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Biomedical subjects

W Buczko

Publications and source records attributed to W Buczko.

At least 145 records · Page 8Linked to original sources

Prolongation of rat tail bleeding time by ketanserin: mechanisms of action.

Serotonin (5-HT) may play a regulatory role in platelet-vessel wall interaction. This can be reliably investigated by measuring bleeding time. Ketanserin is a recently developed selective 5-HT2 receptor antagonist, reportedly effective against both platelet and vascular 5-HT activation. Ketanserin (5-10 mg/kg) significantly prolonged tail bleeding time measured in conscious rats by two different techniques. While mianserin (a 5-HT2 receptor antagonist exhibiting alpha-adrenolytic activity) also prolonged bleeding time, methysergide, metergoline and cyproheptadine did not. All three compounds acted as 5-HT2 receptor antagonists with appreciable affinity for 5-HT1 receptors. On the other hand, bleeding time was prolonged by either prazosin (a selective alpha 1-adrenoceptor antagonist) or labetalol (an alpha 1- and beta-receptor antagonist). In contrast it was not affected by phentolamine or nicergoline (alpha 1-alpha 2-receptor antagonists) nor by propranolol (a beta-receptor antagonist). The effect of prazosin was significantly increased by combining it with either ketaserin or metergoline. Depletion of platelet serotonin by reserpine did not result in any modification of bleeding time, unless reserpine was combined with an inhibitor of 5-HT synthesis. Platelet activation by 5-HT was neither potentiated by norepinephrine nor prevented by prazosin or phentolamine whereas ketanserin and methysergide were equally effective inhibitors. These findings argue against a role of platelet and/or vascular 5-HT2 receptors in the antihemostatic effect of ketanserin in rats. This drug prolongs bleeding time by antagonising vascular adrenoceptors (prazosin-like effect) and/or by preventing a synergistic interaction between 5-HT and catecholamines at the vascular level.

Animals↗

The effect of fibrinopeptides A and B on the circulatory action of dopamine.

Fibrinopeptides A and B potentiate the hypertensive action of dopamine in the rat and potentiate its hypotensive effects after alpha- and beta-adrenergic blockade. Dopamine receptor blockade with haloperidol completely abolished the effects of FAB. The possible mechanism of the observed effects is discussed.

Animals↗

The effect of strenuous exercise on the reactivity of the central dopaminergic system in the rat.

In rats subjected to physical strain the action of dopamine receptor agonists, amphetamine and apomorphine, was enhanced, but the effects of an antagonist, haloperidol, remained unchanged. The levels of biogenic amines in several brain regions were changed after the exercise. The results indicate that physical strain changes the functions of the central dopaminergic system in the rat.

Amphetamine↗

Lack of effects of fibrinogen degradation products on specific binding of [3H]spiroperidol and [3H]ADTN.

No effect of fibrinogen degradation products on specific binding of [3H]spiroperidol and [3H]ADTN was observed. Low molecular weight peptides derived from fibrinogen degradation by plasmin (FDP) increase the motor activity of rats [7] augment apomorphine- and amphetamine-induced stereotypy and diminish haloperidol catalepsy [2]. It has been suggested that FDP interact with central dopamine receptor [2]. Taking the above considerations into account it was decided to investigate the effect of FDP on specific binding of [3H] spiroperidol and 2-amino-6,7-dihydroxy-1,2,3,4-tetrahydronaphthalene ([3H]ADTN).

Animals↗

Reactivity of the central nervous system in the disseminated intravascular coagulation in rats.

The reactivity of the central nervous system in the disseminated intravascular coagulation was studied. In this state the action of pentylenetetrazol and thiopental were decreased. Also shortening of tonic phase of electric convulsions was observed. No changes were noted in the contents of noradrenaline and serotonin, whereas slight increase in dopamine level in some regions of brain was found. It seems that observed effects are connected with other mechanisms than interaction with central mediators.

Animals↗

Effect of increased fibrinolytic activity of rats blood on the action of some centrally acting drugs.

The action of some centrally acting drugs during high fibrinolytic activity of blood was studied. In these state the action of amphetamine increases and the action of thiopental and pentetrazol decreases. The observed changes may depend either on the altered pharmacokinetics of the compounds examined or on the neurohormonal background of the nervous tissue, changed under the influence of physical strain.

Amphetamine↗

Further studies on the effect of fibrinopeptides A and B on the central nervous system.

Fibrinopeptides A and B (FAB) given intraperitoneally increased general activity of rats without affecting motor coordination. FAB depressed thiopental-induced sleeping time, prolonged the latency of pentetrazol convulsions, shortened the tonic phase of electrogenic convulsions. The peptides depressed the dopamine level in investigated brain areas of rats and increased the level of homovanillic acid. FAB accelerated the disappearance of dopamine after alpha-methyl-p-tyrosine injection. The data indicate tha FAB stimulate the central nervous system and this seems to be related to their interaction with the central dopaminergic system.

Animals↗

Biological effects of degradation products of collagen by bacterial collagenase.

1 Collagen degradation products (CDP) resulting from bacterial collagenase digestion were fractionated by gel filtration and their biological activities in rats were estimated. 2 CDP induced the following kinin-like effects: increase in permeability of skin blood vessels, contraction of the isolated intestine of the rat, depression of locomotor activity and of motor coordination. 3 The most active CDP fraction was CDP III containing peptides of mol. wt. < 1000 D with a high percentage of hydroxyproline. 4 As compared with bradykinin, CDP III was less active in the skin permeability test and was 15,000 to 20,000 fold less effective in induction of isolated intestine contraction. 5 Depression of the CNS induced by 30 microgram of CDP III administered into the brain ventricle was similar to that observed after 4 microgram of bradykinin given by the same route. 6 CDP III prolonged the duration of sleep evoked by thiopentone and enhanced the threshold of convulsion induced by pentazol. 7 The activity of CDP in comparison to other low molecular weight peptides is discussed.

Animals↗

Biological properties of dialysable peptides derived from plasmin digestion of bovine fibrinogen preparations.

Dialysable peptides (M. W. less than 12,000) were obtained by plasmin digests of purified bovine fibrinogen. The biological effects of these peptides were studied in rats in three different test systems: ADP-induced platelet aggregation, isolated atria contractility and vascular permeability. The effects induced by the peptides were: inhibition of ADP-induced platelet aggregation, increase in the frequency of isolated atria contractions and local increase in vascular permeability. All these activities were concentration dependent. Six micrograms of the peptides were still effective in increasing vascular permeability; in the in vitro systems the smallest effective dose ranged between 165 and 650 mug/ml. Following elution through a Sephadex G-25 gel with bidistilled water, four fractions were obtained. The second fraction (M.W. about 5,000) was the most active, followed by the first and then the third one; the fourth fraction was inactive. These data suggest that local accumulation of peptides in vivo may be of clinical relevancy.

Adenosine Diphosphate↗

Positive chronotropic effect of dialysable peptides derived from plasmin digestion of bovine fibrinogen preparations.

Low-molecular weight dialysable peptides, obtained by plasmin degradation of purified bovine fibrinogen preparations, have been shown to increase the chronotropic activity of isolated rat atria. This effect was dose dependent and was inhibited by inhibitors of glycolysis (NaF and 2-deoxy-D-glucose), but not by an inhibitor of oxidative phosphorylation (2, 4-dinitrophenol). Propranolol, a beta-blocking agent, was also ineffective. Fibrinogen-derived peptides increased both cAMP levels and phosphorylase alpha activity in stimulated atria. The increase of these parameters was transitory and appeared to precede the occurrence of the positive chronotropic effect. In the test situation used, the biochemical and functional modifications induced by fibrinogen-derived peptides were similar to those induced by glucagon.

Animals↗