict action was detected, while higher doses (100-400 mg/kg) decreased punished responding. A lower dose (25 mg/kg) had no effect. Non-specific effects--such as alterations in muscle tone, in motivation to drink or in the sensitivity to electrical shock--could not explain the anxiolytic- and anxiogenic-like actions of 50 and 100 mg/kg, respectively. The bi-phasic effect of L-5-HTP is discussed in terms of different subpopulations of central serotoninergic receptors, possibly exerting opposing influences on conflict responding. The study emphasises the importance of 5-HT mechanisms in anxiety, and the possibility of finding novel anxiolytics among drugs selectively affecting central 5-HT neurotransmission.

5-Hydroxytryptophan↗

Activation of alpha 2-adrenoreceptors enhances haloperidol-induced suppression of operant behavior.

Inhibition of catecholamine synthesis by alpha-methyl paratyrosine (alpha-MT) was previously shown to potentiate the behavioral suppression caused by dopamine-receptor antagonists. This effect of alpha-MT is in all probability due to inhibition of the compensatory increase in dopamine turnover induced by the dopamine receptor antagonists. In the present study we investigated the effect of the alpha 2-adrenoreceptor agonist clonidine on the haloperidol-induced suppression of food-reinforced lever-pressing behavior (fixed ratio 40:1) in rats. Small behaviorally inactive doses of clonidine were found, in analogy with alpha-MT, to enhance the haloperidol-induced suppression of the lever-pressing behavior. The haloperidol-induced increase in dopamine synthesis (measured as the accumulation of DOPA after inhibition of aromatic amino acid decarboxylate) was antagonized by clonidine in the striatum as well as in the dopamine rich limbic regions. Prazosin, a selective alpha 1-adrenoreceptor antagonist had no effect on the clonidine induced behavioral changes. Idazoxane, a selective alpha 2-adrenoreceptor antagonist, counteracted both the behavioral and biochemical effects of clonidine, indicating that these effects of clonidine are mediated via its action on alpha 2-adrenoreceptors. The present findings provide support for the notion that alpha 2-adrenoreceptors may participate in the regulation of nigro-striatal as well as meso-limbic dopaminergic activity. It is suggested that alpha 2-adrenoreceptor agents, especially in combination with classical antipsychotics, might be of therapeutic value in the treatment of disorders associated with abnormal dopaminergic activity.

Animals↗

Anticonflict effects of low doses of the dopamine agonist apomorphine in the rat.

The effects of low, "autoreceptor" doses (3.13-100 micrograms/kg, SC) of the dopamine (DA) agonist apomorphine were investigated in a modified Vogel's conflict paradigm. The compound was found to exert a marked, dose-dependent increase in the number of shocks taken in the conflict situation (maximum: approximately 230% of control responding, obtained at 12.5 micrograms/kg), thus indicating an anxiolytic action. However, the dose-response curve was biphasic, inversely U-shaped, with the highest dose tried actually suppressing the punished response rate to below control levels. Neither low- nor high-dose apomorphine modified the rats' drinking "motivation" (glucose intake after 48 hr of water deprivation). On the other hand, while unaltered by 12.5 micrograms/kg, the pain threshold tended to be lowered by 100 micrograms/kg. It is suggested that the anxiolytic-like action of apomorphine might be due to central DA autoreceptor stimulation, possibly in limbic/cortical forebrain regions. The conflict-promoting effect seen at 100 micrograms/kg is likely related to the concomitantly elicited hyperalgesia. The possibility of developing novel DA-modulating agents for the treatment of anxiety is raised.

Animals↗

Age-dependent effects of ethanol on central monoamine synthesis in the male rat.

In the present study, the effect of ethanol on central monoamine synthesis in developing and adult male rats was studied by measuring the accumulation of DOPA and 5-hydroxytryptophan after inhibition of aromatic amino acid decarboxylase. Before adolescence, ethanol caused a decrease of DOPA accumulation in the whole rat brain, while after adolescence ethanol increased the DOPA synthesis. Ethanol had no effect on the serotonin synthesis at any of the ages studied. It is suggested that hormonal events occurring during puberty may be of importance for the stimulatory properties of ethanol observed at adult age.

5-Hydroxytryptophan↗

Anticonflict effect of the putative serotonin receptor agonist 8-hydroxy-2-(di-n-propylamino)tetralin (8-OH-DPAT).

The putative 5-HT agonist 8-hydroxy-2-(di-n-propylamino)tetralin (8-OHDPAT) produced in rats an increase in the number of shocks accepted in a modified Vogel's conflict test design. Subchronic pretreatment with p-chlorophenylalanine (PCPA) similarly caused release of the punished behavior. This anticonflict effect of PCPA was antagonized by both 5-hydrotryptophan and 8-OH-DPAT. Thus in naive animals 8-OH-DPAT exerting anticonflict effects acted like a 5-HT antagonist, whereas in subchronically PCPA-pretreated animals with presumably supersensitive 5-HT receptors, 8-OH-DPAT decreasing the number of accepted shocks acted like a 5-HT agonist.

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

Reversal of the anti-conflict action of valproate by various GABA and benzodiazepine antagonists.

The effects of RO 15-1788, RO 5-3663, picrotoxin and bicuculline on the anti-conflict properties of valproate were studied in rats using a modified Vogel 's conflict test procedure. A low dose of the benzodiazepine (BDZ) antagonist, RO 15-1788 (5 mg/kg), blocked the anti-punishment properties of valproate (400 mg/kg), whereas no antagonism was observed after a high dose (25 mg/kg) of the BDZ antagonist. High doses of RO 5-3663 or picrotoxin also reversed the anti-conflict action of valproate. Bicuculline did not change the effects of valproate in this test situation. The suppressive effect of valproate on locomotor activity was reversed by a low dose (5 mg/kg) of RO 15-1788, but not by the other antagonists. RO 5-3663 was the only antagonist which effectively reversed the muscle relaxant effects of valproate observed in a Rotarod performance test. These findings indicate that various pharmacological actions of valproate may be due to a complex interplay with several sites at the GABA-BDZ-receptor complex.

Animals↗

The effects of GABA and benzodiazepine receptor antagonists on the anti-conflict actions of diazepam or ethanol.

The effects of picrotoxin, bicuculline or RO 15-1788 on the anti-conflict action(s) of diazepam or ethanol were studied in rats using a modified Vogel's conflict test procedure. RO 15-1788 antagonized the anti-punishment effects of diazepam (2.5 mg/kg, IP), whereas various doses of bicuculline or picrotoxin did not interfere with diazepam's anti-conflict effect in this test situation. The anti-conflict action of ethanol (2 g/kg, IP) was antagonized by picrotoxin (1.0 mg/kg, IP), whereas both bicuculline and RO 15-1788 were without effect on the increased punishment response produced by ethanol. These data suggest that the anti-conflict properties of ethanol are at least partially mediated through an enhancement of central GABAergic activity.

Animals↗