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首页> 外文期刊>Frontiers in Neuropharmacology >Transfusion of Resting Platelets Reduces Brain Hemorrhage After Intracerebral Hemorrhage and tPA-Induced Hemorrhage After Cerebral Ischemia
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Transfusion of Resting Platelets Reduces Brain Hemorrhage After Intracerebral Hemorrhage and tPA-Induced Hemorrhage After Cerebral Ischemia

机译:静息血小板输注可减少脑出血后脑出血和脑缺血后tPA诱发的出血

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摘要

Background: Exacerbated blood-brain barrier (BBB) damage is related with tissue plasminogen activator (tPA)-induced brain hemorrhage after stroke. Platelets have long been recognized as the cellular orchestrators of primary haemostasis. Recent studies have demonstrated further that platelets are required for supporting intact mature blood vessels and play a crucial role in maintaining vascular integrity during inflammation. Therefore, we sought to investigate whether platelets could reduce tPA-induced deterioration of cerebrovascular integrity and lead to less hemorrhagic transformation. Methods: Mice were subjected to models of collagenase-induced intracerebral hemorrhage (ICH) and transient middle cerebral artery (MCA) occlusion. After 2 hours of MCA occlusion, tPA (10 mg/kg) was administered as an intravenous bolus injection of 1 mg/kg followed by a 9 mg/kg infusion for 30 minutes. Immediately after tPA treatment, mice were transfused with platelets. Hemorrhagic volume, infarct size, neurological deficit, tight junction and basal membrane damages, endothelial cell apoptosis, and extravascular accumulation of circulating dextran and IgG, and Evans blue were quantified at 24 hours. Results: Platelet transfusion resulted in a significant decrease in hematoma volume after ICH. In mice after ischemia, tPA administration increased brain hemorrhage transformation and this was reversed by resting but not activated platelets. Consistent with this, we observed that tPA-induced brain hemorrhage was dramatically exacerbated in thrombocytopenic mice. Transfusion of resting platelets ameliorated tPA-induced loss of cerebrovascular integrity and reduced extravascular accumulation of circulating serum proteins and Evans blue, associated with improved neurological functions after ischemia. No changes were found for infarct volume. Inhibition of platelet receptor glycoprotein VI (GPVI) blunted the ability of platelets to attenuate tPA-induced BBB disruption and hemorrhage after ischemia. Conclusions: Our findings demonstrate the importance of platelets in safeguarding BBB integrity and suggest that transfusion of resting platelets may be useful to improve the safety of tPA thrombolysis in ischemic stroke.
机译:背景:血脑屏障(BBB)恶化与中风后组织纤溶酶原激活物(tPA)引起的脑出血有关。血小板早已被认为是原发性止血的细胞协调器。最近的研究进一步证明,血小板需要支持完整的成熟血管,并在炎症过程中维持血管完整性方面起着至关重要的作用。因此,我们试图研究血小板是否可以减少tPA诱导的脑血管完整性的恶化并减少出血转化。方法:对小鼠进行胶原酶诱导的脑出血(ICH)和短暂性脑中动脉(MCA)阻塞模型。 MCA闭塞2小时后,以1毫克/公斤的静脉推注方式给予tPA(10毫克/公斤),然后以9毫克/公斤的剂量输注30分钟。 tPA处理后,立即向小鼠输注血小板。在24小时时定量出血量,梗塞面积,神经功能缺损,紧密连接和基底膜损伤,内皮细胞凋亡以及循环葡聚糖和IgG的血管外蓄积,以及伊文思蓝。结果:血小板输注导致ICH后血肿体积明显减少。在缺血后的小鼠中,tPA给药可增加脑出血的转化,而静止但未活化的血小板可逆转这种转化。与此相一致,我们观察到血小板减少症小鼠中tPA诱导的脑出血急剧加剧。静息血小板的输注改善了tPA诱导的脑血管完整性丧失,减少了循环血清蛋白和伊文思蓝的血管外积聚,改善了缺血后的神经功能。未发现梗塞体积的变化。血小板受体糖蛋白VI(GPVI)的抑制削弱了血小板减弱缺血后tPA诱导的BBB破坏和出血的能力。结论:我们的发现证明了血小板在维护BBB完整性方面的重要性,并建议静息血小板的输注可能有助于提高缺血性卒中中tPA溶栓的安全性。

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