首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Gene therapy to promote thromboresistance: Local overexpression of tissue plasminogen activator to prevent arterial thrombosis in an in vivo rabbit model
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Gene therapy to promote thromboresistance: Local overexpression of tissue plasminogen activator to prevent arterial thrombosis in an in vivo rabbit model

机译:基因疗法可促进血栓形成抵抗:在体内兔模型中局部表达纤溶酶原激活物可防止动脉血栓形成

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摘要

Tissue-type plasminogen activator (tPA) catalyzes the rate-limiting initial step in the fibrinolytic cascade. Systemic infusion of tPA has become the standard of care for acute myocardial infarction. However, even the relatively short-duration protocols currently employed have encountered significant hemorrhagic complications, as well as complications from rebound thrombosis. Gene therapy offers a method of local high-level tPA expression over a prolonged time period to avoid both systemic hemorrhage and local rebound thrombosis. To examine the impact of local tPA overexpression, an adenoviral vector expressing tPA was created. The construct was characterized functionally in vitro, and the function of the vector was confirmed in vivo by delivery to the rabbit common femoral artery. Systemic coagulation parameters were not perturbed at any of the doses examined. The impact of local overexpression of tPA on in vivo thrombus formation was examined subsequently in a stasis/injury model of arterial thrombosis. The construct effectively prevented arterial thrombosis in treated animals, whereas viral and nonviral controls typically developed occluding thrombi. This construct thus offers a viable technique for promoting a locally thromboresistant small-caliber artery.
机译:组织型纤溶酶原激活剂(tPA)催化纤溶级联反应中的限速初始步骤。 tPA的全身输注已成为急性心肌梗塞的治疗标准。但是,即使当前使用的时间相对较短的方案,也遇到了重大的出血并发症,以及反弹血栓形成的并发症。基因疗法提供了一种在长时间内局部表达高水平tPA的方法,可避免系统性出血和局部反弹血栓形成。为了检查局部tPA过表达的影响,创建了表达tPA的腺病毒载体。对该构建体进行体外功能表征,并通过递送至兔股总动脉在体内证实载体的功能。在任何检查剂量下,全身凝血参数均不受干扰。随后在动脉血栓形成的淤滞/损伤模型中检查了tPA局部过表达对体内血栓形成的影响。该构建物可有效预防治疗动物的动脉血栓形成,而病毒和非病毒对照通常会形成闭塞性血栓。因此,该构建体提供了用于促进局部抗血栓形成的小口径动脉的可行技术。

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