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Biomedical subjects

L Rampello

Publications and source records attributed to L Rampello.

At least 55 records · Page 3Linked to original sources

[Effects of zinc sulfate on limbic motor epilepsy induced by kainic acid].

In the present study the Authors have investigated the effects of chronic pretreatment with injections of Zn++ sulphate solution on kainic acid induced epilepsy, to verify wether or not Zn++ is able to change the epileptiform pattern induced by kainic acid infection. Results obtained show that Zn++ do not produce any significant change in the experimental parameters by us study.

Animals↗

Influence of sex steroids and prolactin on haloperidol-induced catalepsy.

The effects of sex steroids and prolactin on haloperidol-induced catalepsy were investigated in male rats. Repeated administration with estradiol benzoate (5 micrograms/rat, twice daily for 10 days) significantly potentiated catalepsy induced by 0.25 or 0.5 mg/kg haloperidol, but no effect was observed 10 min or 1 h after a single injection of estradiol benzoate (5 or 50 micrograms/rat). Conversely, a single administration with the catecholestrogen 2-hydroxyestradiol (50 micrograms/rat) significantly increased haloperidol-induced catalepsy, suggesting that catecholestrogens may directly interfere with nigrostriatal dopaminergic transmission. Haloperidol-induced catalepsy has been found to be attenuated in conditions of hyperprolactinaemia resulting from anterior pituitary isograft underneath the kidney capsule. This is consistent with the hypothesis that prolactin may stimulate nigro-striatal dopaminergic function. Results obtained also indicate that medroxy-acetate progesterone, a progesterone derivative, may influence haloperidol-induced catalepsy. Specifically, a single administration with medroxy-acetate progesterone (5 mg/kg, i.p.) enhanced catalepsy but opposite effects were observed after repeated administration of medroxy-acetate progesterone (5 mg/kg, i.p., once a day for 7 days).

Animals↗

[Role of the amygdala in the sedation induced by low doses of apomorphine].

In the present study the role of amygdala in the antidepressant action of imipramine is discussed. An animal model of depression is induced, in rats, by systemic injection of low doses of apomorphine. Systemic administration of imipramine prevents, as already reported, apomorphine-induced sedation. The same effect is observed following intra-amygdaloid imipramine administration. On the contrary, local injection of imipramine in frontal cortex or caudate nucleus does not affect apomorphine-induced sedation.

Amygdala↗

[Effects of dopaminergic drugs on the concentrations of PGE2 and PGF2alpha in various brain regions].

It has long been shown by Biggio and Guidotti that multisynaptic nigro-cerebellar pathway of dopaminergic origin can control cerebellar cyclic guanosinmonophosphate (cGMP) content, a good index of the activity of Purkinje cells. In this line, it has been reported that haloperidol and sulpiride, significantly decrease cerebellar cGMP content while opposite changes are observed with apomorphine. In an attempt to establish whether other cerebellar cGMP-related parameters may be influenced by dopamine drugs. Authors have investigated the effects of haloperidol, sulpiride and apomorphine on cerebellar PGE2 and PGF2alpha. Results obtained indicate that haloperidol and sulpiride significantly reduce cerebellar PGE2 and PGF2alpha content while opposite changes are induced by apomorphine. Similar results have been observed in substantia nigra but not in other brain regions, such as corpus striatum and medial basal hypothalamus. The possibility that the observed changes in cerebellar PG-content may result from the modulation of striatal dopamine receptors is discussed.

Animals↗

Antidyskinetic properties of estrogens.

There is mounting evidence that several gonadal hormones may influence central nervous system. In particular, it has been found that estrogens display an antidopaminergic activity at the level of the extrapyramidal motor system. In this line we have investigated behavioral and biochemical parameters related to nigrostriatal DAergic function. Results obtained further indicate that estrogens display an antidopaminergic activity, by acting on nigrostriatal postsynaptic DAergic receptors. These results may suggest an antidyskinetic activity of estrogens.

Animals↗

Effects of dopaminergic drugs on cerebellar prostaglandin concentrations.

Previous data indicate that the injection of dopaminergic drugs induces changes in cerebellar 3',5'-guanosine monophosphate (cGMP) content. Accordingly, we have investigated the effects of haloperidol, sulpiride, or apomorphine on cerebellar prostaglandin (PG) concentration, a parameter related to cGMP content. Results obtained show that dopamine receptor blocking agents, such as haloperidol and sulpiride, significantly decrease cerebellar PGE2 and PGF2 alpha concentrations, while opposite changes are induced by apomorphine, a dopamine receptor agonist.

Animals↗

Effects of hyper- and hypoprolactinemia on glutamate decarboxylase activity in medial basal hypothalamus of male rat.

Haloperidol, sulpiride, domperidone and apomorphine, drugs which influence dopamine (DA) receptors and in turn prolactin (PRL) secretion have been shown to induce parallel changes in medial basal hypothalamic (MBH) glutamate decarboxylase (GAD) activity and serum PRL levels. The possibility that PRL may be involved in the effects of the drugs on MBH GAD activity is suggested in view of the evidence that hypophysectomy completely prevents drug-induced MBH GAD activity changes and that hyperprolactinemia by anterior pituitary homograft results in a significant, although small, change in the enzymatic activity.

Animals↗

[Modification of the nigro-striatal system by estrogens and prolactin. Clinical and experimental data].

We have investigated the effects of estrogens and prolactin on nigro-striatal dopaminergic function. In this regard, apomorphine-induced hyperactivity has been evaluated in hyperprolactinemic rats. Results obtained suggest the possibility that hyperprolactinemia potentiates nigro-striatal dopaminergic transmission inducing, in chronic, charges in dopamine receptor sensitivity. As a neurochemical parameter of the extrapyramidal motor system, we have investigated the activity of the GABA-synthesizing enzyme glutamate decarboxylase (GAD, EC 4.1.1.15) in corpus striatum and substantia nigra. Hyperprolactinemia induced by anterior pituitary homograft under the kidney capsule or systemic sulpiride injection significantly increases GAD activity. In contrast, estrogen treatment decreases nigral GAD activity even though increases plasma prolactin levels. From a clinical point of view, preliminary data indicating a good therapeutical efficacy of estrogens and progesterone in psychiatric patients are reported.

Animals↗

Sulpiride effects on nigral and striatal glutamic acid decarboxylase activity: a possible involvement of prolactin.

Sulpiride, a benzamide derivative neuroleptic, was shown to significantly increase glutamic acid decarboxylase activity in substantia nigra and corpus striatum in either acutely or chronically injected male rats. Hypophysectomy completely prevented this effect suggesting an involvement of an anterior pituitary factor in the central action of sulpiride. Prolactin might possibly mediate the effects of sulpiride since it is known to increase prolactin secretion by an action at the level of the anterior pituitary. Consistent with this hypothesis was the finding of a similar increase in nigral and striatal glutamic acid decarboxylase activity in hyperprolactinemic animals in which an anterior pituitary had been implanted under the kidney capsule.

Animals↗

Effects of some typical and atypical antidepressants on GAD activity in various brain regions.

The AA. have investigated the effects of acute or chronic injection of typical and atypical antidepressants on the activity of the GABA--synthesizing enzyme glutamic acid decarboxylase (GAD, EC 4.1.1.15) in discrete brain regions. Very significant changes in GAD activity were only observed with sulpiride and nomifensine, two atypical antidepressants that selectively influence dopaminergic transmission and, in turn, prolactin secretion.

Animals↗

[Effects of different doses of apomorphine on the glutamate decarboxylase activity of the substantia nigra and the medial basal hypothalamus].

The activity of gamma-aminobutyric acid (GABA) synthesizing enzyme glutamic acid decarboxylase (GAD, EC 4.1.1.15) was assayed in the rat substantia nigra (SN) and medial basal hypothalamus (MBH) following systemic injection of different doses of the dopamine receptor agonist apomorphine. In SN, the highest dose of apomorphine (1000 micrograms/kg) causes an increase of the GAD activity whilst an opposite effect is observed with the lowest dose (35 micrograms/kg). Results obtained in SN are in accordance with previous neurochemical and behavioural data suggesting an opposite action of high (500 micrograms/kg) and low doses (100 micrograms/kg) of apomorphine in nigro-striatal system, probably due to the existence of two classes of dopamine receptors, i.e. classical postsynaptic dopamine receptors and presynaptic inhibitory dopamine autoreceptors. In MBH, the evidence for similar effects of low and high doses of apomorphine (the decrease of GAD activity) may suggest that, as already reported, at this level only one class of dopamine receptors is present.

Animals↗

Effects of chronic haloperidol and sulpiride treatment on rat nigral GABA content.

The effects of chronic haloperidol and sulpiride treatment on nigral GABA content were investigated in rats. Chronic sulpiride treatment is capable of inducing an increase in nigral GABA content whilst no significant effect is observed following chronic haloperidol treatment at the doses used. The different effects of haloperidol and sulpiride on nigral GABA content were related to the different neuropharmacological spectrum of the two drugs.

Animals↗

Effects of different doses of apomorphine on GAD activity in rat substantia nigra.

The effects of different doses of the dopamine (DA) receptor agonist apomorphine on the activity of the gamma-aminobutyric acid (GABA)-synthesizing enzyme glutamic acid decarboxylase (GAD, EC 4.1.1.15) were investigated in rat substantia nigra in comparison with haloperidol and sulpiride, two DA receptor blocking agents. Results obtained show that low doses (10,35 microgram/kg, s.c.) of apomorphine induce a decrease in nigral GAD activity whilst an opposite effect is observed with the highest dose (1000 microgram/kg, s.c.). No significant change is observed following injection of the intermediate doses (100 and 500 microgram/kg, s.c.). Moreover, sulpiride at the dose used (2 mg/kg, i.p.) induces an increase in GAD activity whilst no effect follows systemic injection of the same dose of haloperidol. The results are discussed in light of recent neurochemical and behavioral data.

Animals↗

Comparative effects of chronic haloperidol and sulpiride treatment on nigral and striatal GABA content.

Nigral and striatal GABA contents were assayed in male rats treated chronically with haloperidol or sulpiride, two dopamine-receptor blocking agents that have different neuropharmacological spectra in regard to their biochemical, behavioural, and clinical properties. No great difference was observed between the chronic effects of haloperidol and sulpiride on nigral and striatal GABA content. However, low doses (30 micrograms/kg, intraperitoneally) of the dopamine-receptor agonist apomorphine, injected 12 h after the discontinuation of chronic haloperidol or chronic sulpiride treatment, induced opposite changes in nigral GABA levels suggesting the existence of a different "status" of the dopamine receptors during the 12 h-period following the withdrawal of haloperidol or sulpiride.

Animals↗

Influence of hyperprolactinemia induced by adenopituitary transplantation under the kidney capsule on the glutamic acid decarboxylase activity in various brain regions.

Glutamic acid decarboxylase activity was assayed in rat substantia nigra, corpus striatum, medial basal hypothalamus and cerebellum under conditions of hyperprolactinemia induced by transplantation of adenopituitary under the kidney capsule. The results indicate that hyperprolactinemia induces a slight increase in the glutamic acid decarboxylase activity of substantia nigra and medial basal hypothalamus and a more evident increase at striatal level. No change was observed in the cerebellum.

Animals↗