Plasminogen activator inhibitor-1 released from activated platelets plays a key role in thrombolysis resistance. Studies with thrombi generated in the Chandler loop.

H A Stringer, P van Swieten, H F Heijnen, J J Sixma, H Pannekoek
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引用次数: 94

Abstract

To investigate the potential role of plasminogen activator inhibitor-1 (PAI-1), which is released from the alpha-granules of activated platelets, in thrombolysis resistance, we employed a model (the "Chandler loop") that mimics the formation of arterial thrombi in vivo and that can be manipulated in terms of rheological parameters and composition of blood cells. Light and electron microscopy revealed that the distribution of blood cells in Chandler thrombi is polarized, as it is in arterial thrombi, resulting in platelet-rich "white heads" and red blood cell-rich "red tails.". Resistance toward tissue-type plasminogen activator (TPA)-mediated thrombolysis parallels the presence of platelets that are fully activated in this system. We demonstrate that the PAI-1 released by the alpha-granules is preferentially retained within the thrombus and that the concentration of PAI-1 antigen is higher in the head than in the tail of the thrombus. The relative thrombolysis resistance of the heads of Chandler thrombi can be largely abolished by inclusion of an anti-PAI-1 monoclonal antibody that blocks that inhibitory activity of PAI-1 toward TPA. We propose that PAI-1, released from activated platelets, plays a key role in thrombolysis resistance and/or reocclusion after thrombolytic therapy. This is due to binding of PAI-1 to polymerized fibrin within the thrombus, followed by inhibition of TPA-mediated fibrinolysis.

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活化血小板释放的纤溶酶原激活物抑制剂-1在溶栓抵抗中起关键作用。在钱德勒环中产生血栓的研究。
为了研究纤溶酶原激活物抑制剂-1 (PAI-1)在溶栓抵抗中的潜在作用,我们采用了一个模型(“钱德勒环”),该模型模拟了体内动脉血栓的形成,并且可以根据流变参数和血细胞组成进行操作。光镜和电镜显示,与动脉血栓一样,钱德勒血栓中的血细胞分布呈极化,形成富含血小板的“白头”和富含红细胞的“红尾”。对组织型纤溶酶原激活剂(TPA)介导的溶栓的抵抗与在该系统中完全激活的血小板的存在相似。我们证明,由α -颗粒释放的PAI-1优先保留在血栓内,并且PAI-1抗原在血栓头部的浓度高于血栓尾部。通过包含一种抗PAI-1单克隆抗体来阻断PAI-1对TPA的抑制活性,钱德勒血栓头部的相对溶栓阻力可以在很大程度上被消除。我们认为活化血小板释放的PAI-1在溶栓抵抗和/或溶栓治疗后再闭塞中起关键作用。这是由于PAI-1与血栓内聚合的纤维蛋白结合,随后抑制tpa介导的纤维蛋白溶解。
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