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Biomedical subjects

M Airaksinen

Publications and source records attributed to M Airaksinen.

11 recordsLinked to original sources

The effects of alpha-2 adrenoceptor antagonist, atipamezole, on spatial learning in scopolamine-treated and aged rats.

In order to study whether noradrenergic drugs improve age-related cognitive dysfunctions the present experiments investigated whether atipamezole, a selective and specific alpha-2 antagonist, improves spatial learning impairment due to cholinergic blockade (scopolamine 0.8 mg/kg) or aging in rats. Previously, it has been shown that atipamezole dose-dependently (0.03-3.0 mg/kg) increases the turnover of noradrenaline in rat brain. According to the present results, atipamezole (0.1, 0.3, 0.6 mg/kg) did not affect spatial learning/memory when assessed in a free swim trial of the water maze task in control rats. Furthermore, atipamezole (0.1, 0.6 mg/kg) did not improve learning deficit in scopolamine treated young rats. Higher doses (greater than or equal to 1.0 mg/kg) of atipamezole could not be tested, because they induce floating behaviour in rats. In aged rats, which were screened to be impaired in the initial acquisition of the water maze task, 0.3 mg/kg atipamezole impaired further learning of this task. Because previous studies suggest that age-related learning impairment in the water maze may be, at least partly, due to a cholinergic deficit, the present results suggest that atipamezole which increases the release of noradrenaline in brain does not alleviate this learning deficit.

Adrenergic alpha-Antagonists

Discrimination of tetrahydroaminoacridine responders by a single dose pharmaco-EEG in patients with Alzheimer's disease.

We report the results of our study suggesting that a single dose pharmaco-EEG may predict treatment response to tetrahydroaminoacridine (THA) in Alzheimer's disease (AD). 14 AD patients and 7 age-matched neurologically healthy controls were selected for the study. AD patients had 7 weeks' THA treatment. 6 patients were regarded as responders and 8 patients as nonresponders, respectively. AD patients as well as controls had a baseline EEG recording and next day another recording 90 minutes after a peroral single dose of 50 mg THA. The relative change from the baseline in the alpha-theta ratio was the most sensitive discriminator of responders and nonresponders (P = 0.004, ANOVA).

Aged

The effects of dorsal noradrenergic bundle lesions on spatial learning, locomotor activity, and reaction to novelty.

The dorsal noradrenergic bundle (DNB) of male Wistar rats was lesioned bilaterally using intracerebral injections of 6-hydroxydopamine neurotoxin. Some of the rats were trained in a water maze using an "alternation" strategy, where the two positions of the hidden platform in the pool were changed between successive trials in the daily tests, and other rats in a water maze, where the temperature of the water was lowered to about 11 degrees C. The rats trained in the cold-water maze were also tested in open-field and saccharin neophobia tests. No differences were found between the two groups in learning of water maze tasks or in locomotor activity in the open-field tests. However, the saccharin neophobia test revealed an increased neophobia in the DNB-lesioned rats.

Animals

Effect of acetylated derivatives of some sympathomimetic amines on the isolated auricles and tracheal chain of the guinea-pig.

The effects of acetylation of sympathomimetic amines, tyramine, amphetamine, ephedrine, phenylephrine, orciprenaline, and salbutamol, and their O- and N-acetyl derivatives and the effects of reserpine or physostigmine pretreatment on the isolated auricles and tracheal chain of guinea-pigs have been studied. All the parent drugs relaxed the tracheal chain and had a positive inotropic and chronotropic effect on the isolated auricles; only amphetamine, on the contrary, contracted the tracheal chain. O-acetylation of these sympathomimetic amines generally decreased less chronotropic than iontropic action on the isolated auricles. O-acetylation of tyramine however: actually increased the positive chronotropic activity of drug. As a rule, O-acetylation also decreased the beta-adrenergic effect of these compounds on the tracheal chain, but not so markedly as on the isolated auricles. N-acetylation generally abolished the adrenergic effects of these sympathomimetic amines on the isolated auricles and decreased those effects on the tracheal preparation. N,O-triacetylation of salbutamol abolished the stimulating effect of the parent drug on the auricles but increased the relaxant activity on the trachea. Physostigmine antagonized the effects of O-acetyltyramine and O-triacetylorciprenaline but not those of tyramine and orciprenaline on the trachea preparation. It is concluded that among the sympathomimetic amines acetylation may be utilized for the development of specific bronchodilators and O-acetylation for inducing drug latentiation.

Acetylation

Strain differences in regional brain histamine levels between genetically epilepsy-prone and resistant rats.

In order to further elucidate the possible role of histamine in the seizure model, we determined the histamine levels in different brain regions of genetically epilepsy-prone Krushinski-Molodkina (KM) rats. Histamine levels in the striatum, hippocampus, amygdala, midbrain, thalamus and hypothalamus of KM rats were significantly lower than in the epilepsy-resistant Wistar rats. Previously, we have reported that the audiogenic seizures of KM rats were reduced by metoprine, which can markedly increase brain histamine. These findings are in agreement with the hypothesis that central histamine neuron system may be involved in the inhibitory mechanism of seizures.

Acoustic Stimulation