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Biomedical subjects

G Serra

Publications and source records attributed to G Serra.

At least 91 records · Page 5Linked to original sources

Passive avoidance behaviour deficit in the mdx mouse.

Thirty per cent of boys with Duchenne muscular dystrophy (DMD) suffer from various degrees of mental retardation. Since dystrophin, the protein absent in muscles of boys with DMD, is produced also in the brain, it was postulated that the deficiency of brain dystrophin might account for the mental retardation found in DMD boys. The mdx mouse, a mouse model of DMD, fails to produce dystrophin in muscle and brain. This prompted us to study the cognitive function of these animals. Learning and memory processes were studied in 10 mdx females and 9 genetically matched controls using the passive avoidance test. Statistically significant differences in the retention of the passive avoidance response was detected between mdx and control mice, indicating an impairment in passive avoidance learning in mdx mice. Our data reinforce the view that brain dystrophin deficiency is correlated with cognitive dysfunction and indicate that mdx mice might be a model for the mental retardation found in DMD boys.

Animals↗

Neurophysiological study of Horner's syndrome.

Sympathetic skin response from the forehead and from the hand obtained by using electric, acoustic stimuli and during deep breathing was recorded in normal subjects and in patients suffering from Horner's syndrome in order to characterize this clinical picture neurophysiologically. The reliability of the method points to its possible usefulness in the pre-postganglionic differential diagnosis also.

Adult↗

Therapeutic treatment of systemic candidiasis in newborns.

This report details the management of a group of newborns who had a diagnosis of systemic Candida albicans septicemia. All the infants were extremely preterm (29 weeks' gestation or less) and had predisposing factors to disseminated fungal infections. Diagnosis was made by cultures from blood, urine, and from the tip of indwelling catheters. Therapy was based in all the infants on the combination of amphotericin B (Amph. B) and 5-fluorocytosine (5FC). Amph. B was intravenously administrated at a test dose of 0.1 mg/kg which if tolerated, was increased with scalar doses until a maximum of 0.35-0.50 mg/kg/die. 5FC was intravenously or orally administered at a 100-200 mg/kg/die dose. Time of treatment with Amph B was prolonged from 13 to 30 days and that with 5FC from 11 to 40 days. In two infants there was an increase of transaminases and Gamma GT and no infant had signs of nephrotoxicity. The high therapeutic success (75% of cases) confirms the validity of the utilized therapeutic schemes.

Amphotericin B↗

Possible role of dopamine D1 receptor in the behavioural supersensitivity to dopamine agonists induced by chronic treatment with antidepressants.

The effect of chronic treatment with antidepressants (ADs) on the behavioral responses to LY 171555, a selective D2 receptor agonist, SKF 38393, a selective D1 receptor agonist, and B-HT 920, a selective DA autoreceptor agonist, was studied in rats. In normal rats small, intermediate and high doses of LY 171555 produced hypomotility, hyperactivity and stereotypies, respectively. Chronic but not acute pretreatment with imipramine (IMI) greatly potentiated the motor stimulant effect of LY 171555, but failed to modify its stereotypic and sedative effect. The potentiation of the motor stimulant effect of LY 171555 was observed also after chronic, but not acute, treatment with desmethylimipramine (DMI), mianserin (MIA) or repeated electroconvulsive shock (ECS). Chronic treatment with IMI failed to modify the effect of SKF 38393 (motor stimulation, grooming and penile erection), but reversed the sedative effect of B-HT 920 into a motor stimulant response. The motor stimulant response to LY 171555 in IMI-pretreated animals was suppressed by L-sulpiride, a D2 antagonist, and by a combination of reserpine with alpha-methyltyrosine (alpha-MT), but it was only partially antagonized by high doses of SCH 23390, a selective D1 antagonist. The results indicate that chronic treatment with ADs potentiates the behavioural responses mediated by the stimulation of postsynaptic D2 receptors in the mesolimbic system and suggest that this behavioural supersensitivity is due to enhanced neurotransmission at the D1 receptor level.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Central dopaminergic transmission is selectively increased in the limbic system of rats chronically exposed to antidepressants.

Repeated electroconvulsive shock (ECS) exposure produced a decrease of [3H]SCH 23390 binding sites and a reduced response of adenylate cyclase activity to dopamine D-1 receptor stimulation in the rat limbic area analogous to that previously observed in rats chronically treated with imipramine. These effects were completely prevented by the repeated administration of a small dose of alpha-methyl-p-tyrosine (alpha-MPT), associated with the tricyclic compound. Increased dopaminergic transmission seems to be involved in the mechanism of antidepressant action. Rats chronically treated with imipramine showed a decrease of dihydroxyphenylacetic acid (DOPAC) concentration restricted to the limbic area. Finally, both imipramine and desipramine blocked the uptake of [3H]dopamine in the limbic system with a 100-fold greater potency than that observed in the basal ganglia.

3,4-Dihydroxyphenylacetic Acid↗

Selective adenylate cyclase increase in the limbic area of long-term imipramine-treated rats.

Long-term administration of imipramine to rats produced an increase in the Vmax of forskolin- or guanylylimidodiphosphate (Gpp(NH))p-activated adenylate cyclase only in the limbic area. This effect was prevented by the daily administration of alpha-methyl-p-tyrosine (alpha-MPT), given together with imipramine, at a dose (50 mg/kg) which had no effect on adenylate cyclase activity per se. The time course of the effects of chronic imipramine on dopaminergic transmission in the limbic area showed that the decrease in both D-1 receptor number and adenylate cyclase stimulation by dopamine (DA) reached significance on day 8 of treatment and were maximal on day 15. The Vmax of the enzyme started to increase on day 15 and was further increased on day 21. Possible mechanisms underlying these effects are discussed.

Adenylyl Cyclases↗

Possible mechanism of antidepressant effect of L-sulpiride.

L-Sulpiride is a dopamine (DA)-receptor blocker that acts as an antidepressant at low doses. We have reviewed evidence suggesting that the antidepressant effect of L-sulpiride may depend on the activation of DA transmission secondary to the blockade of DA autoreceptors.

Depressive Disorder↗

Chronic imipramine reduces [3H]SCH 23390 binding and DA-sensitive adenylate cyclase in the limbic system.

[3H]SCH 23390 binding and dopamine (DA)-stimulated adenylate cyclase activity were measured in brain membrane preparations from rats chronically treated with imipramine (10 mg/kg twice daily for 14 days). [3H]SCH 23390 binding sites were decreased by 27% in the limbic system but only 14% in the striatum. The responsiveness of adenylate cyclase to DA was reduced by 38% in the limbic system but was not modified in the striatum. Concomitant treatment with alpha-methyltyrosine (alpha-MPT) (50 mg/kg daily for 14 days) prevented the imipramine-induced reduction in both [3H]SCH 23390 binding sites and the responsiveness of adenylate cyclase to DA.

3,4-Dihydroxyphenylacetic Acid↗

Cerebral ultrasound images in prenatal cytomegalovirus infection.

A male newborn with prenatal cytomegalovirus infection was referred for cranial ultrasound. The cranial ultrasound demonstrated areas of increased echogenicity in the thalamic and gray nuclei resembling "a branched candlestick". Doppler technique located the "branched candlestick" along the thalamostriate arteries. This image is particularly interesting because to our knowledge it has never before been described in congenital cytomegalovirus infection, but only in congenital rubella.

Brain↗

Apomorphine stimulation of male copulatory behavior is prevented by the oxytocin antagonist d(CH2)5 Tyr(Me)-Orn8-vasotocin in rats.

The effect of the intracerebroventricular (ICV) injection of the oxytocin antagonist d(CH2)5Tyr(Me)-Orn8-vasotocin on the stimulation of copulatory behavior induced by the dopamine (DA) agonist apomorphine was studied in male rats. Apomorphine (80 micrograms/kg SC) given 5 min before mating tests decreased intromission frequency and ejaculation latency in experienced male rats. Such effects were abolished and reversed by pretreatment with 50 and 1000 ng of the oxytocin antagonist given ICV 5 min before apomorphine. The peptide per se markedly increased intromission and ejaculation latency and abolished ejaculation in control rats. The results suggest that brain oxytocin is implicated in the expression of sexual behavior, and apomorphine might improve male copulatory behavior by releasing oxytocin in brain.

Animals↗

The oxytocin antagonist d(CH2)5Tyr(Me)-Orn8-vasotocin inhibits male copulatory behaviour in rats.

The effect of an intracerebroventricular (i.c.v.) injection of the oxytocin antagonist, d(CH2)5Tyr(Me)-Orn8-vasotocin, on the copulatory behaviour of vigorous male rats in the presence of females in estrus was studied. The peptide (2.5, 25 and 50 ng, 15 min before mating tests) decreased the number of mounts and intromissions, and abolished ejaculation almost completely at all doses tested. The peptide failed to significantly influence motor activity at the doses used. The results support the hypothesis that central oxytocin plays a physiological role in the expression of copulatory behaviour.

Animals↗