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Biomedical subjects

G Calderini

Publications and source records attributed to G Calderini.

At least 37 records · Page 2Linked to original sources

Age dependent changes in the methylation of rat brain phospholipids.

Phospholipid methyltransferase I and II enzymes methylate phosphatidylethanolamine three times to form phosphatidylcholine. The activity of these two enzymes was determined in synaptosome-enriched fractions from rats 1, 3, 7, 15 and 21 months old. The activity of phospholipid methyltransferase I was significantly greater in 7-, 15- and 21-month-old rats than in 1- and 3-month-old rats. In contrast, the activity of phospholipid methyltransferase II did not change with age. These changes in methyltransferase activity with increasing age may be related to changes in beta-receptor function with increasing age.

Aging

Functional interaction between benzodiazepine and GABA recognition sites in aged rats.

The present study was undertaken to explore whether there may be age-related changes in benzodiazepine binding and in the functional interaction between GABA and benzodiazepine recognition sites. Data indicate an increase in benzodiazepine binding sites with age. Moreover the functional interactions between GABA and benzodiazepine receptor sites are differentially affected by aging. GABA is less active in enhancing benzodiazepine binding in the older animals because of the loss of GABA receptors, and Diazepam may be more active in enhancing GABA receptor binding in the aged animals because there are more benzodiazepine receptors in this group. An understanding of the relevance of the apparent alteration in coupling between GABA and benzodiazepine receptors must permit a better definition of the behavioral manifestation of their biochemical phenomenon.

Aging

Monoamine metabolism during bicuculline-induced epileptic seizures in the rat.

Brain levels of tyrosine, dopamine (DA), noradrenaline (NA), tryptophan, 5-hydroxytryptamine (5-HT), and 5-hydroxyindoleacetic acid (5-HIAA) were measured after 30, 60 and 120 min of sustained seizure activity, induced in paralyzed, artificially ventilated and anaesthetized (70% N2O) rats by administration of bicuculline (1.2 mg/kg i.v.). In separate animals the rates of accumulation of DOPA and 5-hydroxytryptophan (5-HTP) were estimated in three different brain regions after blockage of the aromatic L-amino acid decarboxylase with NSD 1015 (100 mg/kg). The tissue level of NA was markedly reduced at 30 min and remained low during 120 min of sustained epileptic seizures. In contrast, the DA concentration, being essentially unaffected at 30 min, continuously increased during the following 90 min. 5-HT decreased significantly after 30 min but returned to control levels following 60 and 120 min of seizure activity. The 5-HIAA concentration progressively increased. In all three brain regions (striatum, limbic forebrain and hemispheres) the rate of tyrosine hydroxylation increased. Tryptophan hydroxylation showed a significant increase only in the limbic forebrain. The results suggest that bicuculline-induced seizures lead to an increased functional activity in NA neurons and, at least initially, also in 5-HT neurons. In contrast, DA neurons appear to be inhibited.

5-Hydroxytryptophan

Influence of transient ischemia on monoamine metabolism in the rat brain during nitrous oxide and phenobarbitone anaesthesia.

Cerebral ischemia was induced in normothermic, artificially ventilated rats, anesthetized with 70% N2O or 150 mg/kg of phenobarbitone, by bilateral occlusion of the common carotid arteries and by simultaneous depression of the mean arterial blood pressure to 50 mm Hg. The levels of tyrosine, dopamine (DA), noradrenaline (NA), tryptophan, 5-hydroxytryptamine (5-HT) and 5-hydroxyindoleacetic acid (5-HIAA) were measured after 15 min of ischemia as well as after 30 min of recirculation. In separate experiments (70% N2O) the rate of accumulation of DOPA and 5-hydroxytryptophan (5-HTP) was determined in three different brain regions (striatum, limbic forebrain and hemispheres) during recirculation. During ischemia, the monoamine pattern was unaffected. Following recirculation, increases in DA, 5-HIAA, tyrosine and tryptophan were found irrespective of the type of anesthesia used. Pronounced postischemic decreases in NA and 5-HT were observed in animals anesthetized with nitrous oxide but not in those given phenobarbitone. During recirculation the rate of tyrosine hydroxylation increased in all three brain regions while tryptophan hydroxylation was reduced. It is tentatively concluded that following transient, global cerebral ischemia, neuronal activity is low or eliminated in dopaminergic and serotoninergic neurons and high in noradrenergic neurons.

5-Hydroxytryptophan

Biochemical aspects of Huntington's chorea.

Fifteen patients affected by Huntington's chorea were divided into two groups, 'slow' and 'fast', according to IQ scores on the Wechsler-Bellevue scale, and scores on some motor performance tests. A possible correlation was looked for between some biochemical data (cerebrospinal fluid (CSF), homovanillic acid (HVA), and 5-hydroxyindolacetic acid (5HIAA) levels, plasma dopamine-beta-hydroxylase (DBH), dopamine (DA) uptake by platelets), and clinical data (duration of illness, severity of symptoms, age of patients, IQ scores, 'slow' and 'fast' groups). The CSF, HVA, and 5HIAA levels were found to be significantly lowered in comparison with normal controls. DBH activity and DA uptake by platelets did not differ significantly from normal subjects. Treatment with haloperidol in all patients and with dipropylacetic acid in three patients did not appear to modify the CSF, HVA, and 5HIAA concentrations, the plasma DBH activity, or the DA uptake. There were no significant differences in the CSF, HVA, and 5HIAA contents between the two groups of patients, and there was no correlation between biochemical data and clinical features.

Adult

Monoamine acid metabolites in ventricular CSF of patients with brain tumours.

Homovanillic acid (HVA) and 5-hydroxyindolacetic acid (5-HIAA) in ventricular CSF were determined in 19 patients (12 female 7 male) with brain tumours. No relationship was found between ventricular fluid pressure (VFP) and levels of HVA and 5-HIAA. A relationship was observed between ventricular CSF, HVA concentrations and tumour induced alterations in CSF dynamics. HVA concentrations were very high in patients whose tumours involved the third ventricle, the aqueduct, or the fourth ventricle, producing marked alterations in CSF flow. HVA concentrations significantly lower than in controls were observed in cases where tumours involved the lateral ventricles. Concentrations of acid metabolites in patients with little or no alteration in CSF dynamics corresponded with those in patients with other neurosurgical disorders.

Adolescent

Effect of amphetamine and fenfluramine on brain noradrenaline and MOPEG-SO4.

I.p. administration of d-amphetamine sulphate and fenfluramine-HCl at various doses induced significant modifications of brain noradrenaline (NA) and MOPEG-SO4 (3-methoxy-4-hydroxyphenylethyleneglycol) in the rat. Both drugs induced a decrease in brain noradrenaline but the two compounes seem to interact with the central noradrenergic system through a different mechanism. The decreased levels of noradrenaline after 1-fenfluramine administration were paralleled by increased MOPEG-SO4 levels. The d-isomer of fenfluramine was less active than the l-isomer. Amphetamine was considerably more effective than l-fenfluramine in reducing NA concentration. However, in spite of the long lasting effect on noradrenaline levels the i.p. administration of amphetamine did not lead to an increased MOPEG-SO4 concentration suggesting a more complex interaction with the noradrenergic system.

Animals

Monoamine acid metabolites and cerebrospinal fluid dynamics in normal pressure hydrocephalus: preliminary results.

Lumbar and ventricular CSF concentration of homovanillic acid (HVA) and 5-hydroxy-indole-acetic acid (5-HIAA) have been determined in 13 patients admitted to hospital for suspected normal pressure hydrocephalus. Low values of HVA in lumbar CSF were found in all patients with reduced CSF absorption and CSF flow inversion. The HVA lumbar concentration remained low after shunt procedure; it increased if obstruction of the shunt occurred. The ventricular CSF concentration of HVA was normal before surgery; it became higher, in two cases, after surgery. No important variations were found in the lumbar and ventricular CSF concentration of 5-HIAA. The possible mechanisms and diagnostic value of these findings are discussed.

Adult