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Biomedical subjects

L Dorigotti

Publications and source records attributed to L Dorigotti.

At least 19 recordsLinked to original sources

Oxiracetam antagonizes the disruptive effects of scopolamine on memory in the radial maze.

The effects exerted by oxiracetam on the disruption of performance induced by scopolamine in the radial arm maze were investigated in overtrained rats. Scopolamine induced a dose-related decrease in the efficiency of responding and an increase of running time. The effect of the SC injection of 0.2 mg/kg scopolamine on the efficiency of responding was antagonized by the IP administration of 30 mg/kg oxiracetam, while the effect on running time induced by the same dose of scopolamine was not. Physostigmine (0.3 mg/kg SC) antagonized both effects of 0.2 mg/kg scopolamine. Methylscopolamine, at the dose of 0.2 mg/kg SC, was devoid of any effect on both parameters. Increasing the dose of methylscopolamine to 0.63 mg/kg did cause serious peripheral effects which eventually prevented some animals from completing the task. Similar peripheral effects were observed after administration of 0.63 mg/kg scopolamine. The effects of this dose of scopolamine on efficiency and running time were not antagonized by pretreatment with 100 mg/kg oxiracetam. Oxiracetam alone (30 or 100 mg/kg IP) did not modify the performance of previously trained rats. The present results suggest that oxiracetam selectively restores cholinergic mechanisms which are involved in learning and memory.

Animals

Brain entry and direct central pharmacological effects of the nootropic drug oxiracetam. Oxiracetam: brain entry and pharmacological effects.

Oxiracetam administered systemically to rats as a 14C radiolabelled drug (200 mg/kg p.o. or 100 mg/kg intra-artery) enters the brain and is found unmetabolized above all in some of the brain areas functionally involved in the modulation of cognitive processes. Among the brain areas examined, the largest amount of compound was recovered in septum, followed by hippocampus; a smaller amount was found in cerebral cortex and striatum. 14C oxiracetam administered directly into the lateral ventricles of the brain presented a similar pattern of distribution, indicating that the tropism of the drug for the above brain areas does not depend on its route of administration. The amounts of oxiracetam that could reach the brain after systemically administered pharmacologically active doses were also estimated. These amounts (1.9 to 19 nmols/rat) were delivered through a permanently implanted cannula, into the lateral ventricles of the brains of conscious, freely moving rats. In this experimental condition oxiracetam dose-dependently antagonized the amnesia induced by scopolamine (0.66 mg/kg s.c.). The above findings clearly indicate that oxiracetam enters the brain and directly exerts its pharmacological activity there.

Administration, Oral

Experimental behavioral studies with oxiracetam on different types of chronic cerebral impairment.

Oxiracetam (4-hydroxy-2-oxo-1-pyrrolidine acetamide) is a novel compound effective in improving learning and memory in normal animals as well as in animals with acute cerebral impairment induced by a variety of noxious stimuli (i.e., electroshock, neurodepressants, metabolic inhibitors, hypoxia). In accordance with a stepwise approach to the pharmacological studies, the compound was also tested in rats with chronic cerebral impairment due to aging, cerebrovascular lesions, and congenital microencephaly. To evaluate the brain telencephalic functions, the learning rate of two conditioned avoidance responses using the pole climbing test and the performance in a multiple-choice water maze were considered. Oxiracetam at doses ranging from 10 to 60 mg/kg i.p. improved the learning rate of these animals with impaired cognitive functions. The compound was active also by oral administration.

Aging

Cyclic GABA-GABOB analogues. IV. Activity on learning and memory.

A number of N-substituted 4-hydroxy-, 4-acyloxy- and 4-alkoxy-2-pyrrolidinones were examined by a screening method predictive of their activity on cognitive processes. The 1-aminocarbonylmethyl-substituted compounds showed a favorable effect on learning and memory, and among them the most active was the 4-hydroxy derivative, oxiracetam, which had a potency considerably higher than piracetam, used for comparison purposes.

Amnesia

Effects of pildralazine alone and in combination on severe hypertension and cerebrovascular lesions in saline-drinking spontaneously hypertensive rats.

The efficacy of long-term treatments with the vasodilator antihypertensive pildralazine alone and in combination with propranolol or dihydrochlorothiazide in preventing blood pressure increase and cerebrovascular lesions in saline-drinking spontaneously hypertensive rats (SHR) was evaluated. Groups of 20-40 animals were treated daily for 13 weeks. At the end of the experiments the brains were examined histologically and vascular lesions, ranging from arterial wall damage to cerebral infarction, were checked. In the control groups (n = 60), systolic blood pressure gradually rose to over 200 mmHg, and about 74% of the animals had lesions. Pildralazine at a dose of 1 mg/kg p.o. significantly inhibited the onset of severe hypertension; the combination of pildralazine with moderately effective doses of propranolol (10 mg/kg p.o.) or dihydrochlorothiazide (5 mg/kg p.o.) completely prevented the blood pressure increase. When blood pressure control was achieved, the incidence of cerebrovascular lesions was also significantly reduced.

Animals

Hemodynamic profile of the antihypertensive vasodilator cadralazine in conscious dogs.

Hemodynamic activity of cadralazine (ethyl-2-[6-(2-hydroxypropyl)-ethylaminol-3-pyridazinyl hydrazine carboxylate), a new, long-acting antihypertensive agent, was evaluated on systemic and regional circulation in conscious dogs. Cadralazine given i.v. (1 mg/kg) caused a sustained fall in total peripheral vascular resistances and mean blood pressure (from 103 to 90 mmHg) and an increase in heart rate (from 97 to 161 beats/min). Heart rate variations paralleled the drop in peripheral resistances. Cadralazine produced a consistent increase in cardiac output, and this effect was related to the increase in heart rate. No significant change in myocardial contractility was observed. Blood flow was increased and vascular resistances decreased in coronary, iliac and mostly in renal vascular beds, whereas the variations in the mesenteric district were not significant. This hemodynamic pattern characterizes cadralazine as a vasodilator. Changes in hemodynamic responses to epinephrine (1 microgram/kg i.v.) after cadralazine treatment were also evaluated. Cadralazine reduced hypertension and bradycardia effects, increased hypotension and tachycardia responses, and caused a further increase in cardiac output and coronary blood flow. These effects of cadralazine are not due to alpha-blocking or to beta-stimulating properties.

Animals

Methylazoxymethanol microencephaly in rats: neurochemical characterization and behavioral studies with the nootropic oxiracetam.

The administration of methylazoxymethanol (MAM) to pregnant rats induced a marked reduction in the weight of the offspring's brain. This reduction was due to aplasia of the cortex and hippocampus, whose thicknesses were 50% of those of control animals. A significant reduction was also observed in the striatum. This aplasia could be ascribed to the antimitotic effect of MAM, which, when given at gestational day 15, prevented the development of neurons in the three brain areas mentioned. Indeed, we infer here that the total number of GABA-receptor complexes, as measured by [3H]muscimol and [3H]flunitrazepam binding, was reduced to the same degree as was the weight of the cortex. Similarly, total [3H]haloperidol binding sites were reduced in the striatum. From the behavioral point of view, offspring of MAM-treated rats (MAM rats) showed impaired acquisition in the water-maze and pole-climbing tests, indicating that this brain aplasia had disrupted cognitive processes. In contrast, these animals showed normal growth, and grossly their behavior appeared normal. Oxiracetam, a new compound that belongs to the recently described class of nootropic drugs, was able to restore acquisition processes in MAM rats. We propose therefore that MAM rats might become an interesting and quite simple animal model for evaluation of new acquisition-enhancing drugs. Moreover, this model could also be useful to study the neurochemical correlates of cognitive processes.

Abnormalities, Drug-Induced

A screening method for substances potentially active on learning and memory.

A series of substances from different pharmacological classes was examined by two different tests for their activity on learning and memory. A concomitant evaluation was performed by use of a one-trial passive avoidance immediately followed by electroshock in mice and the pole-climbing test in rats. Only doses not producing changes in gross behavior (Irwin's test) were used. A facilitating action on all the considered parameters was observed for d-amphetamine, caffeine, L-glutamine, Mg pemoline, phosphorylserine, piracetam, strychnine, and tricyanoaminopropene. A worsening action was found for atropine, cycloheximide, diazepam, and morphine. Chlorpheniramine, diphenylhydantoin, GABA, imipramine, meclizine, mescaline, metrazol, and testosterone showed no or doubtful activity. Our results suggest that the parallel use of these relatively simple tests supplies information that is satisfactory for screening purposes and that has a high degree of predictability as substantiated by literature data.

Animals

[Effect of S-carboxymethylcysteine on blood levels of amoxycillin and its diffusion through lung parenchyma and pleural exudate in the rat].

The fixed combination (10 : 3) of amoxycillin and S-carboxymethylcysteine, which is indicated in the therapy of the respiratory tract infections, was given to rats by oral route to determine the blood levels and the concentrations in the pulmonary parenchyma and pleural exudate. In comparison with the antibiotic alone the combination determined higher levels of amoxycillin in the blood (0.5, 1.2 hours after administration) in the homogenized lung tissue (2 hours after administration) and in pleural inflammatory exudate (0.5, 1, 2 hours after administration) caused by intrapleural injection of carrageenan. The enhanced distribution of the antibiotic in the target tissues further supports the clinical usefulness of this combination.

Administration, Oral

Renal function studies with propildazine alone and in combination with propranolol in dogs.

The vasodilator antihypertensive propildazine acutely administered in awake dogs (0.1 mg/kg i.v.) produced an arterial blood pressure drop accompanied by tachycardia, decreased urine volume and urinary sodium excretion, and increased urinary potassium excretion. A transient, quickly reversible decrease in glomerular filtration rate was observed; on the contrary, the reduction in urine volume and urinary sodium excretion was longer lasting. There was indirect evidence that sodium retention was mainly caused by increased tubular reabsorption. Decreases in renal resistance, renal extraction of p-aminohippurate, and filtration fraction were observed together with an increase in renal plasma flow. Propildazine at the above dose in combination with propranolol (1 mg/kg i.v.) had a hypotensive effect with a smaller increase in heart rate and without significant variations in urine volume or urinary sodium excretion. These effects could be attributed to antagonism of the reflex-activated sympathoadrenal system by propranolol. In these conditions, the glomerular filtration rate was not significantly modified, while the effects on other renal parameters were similar to those observed with propildazine.

Animals

[3-Hydrazinepyridazine derivatives. III. Synthesis and anti-hypertensive activity of new 3-(2-acylhydrazine)-pyridazine-6-alkylamino substitutes].

The synthesis of 2-(6-dialkylamino-3-pyridazinyl)hydrazinecarboxylates (II) and hydrazides (V) from the corresponding 3-chloro-6-dialkylaminopyridazines (I) is described. The 6-substituted derivatives of 2,3-dihydro-1,2,4-triazolo[4,3-b]pyridazine-3-ones (III) and 1,2,4-triazolo[4,3-b)pyridazines (VI) were obtained by thermal cyclization of (II) and (V), respectively. The new acyl derivatives were evaluated together with todralazine and budralazine as antihypertensive agents in comparison with propildazine and hydralazine. The ethoxycarbonyl compound [(II g), ISF 2469] exhibits good antihypertensive activity particularly via oral administration. Its interesting pharmacodynamic properties, including slow onset and long-lasting action, qualify it for further pharmacological and clinical studies.

Animals

[Derivatives of 3-hydrazinopyridazine. II. Synthesis and antihypertensive activity of new 3-hydrazino-6-monoalkylaminopyridazines].

The synthesis of some 3-hydrazino-6-monoalkylaminopyridazines (VIII) by reaction of 3,6-dichloropyridazine with various N-monoalkylbenzylamines, followed by reaction with hydrazine and final debenzylation in an acidic medium, is described. The new compounds were evaluated as antihypertensive agents and exhibited the same or higher activity than hydralazine, but lower activity than propildazine (ISF 2123).

Animals

2,6-dialkylpiperazines. VIII (1)-N1-arylalkyl-N4-(2'-pyridyl)-2,6-dimethylpiperazines as adrenolytic and vasodilator agents.

A series of cis and trans N1-arylalkyl-N4-(2'-pyridyl)-2'6-dimethylpiperazines were synthetized and tested as adrenolytic and vasodilator agents. The N1-substitution with the 3,4-dimethoxyphenethyl group seems the most promising with regard to pharmacological activity, which was found to reside mainly in the trans isomer (3-II b). The adrenolytic activity of (3-II b) is comparable with that of the related 2-methyl derivative (1-III), while it is higher than that of (IV) in which the piperazine nucleus is C-unsubstituted.

Animals

Quinoxaline studies. 23. Potential antimalarials. Substituted 5,8-dimethoxy-6-[N-(omega-dimethylaminoalkyl)amino]quinoxalines were prepared: the first series with identical 2,3-substituents H, CH3, C6H5, C6H4-4-Cl, and CH2C6H5; and the second with identical styryl groups CH=CHC6H5, CH=CHC6H4-4-Cl, CH=CHC6H3-3,4-Cl2, CH=CHC6H4-4-F, CH=CHC6H4-4-CF3, and CH=CHC6H4-4-NO2. None of the substances possessed antimalarial activity; several were toxic at highest dosage levels.

3-Hydrazinopyridazines substituted in position 6 with a primary amine, secondary amine, or an alkoxy group were synthesized and screened for antihypertensive activity. In general, the 6-dialklamino derivatives are the most active; the (2-hydroxypropyl)methylamino chain provides the best combination of high antihypertensive activity and toxicity.

Animals