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Targeted drug delivery to flow-obstructed blood vessels using mechanically activated nanotherapeutics

机译:使用机械活化的纳米治疗剂将靶向药物递送至流动阻塞的血管

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摘要

Obstruction of normal blood flow, which occurs in a variety of diseases, including thromboembolism in stroke and atherosclerosis, is a leading cause of death and long-term adult disability in the Western world. This review focuses on a novel nanotherapeutic drug-delivery platform that is mechanically activated within blood vessels by high-fluid shear stresses to selectively target drugs to sites of vascular obstruction. In vitro and in vivo studies have shown that this approach can be used to efficiently lyse clots using a significantly lower amount of thrombolytic drug than is required when administered in a soluble formulation. This nanotherapeutic strategy can potentially improve both the efficacy and safety of thrombolytic drugs, particularly in patients who are at high risk for brain hemorrhage, and thus provide a new approach for the treatment of many life-threatening and debilitating vascular disorders.
机译:在西方世界,导致多种疾病(包括中风中的血栓栓塞和动脉粥样硬化)的正常血液流动受阻是死亡和长期成人残疾的主要原因。这篇综述的重点是新型的纳米治疗药物传递平台,该平台通过高流体剪切应力在血管内机械激活,以选择性地将药物靶向血管阻塞部位。体外和体内研究表明,该方法可用于溶解血凝块的方法,该方法使用的溶栓药物的量要比可溶制剂中所需的低得多。这种纳米治疗策略可以潜在地提高溶栓药的疗效和安全性,特别是在脑出血高风险患者中,从而为治疗许多威胁生命和使人衰弱的血管疾病提供了一种新方法。

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