TRIGGERED LOCAL RELEASE OF ACTIVE THROMBOLYTIC AGENTS
TRIGGERED LOCAL RELEASE OF ACTIVE THROMBOLYTIC AGENTS
批准号:
6628990
负责人:
VICTOR C YANG
金额:
$21.76万
依托单位国家:
美国
项目类别:
财政年份:
1996
资助国家:
美国
项目状态:
已结题
起止时间:
1996-09-01 至 2005-01-31
关键词:
coronary occlusion /thrombosis disease /disorder model dogs drug design /synthesis /production drug screening /evaluation fibrin fibrinolytic agents fibrinolytic therapy heparin immunoconjugates jugular veins laboratory rabbit laboratory rat method development pharmacokinetics plasminogen activator quaternary ammonium compound streptokinase
中文摘要
由血管血栓形成引起的心血管疾病是死亡的主要原因。 目前,治疗是使用血栓溶解剂,即纤溶酶原激活剂(PA)溶解血栓。纤溶酶原的活化产生降解纤维蛋白的纤溶酶。然而,纤溶酶也降解凝血因子。因此,溶栓治疗会引起纤溶酶的全身性产生,从而带来出血的风险。以前,我们提出了一种新的,前药和触发释放的方法,可以允许有针对性的溶栓没有出血的风险。该方法由两个组分组成:[i]与阴离子肝素连接的纤维蛋白靶向抗体(称为Ab-Hep);和[ii]阳离子修饰的PA(称为m-PA+)。 这两种成分通过静电相互作用连接。由于使用的阳离子很小,m-PA+将保留其催化活性。然而,由于附加的大分子阻断PA的活性位点,这种活性在与Ab-Hep结合后将被抑制。由于鱼精蛋白是一种临床肝素结合解毒剂,它可以安全地用于触发m-PA+从Ab-Hep-m-PA+复合物中释放。因此,该方法将允许注射纤维蛋白靶向但无活性的PA药物(从而通过中止纤溶酶的全身产生来减轻出血风险),随后在纤维蛋白存款附近触发活性m-PA+的释放。虽然这是一个全新的项目,数据很少,但基于其科学价值和临床意义,之前的申请在提交后不久就得到了NIH的全力支持。然而,由于没有明确说明的原因,NIH将整个资助期从4年缩短为3年。尽管受到更新时间缩短的阻碍,我们的集团取得了显着的进步和出色的生产力。 在短短的两年时间里,发表或提交了20篇手稿和10篇摘要。该项目的体外可行性,特别是前药和触发释放特征,已在血浆中得到证实。 在这个新的应用程序中,我们计划在这些有希望的发现的基础上进一步建立该项目。我们的综合具体目标是:[i]开发项目所必需的分析方法; [ii]通过生物或化学手段生产所需的m-PA+; [iii]生产Ab-Hep缀合物; [iv]体外测试最终Ab-Hep-m-PA+产品的功能; [v]检查其在大鼠中的药代动力学特性; [v]研究其在大鼠中的药代动力学特性。和[vi]使用兔颈静脉模型和临床模拟的犬冠状动脉内血栓形成模型测试它们的体内功能。
英文摘要
Cardiovascular diseases which result from thrombosis of blood vessels are a leading cause of deaths. At present, the treatment is dissolution of the thrombus using a thrombolytic agent, namely a plasminogen activator (PA). Activation of plasminogen produces plasmin which degrades fibrin. Plasmin, however, also degrades clotting factors. Thrombolytic therapy which introduces systemic generation of plasmin, therefore, carries the risk of hemorrhage. Previously, we proposed a novel, pro-drug and triggered release approach which could permit targeted thrombolysis without the bleeding risk. The approach consists of two components: [i] a fibrin- targeting antibody linked to an anionic heparin (termed Ab-Hep); and [ii] a cation-modified PA (termed m-PA+). These two components are linked via an electrostatic interaction. Since the used cations are small, m-PA+ would retain its catalytic activity. This activity, however, would be inhibited after binding to Ab-Hep due to blockage of the PA's active site by the appended macromolecules. Since protamine is a clinical heparin- binding antidote, it can be used safely to trigger the release of m-PA+ from the Ab-Hep-m-PA+ complex. Thus, the approach would permit injection of a fibrin-targeting but inactive PA drug (thereby alleviating the bleeding risk by aborting systemic generation of plasmin), and subsequently a triggered release of the active m-PA+ in close proximity of a fibrin deposit. Although it was a brand new project with minimal data, the previous application received full support from NIH shortly after submission based on its scientific merits and clinical significance. For reasons not clearly stated, however, the overall grant period was cut by NIH from 4 to 3 years. Despite being handicapped by a shortened time for renewal, our group has made remarkable progress and outstanding productivity. In a short 2-year period, 20 manuscripts and 10 abstracts have been published or submitted. The in vitro feasibility of the project, particularly on the pro-drug and triggered-release features, have been demonstrated in plasma. In this new application, we plan to build upon those promising findings and further establish the project. Our integrated specific aims are: [i] develop analytical methods essential to the project; [ii] produce the desired m-PA+ by biological or chemical means; [iii] produce the Ab-Hep conjugates; [iv] test the functions of the final Ab-Hep-m-PA+ products in vitro; [v] examine their pharmacokinetic properties in rats; and [vi] test their functions in vivo using a rabbit jugular vein model and a clinically- simulated canine intracoronary thrombosis model.
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