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Biomedical subjects

M H Pietraszek

Publications and source records attributed to M H Pietraszek.

18 recordsLinked to original sources

Endothelins inhibit serotonin-induced platelet aggregation via a mechanism involving protein kinase C.

Endothelins are a family of three peptides that act as local hormones released by the endothelium. They were found to inhibit rabbit and dog platelet aggregation in vivo, but no effect was observed in vitro. In order to investigate the possible interaction between endothelins and human platelet serotonin receptors, their effects on platelet aggregation induced by serotonin was studied. Endothelin-1, -2 and -3 had a dual action, on platelet aggregation and calcium mobilization induced by serotonin. When added at the same time as serotonin, endothelin potentiated the response to the amine. On the contrary, preincubation of platelet suspension with endothelin resulted in a concentration-dependent inhibition of the serotonin-mediated platelet response. Moreover, endothelin-1 inhibited serotonergic amplification of epinephrine-induced aggregation of platelets. We hypothesize that endothelins can bind to the platelet membrane and interact with serotonin receptors. The diverse effect of endothelins on serotonin-induced aggregation and calcium mobilization may be due to stimulation of protein kinase C.

Adult

Blood serotonergic mechanisms in type 2 (non-insulin-dependent) diabetes mellitus.

Serotonin (5-hydroxytryptamine, 5HT) is believed to play a role in vasospasm and increased platelet aggregability that in turn could contribute to atherosclerosis. The present study was designed to evaluate a possible participation of serotonin in the development of vascular complications in diabetes mellitus. Whole blood and plasma serotonin, the platelet uptake and release of the amine and serotonin- induced platelet aggregation were studied in 32 patients with Type 2 diabetes. The patients were divided into three groups according to the presence and advancement of retinopathy. Mean levels of blood serotonin content were significantly lower in diabetic patients. The concentration of the amine in the plasma was markedly increased in diabetes. It was correlated with vascular changes of the retina. We established that platelets from diabetic patients took up less serotonin when compared to the control group. Concomitantly enhanced spontaneous release of 5HT from platelets was observed. The platelets of diabetic patients showed increased response to serotonin. There was a relation between serotonin-induced aggregation and the presence of retinopathy. These results suggest that serotonin may be involved in the pathogenesis of diabetic vasculopathy.

Adult

Plasminogen activators and plasminogen activator inhibitor 1 before and after venous occlusion of the upper limb in thromboangiitis obliterans (Buerger's disease).

Plasma levels of plasminogen activators (t-PA, u-PA) and their inhibitor (PAI-1) were studied in patients suffering from Buerger's disease and healthy volunteers before and after 15 minutes of venous occlusion test. The baseline levels of t-PA in group of patients did not differ from those of controls. On the contrary patients with Burger's disease showed a marked increase in u-PA antigen concentrations with concomitant decrease in PAI-1 antigen levels. During venous stasis t-PA antigen concentrations increased in all subjects, however it was much pronounced in controls. Venous occlusion resulted in significant decrease in free PAI-1 levels in the group of patients only. In conclusion, Buerger's disease is associated with the endothelial derangement with increased u-PA release and decreased PAI-1 release, which does not influence the function of fibrinolytic system. The fact that the reduced response of the endothelium to release t-PA after venous stasis goes in parallel with marked decrease in PAI-1 antigen levels seems to suggest that patients suffering from Buerger's disease are not at high risk of intravascular fibrin deposition.

Arm

Relationship between serotonergic measures in periphery and the brain of mouse.

Circadian rhythm and the relationship between the concentration of serotonin (5HT) and related substances (5-hydroxyindoleacetic acid; 5HIAA and tryptophan; Trp) in mouse brain, stomach and blood have been studied. All factors underwent circadian changes in the brain and blood. 5HT and 5HIAA levels in the stomach showed no circadian fluctuation. The concentrations of 5HT in the brain and blood did not correlate. Significant correlations were found between other serotonergic parameters analyzed in brain, stomach and blood. A significant negative correlation was observed between brain 5HIAA and blood 5HIAA. The concentration of tryptophan in the brain was correlated with the plasma total tryptophan level. There was fairly significant correlation (p less than 0.06) between brain serotonin and plasma tryptophan levels. The brain serotonin and tryptophan levels were strongly correlated (R = 0.410, p less than 0.03). Significant negative correlation was found between serotonin in the blood and serotonin in the stomach as well as between its level in the brain and in the stomach. The significance of these findings and their relationship to the use of peripheral serotonergic system as a model of neurons are discussed.

Animals

Diurnal patterns of serotonin, 5-hydroxyindoleacetic acid, tryptophan and fibrinolytic activity in blood of depressive patients and healthy volunteers.

Diurnal changes of serotonin-related factors in whole blood and fibrinolytic activity were determined in depressed patients and healthy controls. Whole blood serotonin concentration of depressed patients showed marked changes throughout daytime, with maximum values in the evening and lowest values in the morning, whereas its metabolite 5-HIAA followed a contrary pattern. The circadian rhythm of 5-HT and 5-HIAA in the control group was quite different from depressed patients. Plasma levels of tPA decreased from 12:30 to 16:30. Concentrations of free plasminogen activator inhibitor (PAI-1) and complex of tPA-PAI-1 decreased from 8:30 to 16:30. Plasma levels of total PAI-1 decreased from 8:30 to 16:30. Plasma levels of the fibrinolytic parameters may be lower in depressive patients than in normal controls. These results support the changes in the circadian rhythm of serotonin and its related substances in the blood of depressive patients.

Adult

PAI-1 plays an important role in the expression of t-PA activity in the euglobulin clot lysis by controlling the concentration of free t-PA.

The antigen levels of tissue plasminogen activator (t-PA) and plasminogen activator inhibitor-1 (PAI-1) were assayed in the plasma and in the euglobulin fraction, and their contributions to the euglobulin clot lysis time (ECLT) and t-PA activity were analyzed. Total and free PAI-1 levels in both fractions showed significant positive correlation with ECLT (p less than 0.001), whereas t-PA antigen level did not have a high correlation coefficient with ECLT. t-PA activity showed significant negative correlation with ECLT (p less than 0.001) and positive correlation with free t-PA level (p less than 0.001), which was calculated by the ratio of the concentrations of t-PA-PAI-1 complex and the free PAI-1. Thus free t-PA seems to dissolve the euglobulin clot and its concentration seems to be controlled by the concentration of free PAI-1. These findings were confirmed by the analyses of the effects of C1-inactivator and antibody against t-PA to regular ECLT and kaolin activated ECLT, the latter of which was only inhibited by the addition of C1-inactivator whereas the former was inhibited by anti-t-PA antibody.

Adolescent

Alcohol-induced depression: involvement of serotonin.

We examined tryptophan and serotonin (5-hydroxytryptamine) levels in the blood after consumption of alcohol. Forty-five minutes after drinking, whole blood serotonin concentration was significantly reduced, whereas no changes were observed in tryptophan level. The diurnal rhythm of 5-HT in subjects who the day before had drunk alcohol was quite different from the control group, but very similar to that of patients with depression. The results strongly suggest that the mechanism of depression after alcohol drinking may be related to serotonin.

Adult

Effect of mental stress on platelet aggregation: possible link to catecholamine levels.

The present study was aimed at testing the hypothesis about the relation between mental stress and platelet function. Plasma samples were obtained from 100 students immediately before, and 30 min and 7 h after undergoing a bleeding time test, which was used as mental stressor. Platelet responses to serotonin, ADP and collagen, as well as plasma catecholamine levels were assayed. Plasma serotonin levels had a high negative correlation with the bleeding time. Stress resulted in an increase in platelet responses to serotonin, ADP and to the elevation of catecholamine levels. Furthermore, a significant negative correlation between the platelet aggregation induced by ADP and collagen and the bleeding time was demonstrated. It is concluded that mental stress had a significant effect on platelet aggregation. This study provides evidence of increased platelet aggregability in association with elevated plasma catecholamine levels.

Adenosine Diphosphate

The serotonergic mechanisms are not involved in the inhibitory effect of captopril on rat platelet aggregation.

The influence of captopril on blood platelet aggregation and on serotonergic mechanisms in blood platelets were studied. In rats pretreated with captopril (10.0 mg/kg p.o.) platelet aggregation induced by ADP and collagen was significantly reduced. In vitro this drug had no inhibitory effect. Besides, captopril did not change the amplifying effect of serotonin on platelet aggregation. Captopril also had no influence on the uptake and storage of 5-hydroxytryptamine by rat blood platelets. These results show that serotonergic mechanisms are not involved in the suppressive effect of captopril on platelet aggregation.

Adenosine Diphosphate

Effects of verapamil, diltiazem and nifedipine on some parameters of hemostasis in the rat.

Together with a mechanism such as activation of the coagulation system, vascular smooth muscle contraction and the activation of blood platelets are important processes in the hemostasis. Various calcium channel blockers besides those found to be vasodilators (1) have been shown to influence the functioning of blood platelets (2). They inhibit the aggregation induced by ADP, adrenaline, arachidonic acid or collagen (3). From these data it has been suggested that significant differences exist in the ability of calcium channel blockers to inhibit aggregatory responses (4). In order to elucidate further the possible role of calcium channel blockers in hemostasis we analyzed the effect of verapamil, diltiazem and nifedipine on the bleeding time, the amount of initial blood loss, platelet aggregation and some coagulation parameters in rats.

Animals

Verapamil inhibition of 5-hydroxytryptamine (5HT) uptake in rat platelets.

The effect of verapamil on 5-hydroxytryptamine (5HT) uptake into rat blood platelets was investigated in vitro. Verapamil produced a non-competitive inhibition (IC50 = 8.2 +/- 0.5 microM) of 5HT uptake. The administration of verapamil to rats also produced inhibition of 5HT uptake and reduced the concentration of this amine in the platelets. The present data indicate that verapamil has an influence on the uptake processes for 5HT in blood platelets in rats.

Animals