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血小板促凝血活性与聚集无关。

Platelet procoagulant activity is independent of aggregation.

作者信息

Rendu F, Lavie P, Saleun S, Lasne D

机构信息

INSERM Unite 428, Risque Thrombotique et Mecanismes de l'Hemostase, Faculte des Sciences Pharmaceutiques et Biologiques Paris V, France.

出版信息

Nouv Rev Fr Hematol (1978). 1995;37(6):327-31.

PMID:8907627
Abstract

Platelet prothrombinase activity and aggregation were studied in parallel in the same platelet suspensions with the aim of determining the relationship between these two responses. Stimulation of platelets with thrombin (0.12 U/ml) plus collagen (20 mu g/ml) led to maximum thrombin generation when the aggregation intensity was still only 30%. Since the rate of thrombin formation then remained constant as aggregation intensity was still only 30%. Since the rate of thrombin formation then remained constant as aggregation increased up to its maximum intensity, the aggregation processes did not appear to result in partial masking of any procoagulant surface. This was confirmed by the fact that thrombin generation was the same on aggregated platelets as on activated platelets prevented from aggregating by addition of RGDS. Finally, maximum 5-hydroxy-tryptamine release could be obtained in the absence of thrombin generation. Thus platelet procoagulant activity did not appear to be related to aggregation or secretion and thrombin formation on the surface of activated platelets was in fact two to three times more important in the absence of stirring than under the conditions of continuous stirring required for aggregation. In conclusion, these results suggest procoagulant activity and aggregation to be two independent platelet responses which occur in different physiological situations.

摘要

在相同的血小板悬液中同时研究了血小板凝血酶原酶活性和聚集情况,目的是确定这两种反应之间的关系。用凝血酶(0.12 U/ml)加胶原蛋白(20μg/ml)刺激血小板,当聚集强度仍仅为30%时,凝血酶生成达到最大值。由于随后凝血酶形成速率保持恒定,而聚集持续增加直至达到最大强度,因此聚集过程似乎并未导致任何促凝表面的部分掩盖。这一点通过以下事实得到证实:聚集血小板上的凝血酶生成与通过添加RGDS阻止聚集的活化血小板上的凝血酶生成相同。最后,在没有凝血酶生成的情况下也能获得最大5-羟色胺释放。因此,血小板促凝活性似乎与聚集或分泌无关,并且在没有搅拌的情况下,活化血小板表面的凝血酶形成实际上比聚集所需的连续搅拌条件下重要两到三倍。总之,这些结果表明促凝活性和聚集是两种独立的血小板反应,发生在不同的生理情况下。

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