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T Voronina

Publications and source records attributed to T Voronina.

4 recordsLinked to original sources

Effects of selective catechol-O-methyltransferase inhibitors on single-trial passive avoidance retention in male rats.

The effects of new selective catechol-O-methyltransferase (COMT) inhibitors entacapone (mainly peripheral effect) and tolcapone (acting also in the brain) on normal and impaired cognitive functions were studied in aversively motivated inhibitory avoidance using a single-trial passive avoidance paradigm in young adult rats. Passive avoidance retention latency was shortened by either scopolamine (1.0 mg/kg) or bilateral lesions to nucleus basalis magnocellularis (NBM) caused by infusions of ethylcholine aziridinium (AF64A). Entacapone (30 mg/kg) administered once before training or before the retention test, 24 h after training, prevented the effect of scopolamine but did not alter extinction in these rats. However, entacapone (30 mg/kg) prolonged lag time when given during the extinction process to intact rats after training. Tolcapone administered once before training (10 mg/kg) counteracted the effect of scopolamine. It prolonged retention latency of the intact rats when given after training (10 mg/kg). Tolcapone (3 mg/kg) also prolonged lag time when given during extinction to rats bearing NBM lesions. The effect of scopolamine on extinction and retrieval was not prevented by tolcapone. Only entacapone improved memory storage. Collectively, the present results indicate that COMT inhibitors prolong retention latencies in a single-trial passive avoidance test assessed at several memory phases.

Animals↗

Micro- and macrostructure of learning in active avoidance: a quantitative approach.

The dynamics of learning in the Active Avoidance test was analyzed at the trials level as well as at the level of daily sessions, each comprising numerous trials. The two scales (large scale for the sessions and small scale for the trials) were demonstrated to be mutually independent. The intermediate derived scales (blocks of trials) were found consistent among themselves and with small scale but independent of the large one. Moreover, the two extreme scales were kinetically discriminable. These results point to the existence of two independent mechanisms for large and small scale learning together with the need to postulate a consolidation process during the rest period.

Animals↗

Effects of bilateral cholinotoxin infusions on the behavior and brain biochemistry of the rats.

We examined behavioral and biochemical specificity and the general usefulness of the proposed rat model of Alzheimer's disease. Bilateral infusions of ethylcholine aziridinium (AF64A) into the basal magnocellular nuclei caused a deterioration of learning in passive and active avoidance tests, increased emotional reactivity, and decreased motoric activity. Choline acetyltransferase activity was decreased by 22% in the frontal cortex but increased by 8-10% in the hippocampus and hypothalamus. Noradrenaline and dopamine levels in the frontal cortex were decreased by 20%. In striatum, dopamine and its metabolites were strongly suppressed (by 50-60%). Also striatal noradrenaline (-48%) and 5-hydroxytryptamine (-34%) were significantly decreased. Hypothalamic 5-hydroxytryptamine was increased (+25%). Bilateral AF64A lesions decreased significantly (by 14-20%) activities of prolyl endopeptidase, dipeptidyl peptidase II and IV in hippocampal and frontal cortical brain homogenates. These results show that AF64A can be used to induce long-term learning deficits in the rat. However, striatal amine levels are also strongly suppressed, and are reflected as hypomotility and increased emotional reactivity. These changes may limit the usefulness of the rat model. Universally decreased peptidase activities offer interesting views regarding the role of peptidase inhibitors in amnestic disorders.

Animals↗

Cerebroprotective effect of nicergoline and interference with the anti-hypoxic effect of prostacyclin.

The cerebroprotective effect of nicergoline was studied using the following experimental methods: hypobaric and anoxic hypoxia in mice, complete ischemia by decapitation in mice, incomplete ischemia by bilateral carotid ligation in rats, hemic hypoxia in rats and asphyxic anoxia in cats. Xanthinol nicotinate, vincamine, vinpocetine and cinnarizine were used as reference drugs. In hypobaric hypoxia and complete ischemia by decapitation the interaction of nicergoline with the effect of prostacyclin (PGI2) was investigated. Nicergoline showed cerebroprotective effect of varying potency in all the methods used except asphyxic anoxia. Nicergoline manifested a synergic effect with PGI2 shifting its anti-hypoxic dose-response curve to the left.

Animals↗