首页> 外文期刊>Thrombosis and Haemostasis: Journal of the International Society on Thrombosis and Haemostasis >Ticlopidine inhibits the prothrombotic effects of thrombopoietin and ameliorates survival after supralethal total body irradiation.
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Ticlopidine inhibits the prothrombotic effects of thrombopoietin and ameliorates survival after supralethal total body irradiation.

机译:噻氯匹定可抑制血小板生成素的促血栓形成作用,并能改善人上腹部全身照射后的存活率。

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摘要

Thrombopoietin modulates the response of platelets to several agonists and, on the other hand, those agonists can be released following irradiation. Thus, we have determined the effects of thrombopoietin, on its own and in combination with ticlopidine, an anti-platelet drug, on platelet activation, thrombosis formation and survival of irradiated C57BL6/J mice. Administration of thrombopoietin 2 h after 9 Gy total body irradiation increased the 125I-fibrin deposition in mouse tissues and accelerated platelet consumption as revealed by an enhanced drop in platelet counts. Additionally, the number of activated platelets, i.e. those expressing P-selectin on their membrane, was higher in thrombopoietin-treated mice as compared to the placebo group, regardless ex vivo stimulation with agonists. These effects of thrombopoietin on platelet activation and consumption were reduced when mice were pretreated with ticlopidine. The combination of ticlopidine with thrombopoietin almost fully promoted 180-day survival, reaching the same efficacy as bone marrow transplantation, while only 30% of the mice treated with thrombopoietin alone survived. In summary, thrombopoietin induces long term-mortality of irradiated mice probably through platelet-mediated thrombosis and thus, ticlopidine efficiently counteracts these adverse effects of thrombopoietin.
机译:血小板生成素调节血小板对几种激动剂的反应,另一方面,那些激动剂可以在辐射后释放。因此,我们已经确定了血小板生成素本身以及与抗血小板药物噻氯匹定联用对经辐照的C57BL6 / J小鼠的血小板活化,血栓形成和存活的影响。 9 Gy全身照射后2小时给予血小板生成素可增加小鼠组织中125I纤维蛋白的沉积,并加速血小板消耗,这是由血小板计数下降引起的。另外,与安慰剂组相比,血小板生成素治疗的小鼠中活化的血小板的数量,即在其膜上表达P-选择蛋白的血小板的数量更高,而与激动剂的离体刺激无关。当用噻氯匹定预处理小鼠时,血小板生成素对血小板活化和消耗的这些作用降低了。噻氯匹定与血小板生成素的结合几乎完全促进了180天生存,达到了与骨髓移植相同的功效,而仅血小板生成素治疗的小鼠中只有30%存活。总之,血小板生成素很可能通过血小板介导的血栓形成诱导了辐射小鼠的长期死亡,因此噻氯匹定可有效抵消血小板生成素的这些不利影响。

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