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Biomedical subjects

F Michal

Publications and source records attributed to F Michal.

At least 19 recordsLinked to original sources

Increase in sialic acids removable by neuraminidase during the shape change of platelets.

Human or rabbit platelets were activated by ADP or 5-hydroxytrypatamine and rapidly fixed with glutaraldehyde. The shape change associated with activation gave rise to an increase in sialic acids removable by neuraminidase. This increase, like the shape change, was prevented by adenosine or methysergide added before ADP or 5-hydroxytryptamine respectively. The results indicate the exposure of additional glycoprotein(s) on the platelet surface.

Adenosine Diphosphate

Shape change and aggregation of blood platelets: interaction between the effects of adenosine and diphosphate, 5-hydroxytryptamine and adrenaline.

1 The interaction of effects between 5-hydroxytryptamine (5-HT) and adenosine diphosphate (ADP) on human or rabbit platelets was investigated in vitro. The initial platelet shape change and their aggregation were measured in stirred, citrated platelet-rich plasma (PRP) at 37 degrees C by recording the rate and extent of changes in light scattering and light transmission. 2 Both the velocity and extent of aggregation and the velocity and extent of the rapid morphological change caused by ADP were enhanced by simultaneous addition of 5-HT. Methysergide but not imipramine inhibited the 5-HT effects. 3 Platelets were made refractory to the aggregating and shape changing effect of either ADP or 5-HT by repeated aggregation with the particular agent; platelets made refractory to ADP retained their responsiveness to 5-HT and platelets made refractory to 5-HT responded to ADP. Platelets pre-incubated for 3-10 min with 5-HT without aggregation showed greatly reduced aggregation on subsequent addition of ADP. Methysergide inhibited all the effects of 5-HT whilst imipramine was inactive. 4 When the shape change or aggregation of platelets induced by ADP was submaximal, addition of 5-HT increased it further. Pre-incubation of PRP with 5-HT before the addition of ADP resulted in failure of the secondary induction of aggregation or shape change by 5-HT. The secondary induction by 5-HT also did not occur in the presence of methysergide; imipramine had no inhibitory effect. Similar secondary induction of aggregation was shown by adrenaline injected during aggregation by ADP; the adrenaline effect was removed by phentolamine but not by propranolol. 5 Our results show that the initial change in shape of platelets and their aggregation can be induced by ADP or 5-HT in specific manner. The interaction of the effect of these substances on platelets can result in either increase in platelet sensitivity or, under certain conditions, decrease in platelet responsiveness. The increase or depression of platelet reactivity appears to be a highly specific effect and is probably mediated at specific receptors involved with platelet activation.

Adenosine Diphosphate

Accelerated uptake of 5-hydroxytryptamine by human blood platelets enriched in a sialic acid.

The enzymically catalysed incorporation of N-acetylneuraminic acid into human platelets, whether suspended in their own citrated plasma or in buffered saline containing 0.17 mM-sucrose, accelerated the uptake of 5-hydroxytryptamine. This acceleration decreased with time. The observations may be explained by assuming that N-acetylneuraminic acid is a component of a transport receptor for 5-hydroxytryptamine.

Biological Transport

Relative activities on and uptake by human blood platelets of 5-hydroxytryptamine and several analogues.

1. The specificity of platelet receptor sites for 5-HT uptake and for the rapid morphological change and aggregation was investigated with 5-hydroxy-tryptamine (5-HT) and seventeen analogues as well as with some antagonists of 5-HT.2. The analogues, with the exception of 5-hydroxy-N'N'-dibutyltryptamine, caused the rapid morphological change in platelets. In concentrations below those needed to produce the agonistic action (viz. 0.05-2.0 muM), these analogues themselves inhibited competitively the shape change caused by 5-HT.3. The velocity of change in shape caused by 5-HT was reduced in low Na media.4. Ten analogues produced platelet aggregation; three of these, viz. 5-methoxy-alpha-methyltryptamine, 5-hydroxy-alpha-methyltryptamine and 5-hydroxy-N'N'-diisopropyltryptamine), were approximately equipotent with 5-HT. Six analogues did not induce platelet aggregation.5. All the analogues which prevented the initial change in shape of platelets caused by 5-HT also inhibited its aggregating effect, apparently competitively with low K(i) values (0.02-1.6 muM).6. As with the inhibition of shape change, the inhibition of aggregation shows relatively low structural specificity of the receptor site.7. Methysergide was a potent inhibitor of shape change and aggregation (K(i) approximately 0.03 muM); imipramine was much less inhibitory (K(i) approximately 5-10 muM).8. Only one analogue (5-hydroxy-alpha-methyltryptamine) was taken up like 5-HT by platelets. All the other analogues inhibited the uptake of 5-HT by platelets (K(i)=0.2-2.7 muM).9. Methysergide was a weak inhibitor of 5-HT uptake (K(i) approximately 125 muM) whereas imipramine was very effective (K(i) approximately 0.3 muM).10. Our results show that the initial change in shape of platelets is required for and precedes aggregation. The structural specificity of the platelet receptor concerned with shape change and aggregation caused by 5-HT appears low whereas the uptake mechanism is a highly specific one. The uptake probably proceeds through more than one step, the relationship between the steps is not yet clear.

Blood Coagulation