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E Coen

Publications and source records attributed to E Coen.

42 records · Page 3Linked to original sources

Enduring behavioural and biochemical effects in the adult rat after prolonged postnatal administration of haloperidol.

Rats were administered 0.5 mg/kg SC of haloperidol (H) or saline (S) daily from day 1 after birth until 20 days of age. At 60 days of age (40 days after the postnatal treatment with H or S was interrupted) the stereotyped behaviour and the effects on locomotor activity elicited by apomorphine in S- and H-pretreated rats were investigated. The intensity of apomorphine (0.5--1 mg/kg, SC)-induced stereotyped behaviour was significantly greater in the H-pretreated group than in S-pretreated animals and this was accompanied by a much more marked reduction of locomotor activity in H-pretreated than in S-pretreated rats. Finally, at 80 days of age (60 days after the postnatal treatment with H or S was interrupted) rats were subjected to a Differential Reinforcement of Low Rates schedule (DRL 15-s). The results indicate that the acquisition of the DRL task performance criterion (Rs/Rf less than or equal to 2.5) was significantly more rapid on S-pretreated rats than in H-pretreated ones. In parallel biochemical experiments, acute H produced smaller increases in dopamine turnover in chronic H-treated rats compared with S-treated controls. These data indicate that H treatment in neonatal rats induces behavioural and biochemical changes which can be observed up to 60 days after H withdrawal.

3,4-Dihydroxyphenylacetic Acid↗

Effect of different psychoactive drugs on serum and brain tryptophan levels.

A considerable amount of evidence indicates that the brain tryptophan level depends on circulating tryptophan. Changes of tryptophan concentration have also been described to modify the activity of benzodiazepines and tricyclic antidepressants. In the present study, a series of psychoactive drugs have been preliminarily screened for their activity on brain and plasma tryptophan levels. The results obtained suggest that tryptophan may be involved to varying extents in the activity of different psychoactive compounds.

Animals↗

Decreased release of norepinephrine in the isolated kidney of the adult spontaneously hypertensive rat.

Renal resistance vessels of the mature spontaneously hypertensive rat (SHR) exhibit an increased reactivity to exogenous norepinephrine, but a normal response to renal nerve stimulation. This difference could be due either to depression of the exocytotic process or to accelerated disposition of the released transmitter. We compared the overflow of norepinephrine in isolated perfused kidneys from adult SHR and normotensive rats. After previous incubation with 3H-norepinephrine, renal nerve stimulation caused smaller increases in the overflow of intact tritiated transmitter and its metabolites in kidneys form SHR than in those from normotensive controls. A similar difference was found when the amounts of endogenous norepinephrine were measured radioenzymatically. The tissue content of norepinephrine was comparable in kidneys from both hypertensive and normotensive animals. The uptake of 3H-norepinephrine was comparable in kidneys from SHR and normotensive controls; cocaine caused a comparable depression of the 3H-uptake in which then explains the normal vasoconstrictor response to renal nerve stimulation despite the increased responsiveness of the vascular smooth muscle cells to norepinephrine.

Adrenergic Fibers↗

Perinatal caffeine treatment: behavioral and biochemical effects in rats before weaning.

Administration of drinking water containing 0, 0.02%, 0.04% and 0.08% of caffeine to female rats throughout gestation and lactation affects several behavioral parameters in the offspring. Righting reflexes, swimming ability development, motor coordination and muscle tone were affected. The activity of these animals, as measured with an open-field test at weaning (i.e., at the end of the treatment), was reduced. The effects observed were dose-dependent. However, for righting reflexes the dose-dependency was direct (the highest dose producing maximal effects), whereas in all the other tests, the dose-dependency was inverse, the lowest dose producing maximal effects and the highest dose producing no effects. This might reflect the presence of subclasses of receptors having different affinities for adenosine, mediating opposite effects and antagonized by caffeine. On the other hand, perinatal caffeine effects are certainly not mediated by blockade of phosphodiesterases, since cAMP levels at the end of the treatment were dose-dependently reduced. This study shows therefore that administration of caffeine to rat dams is able to influence the neurobehavioral development of the offspring. Moreover, all the doses utilized and corresponding to 27, 58 and 108 mg/kg, were able to produce all or some of the mentioned effects, indicating that further testing with doses lower than 27 mg/kg is required to find a dose which does not affect the offspring.

Animals↗