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Biomedical subjects

C Bendotti

Publications and source records attributed to C Bendotti.

82 records · Page 5Linked to original sources

Chlorophenylpiperazine: a central serotonin agonist causing powerful anorexia in rats.

Meta-chlorophenylpiperazine inhibited serotonin and noradrenaline uptake by synaptosomes to the same extent with IC50 of 1.3 x 10(-6) M and 5.8 x 10(-6) M respectively. Dopamine uptake was less affected by meta-chlorophenylpiperazine (IC50 of 2.2 x 10(-5) M). Unlike d-amphetamine and d-fenfluramine, the drug did not significantly increase monoamine release in synaptosomal preparations. On the other hand, metachlorophenylpiperazine showed an IC50 of 620 nM in displacing 3H-5HT binding to brain membranes. Meta-chlorophenylpiperazine produced a dose-dependent reduction of food intake and this effect was prevented by a pretreatment with methergoline, a serotonin antagonist. The effect of metachlorophenylpiperazine was not modified by an intraventricular injection of 6-hydroxydopamine, electrolytic lesions of nucleus medianus raphe or ventral noradrenergic bundle, nor by a pretreatment with penfluridol, propranolol or phentolamine. The data suggest that the decrease of food intake induced by metachlorophenylpiperazine depends on its ability to act as a serotonin agonist is the brain. The specificity of the effects on serotonin suggests that this compound could prove an important tool for studies aimed at elucidating the functional role of serotonin in the central nervous system.

Animals↗

The roles of brain noradrenaline and dopamine in the anorectic activity of diethylpropion in rats: a comparison with d-amphetamine.

The anorectic activity of diethylpropion and d-amphetamine was studied in rats subjected to various treatments known to affect brain monoamines. The effect of diethylpropion, like that of d-amphetamine, was completely prevented by a lesion of the ventral noradrenergic bundle, which selectively decreases brain noradrenaline, but was not significantly modified in desipramine pretreated rats by an intraventricular injection of 6-hydroxydopamine, a condition decreasing only dopamine. Pretreatment with penfluridol significantly reduced the effect of d-amphetamine but not that of diethylpropion. A non-significant reduction of drug effect was found with alpha-methyl-p-tyrosine. Lesion of the nucleus medianus raphe, which destroys central serotonin neurons, or treatment with methergoline, a central serotonin antagonist, caused no changes in the effects of both compounds. The findings show that integrity of central noradrenergic neurons is an important condition for diethylpropion and d-amphetamine to exert their anorectic effect. Dopamine does not seem to play any role in the effect of diethylpropion but might contribute to that of d-amphetamine. The data are against any involvement of brain serotonin in diethylpropion anorexia.

Animals↗

Role of brain monoamines in the anorectic activity of mazindol and d-amphetamine in the rat.

The interaction of mazindol and d-amphetamine with brain monoamines was studied in rats. At each dose used, both compounds markedly counteracted the decrease of brain noradrenaline induced by 6-hydroxydopamine while only at high doses they did significantly reduce the effect of 6-hydroxydopamine on brain dopamine. Unlike d-amphetamine, mazindol significantly counteracted the decrease of brain serotonin induced by fenfluramine. The anorectic effect of mazindol and of d-amphetamine was markedly reduced by an electrolytic lesion at the level of the ventral noradrenergic bundle but not by an electrolytic lesion of the nucleus raphe medianus. An intrastriatal injection of 6-hydroxydopamine significantly reduced the effect of mazindol but not that of d-amphetamine. The results indicate that both compounds may block noradrenaline uptake in the brain while their effect on dopamine uptake is less evident. Ulike d-amphetamine, mazindol appears to inhibit serotonin uptake also. In addition, the integrity of the noradrenergic neurons in the brain appears to be an important condition for these drugs to exert their anorectic effect.

Animals↗

Dependence to morphine in differentially housed rats.

Although the effects of differential housing, particularly isolation, on the action of several classes of pharmacological agents have been studied, little attention has been given to this factor in regard to narcotics. The present study involves the effects of long-term social isolation on dependence to morphine produced by pellet implants in rats. When abstinence was precipitated with naloxone, isolated rats demonstrated less jumping and less diarrhea then grouped rats. No differences were found in other signs. In addition, the differences were seen both in isolates developing muricidal behavior and those not developing this behavioral pattern.

Aggression↗

Effect of the triterpenoid fraction of Centella asiatica on macromolecules of the connective matrix in human skin fibroblast cultures.

The mechanism of action of the total triterpenoid fraction extracted from Centella Asiatica (TTFCA) was evaluated using human skin fibroblasts cultures as the experimental system. In particular its influence on the biosynthesis of collagen, fibronectin and proteoglycans was considered. The presence of TTFCA (25 micrograms/ml) does not seem to affect cell proliferation, total protein synthesis or the biosynthesis of proteoglycans in a significant way. A statistically important increase was observed in the percentage of collagen and, as revealed by immunofluorescence measurements, in cell layer fibronectin. This effect on collagen and fibronectin may help to explain the action of TTFCA in promoting wound healing, and suggests an interesting working hypothesis for its action on basal endothelia.

Cell Survival↗