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Platelet-derived porous nanomotor for thrombus therapy

机译:用于血栓治疗的血小板衍生多孔纳米运动

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The treatment difficulties of venous thrombosis include short half-life, low utilization, and poor penetration of drugs at thrombus site. Here, we develop one kind of mesoporous/macroporous silica/platinum nanomotors with platelet membrane (PM) modification (MMNM/PM) for sequentially targeting delivery of thrombolytic and anticoagulant drugs for thrombus treatment. Regulated by the special proteins on PM, the nanomotors target the thrombus site and then PM can be ruptured under near-infrared (NIR) irradiation to achieve desirable sequential drug release, including rapid release of thrombolytic urokinase (3 hours) and slow release of anticoagulant heparin (20 days). Meantime, the motion ability of nanomotors under NIR irradiation can effectively promote them to penetrate deeply in thrombus site to enhance retention ratio. The in vitro and in vivo evaluation results confirm that the synergistic effect of targeting ability from PM and motion ability from nanomotors can notably enhance the thrombolysis effect in both static/dynamic thrombus and rat model.
机译:静脉血栓形成的治疗困难包括血栓部位的半衰期,低利用率,低利用率和药物的渗透性差。在这里,我们开发一种具有血小板膜(PM)修饰(MMNM / PM)的一种介孔/大孔二氧化硅/铂纳米运动,用于依次靶向血栓处理的溶栓和抗凝血药物的递送。由PM的特殊蛋白质调节,纳米运动靶向血栓部位,然后PM可以在近红外(NIR)辐射下破裂,以达到所需的顺序药物释放,包括快速释放溶栓尿激酶(3小时)并缓慢释放抗凝血剂肝素(> 20天)。同时,纳尔辐射下纳米热管的运动能力可以有效地促进它们在血栓部位深处渗透以增强保持比率。体外和体内评估结果证实,从纳米热管的PM和运动能力的靶向能力的协同效应可以显着提高静态/动态血栓和大鼠模型中的溶栓作用。

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