溶栓
血栓
水蛭素
医学
光热治疗
光动力疗法
血栓形成
抗血栓
血小板
凝血酶
外科
内科学
心脏病学
材料科学
纳米技术
化学
有机化学
心肌梗塞
作者
Shuting Li,Kai Zhang,Zhaoyu Ma,Weiyun Zhang,Zhiyong Song,Wenjing Wang,Heyou Han
出处
期刊:Small
[Wiley]
日期:2022-11-07
卷期号:18 (51)
被引量:16
标识
DOI:10.1002/smll.202203184
摘要
Abstract Due to the high recurrence rate and mortality of venous thrombosis, there is an urgent need for research on antithrombotic strategies. Because of the short half‐life, poor targeting capabilities, bleeding complications, and neurotoxic effects of conventional pharmacological thrombolysis methods, it is essential to develop an alternative strategy to noninvasive thrombolysis and decrease the recurrence rate of venous thrombosis. A platelet‐mimetic porphyrin‐based covalent organic framework‐engineered melanin nanoplatform, to target delivery of hirudin to the vein thrombus site for noninvasive thrombolysis and effective anticoagulation, is first proposed. Owing to the thrombus‐hosting properties of platelet membranes, the nanoplatform can target the thrombus site and then activate hyperthermia and reactive oxygen species for thrombolysis under near‐infrared light irradiation. The photothermal therapy/photodynamic therapy combo can substantially improve the effectiveness (85.7%) of thrombolysis and prevent secondary embolism of larger fragments. Afterward, the highly loaded (97%) and slow‐release hirudin (14 days) are effective in preventing the recurrence of blood clots without the danger of thrombocytopenia. The described biomimetic nanostructures offer a promising option for improving the efficacy of thrombolytic therapy and reducing the risk of bleeding complications in thrombus associated diseases.
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