[Hemorrhage: operative problems].
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Biomedical subjects
Publications and source records attributed to A Bisio.
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Aggregation of platelets, stimulated by different agonists, was inhibited by omitting sample stirring or by preincubation of platelets with a monoclonal antibody against glycoproteins IIb-IIIa or with a pentapeptide containing the sequence Arg-Gly-Asp-Ser. In platelets stimulated by collagen, ADP and epinephrine, the inhibition of aggregation paralleled a reduction of both release reaction and thromboxane A2 formation. When thrombin was the stimulus, ATP release and thromboxane A2 production were unaffected (or only slightly modified) by the inhibition of platelet aggregation. These data add further evidence to the hypothesis that aggregation supports the activation of platelets stimulated by weak agonists.
We studied the influence of the occupancy of the fibrinogen receptor (GP IIb-IIIa complex) on two early aspects of agonist induced platelet activation: the increase of the intracellular Ca2+ concentration and the cytoskeleton reorganization. A monoclonal antibody, a peptide containing the RGD sequence and fibrinogen purified from human plasma were used as GP IIb-IIIa ligands. The obtained results demonstrated that fibrinogen receptor occupancy inhibits Ca2+ movement and cytoskeleton reorganization caused by low thrombin concentration and ADP.
Platelet aggregation in whole blood (WB) and in platelet rich plasma (PRP) was studied in 18 consecutive patients affected by idiopathic myelofibrosis (IM). On the basis of WB studies, 22% of patients were classified as normo-aggregating and 22% as hypo-aggregating, while 55% had spontaneous platelet aggregation (SPA). SPA was observed also when platelets from patients were stirred in the presence of normal erythrocytes, while it never occurred when normal platelets were stirred in the presence of red cells from patients. PRP studies revealed that 33% and 66% of patients were, respectively, hypo- and normo-aggregating. The most frequent abnormality in PRP was represented by defective or absent aggregation response to epinephrine.
A murine monoclonal antibody against glycoproteins IIb-IIIa of platelet membrane completely abolished platelet aggregation induced by epinephrine, arachidonic acid, and low concentration of collagen and thrombin, but it had only minor inhibitory effects on aggregation induced by ADP, higher amounts of collagen and thrombin, and these agents combined in pairs. The simultaneous studies of aggregation and ATP secretion demonstrated that aggregation plays an essential role in stimulating the platelet-release reaction, except for the thrombin-induced ATP secretion that seems to be largely dependent on fibrinogen binding to platelet surface.
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