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大剂量肾上腺素会增强血小板聚集,同时降低促凝活性。

High-Dose Epinephrine Enhances Platelet Aggregation at the Expense of Procoagulant Activity.

机构信息

Hemostasis and Platelet Research Laboratory, Division of Hematology and Central Hematology Laboratory, Lausanne University Hospital (CHUV) and University of Lausanne (UNIL), Lausanne, Switzerland.

出版信息

Thromb Haemost. 2021 Oct;121(10):1337-1344. doi: 10.1055/a-1420-7630. Epub 2021 May 13.

Abstract

Platelet activation is characterized by shape change, granule secretion, activation of fibrinogen receptor (glycoprotein IIb/IIIa) sustaining platelet aggregation, and externalization of negatively charged aminophospholipids contributing to platelet procoagulant activity. Epinephrine (EPI) alone is a weak platelet activator. However, it is able to potentiate platelet activation initiated by other agonists. In this work, we investigated the role of EPI in the generation of procoagulant platelets. Human platelets were activated with convulxin (CVX), thrombin (THR) or protease-activated receptor (PAR) agonists, EPI, and combination thereof. Platelet aggregation was assessed by light transmission aggregometry or with PAC-1 binding by flow cytometry. Procoagulant collagen-and-THR (COAT) platelets, induced by combined activation with CVX-and-THR, were visualized by flow cytometry as Annexin-V-positive and PAC-1-negative platelets. Cytosolic calcium fluxes were monitored by flow cytometry using Fluo-3 indicator. EPI increased platelet aggregation induced by all agonist combinations tested. On the other hand, EPI dose-dependently reduced the formation of procoagulant COAT platelets generated by combined CVX-and-THR activation. We observed a decreased Annexin-V-positivity and increased binding of PAC-1 with the triple activation (CVX + THR + EPI) compared with CVX + THR. Calcium mobilization with triple activation was decreased with the higher EPI dose (1,000 µM) compared with CVX + THR calcium kinetics. In conclusion, when platelets are activated with CVX-and-THR, the addition of increasing concentrations of EPI (triple stimulation) modulates platelet response reducing cytosolic calcium mobilization, decreasing procoagulant activity, and enhancing platelet aggregation.

摘要

血小板激活的特征为形态改变、颗粒分泌、纤维蛋白原受体(糖蛋白 IIb/IIIa)激活以维持血小板聚集、以及带负电荷的氨基磷脂外排,促进血小板促凝活性。肾上腺素(EPI)本身是一种较弱的血小板激活剂。然而,它能够增强其他激动剂引发的血小板激活。在这项工作中,我们研究了 EPI 在促凝血小板生成中的作用。用凝血栓蛋白(CVX)、凝血酶(THR)或蛋白酶激活受体(PAR)激动剂、EPI 以及它们的组合激活人血小板。通过透光比浊法或通过流式细胞术用 PAC-1 结合评估血小板聚集。用流式细胞术通过 Annexin-V 阳性和 PAC-1 阴性血小板将由 CVX 和 THR 联合激活诱导的促凝胶原-THR(COAT)血小板可视化。通过使用 Fluo-3 指示剂用流式细胞术监测细胞溶质钙通量。EPI 增加了所有测试激动剂组合诱导的血小板聚集。另一方面,EPI 剂量依赖性地降低了由 CVX 和 THR 联合激活产生的促凝 COAT 血小板的形成。与 CVX 和 THR 相比,我们观察到三重激活(CVX+THR+EPI)的 Annexin-V 阳性降低和 PAC-1 结合增加。与 CVX+THR 钙动力学相比,三重激活时用较高 EPI 剂量(1000 μM)时钙动员减少。总之,当用 CVX 和 THR 激活血小板时,加入递增浓度的 EPI(三重刺激)可调节血小板反应,减少细胞溶质钙动员,降低促凝活性,增强血小板聚集。

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