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Acceleration of Tissue Plasminogen Activator-Mediated Thrombolysis by Magnetically Powered Nanomotors

机译:电动纳米马达促进组织纤溶酶原激活物介导的溶栓作用

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Dose control and effectiveness promotion of tissue plasminogen activator (t-PA) for thrombolysis are vitally important to alleviate serious side effects such as hemorrhage in stroke treatments. In order to increase the effectiveness and reduce the risk of stroke treatment, we use rotating magnetic nanomotors to enhance the mass transport of t-PA molecules at the blood clot interface for local ischemic stroke therapy. The in vitro experiments demonstrate that, when combined with magnetically activated nanomotors, the thrombolysis speed of low-concentration t-PA (50 μg mL~(-1)) can be enhanced up to 2-fold, to the maximum lysis speed at high t-PA concentration. Based on the convection enhanced transport theory due to rotating magnetic nanomotors, a theoretical model is proposed and predicts the experimental results reasonably well. The validity and efficiency of this enhanced treatment has been demonstrated in a rat embolic model.
机译:溶栓治疗的剂量控制和组织纤溶酶原激活剂(t-PA)的有效性提高对于缓解严重的副作用(例如中风治疗中的出血)至关重要。为了提高有效性并降低中风治疗的风险,我们使用旋转磁性纳米马达来增强血栓界面上t-PA分子的质量转运,以进行局部缺血性中风治疗。体外实验表明,与磁激活纳米马达组合使用时,低浓度t-PA(50μgmL〜(-1))的溶栓速度可提高至原来的2倍,达到高裂解速度。 t-PA浓度。基于旋转磁纳米电动机的对流增强输运理论,提出了一个理论模型并合理地预测了实验结果。这种增强治疗的有效性和效率已在大鼠栓塞模型中得到证实。

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