溶栓
静脉血栓形成
血栓
血栓形成
体内
深静脉
溶栓药
医学
光热治疗
尿激酶
材料科学
热疗
药理学
生物医学工程
外科
内科学
纳米技术
生物技术
心肌梗塞
生物
作者
Jiasheng Xu,Yu Zhou,Han Nie,Zhiwei Xiong,Huan Ouyang,Li Huang,Huaqiang Fang,Huixia Jiang,Feng Huang,Yalan Yang,Xingwei Ding,Xiaolei Wang,Weimin Zhou
摘要
Deep vein thrombosis (DVT) is a common and lethal complication of surgery. In the clinic, thrombolytic drugs are primarily used for treating DVT. However, the utilization of thrombolytic drugs is limited due to the risk of urokinase (UK)-related hemorrhagic complications. In this paper, a binary eutectic phase-change fatty acid composed of lauric acid and stearic acid was used to block the pores of gold-mesoporous silica core-shell nanoparticles, so as to deliver thrombolytic drugs. The eutectic mixture has a well-defined melting point at 39.2 °C, which can be used as a biocompatible phase-change material for hyperthermia-triggered drug release. The prepared system presents remarkable photothermal effects due to the gold nanoparticles and quick drug release in response to near-infrared irradiation (NIR). In addition, localized hyperthermia could also enhance the lysis of the thrombus. The thrombolytic effect of this system was evaluated in vitro and in vivo. Herein, a rabbit femoral vein thrombosis model was first built for imitating thrombolysis in vivo. The B-ultrasound was then used to monitor the changes in the thrombus after treatment. The results indicated that the reported system could be potentially used to deliver thrombotic drugs in the clinic.
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