首页> 外文期刊>Journal of thrombosis and thrombolysis >In vivo thrombolysis with targeted microbubbles loading tissue plasminogen activator in a rabbit femoral artery thrombus model
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In vivo thrombolysis with targeted microbubbles loading tissue plasminogen activator in a rabbit femoral artery thrombus model

机译:在兔股动脉血栓模型中靶向微泡加载组织纤溶酶原激活剂的体内溶栓

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The increasingly high incidence of ischemic stroke caused by thrombosis of the arterial vessels is one of the major factors that threaten people's health and lives in the world. The present treatments for thrombosis are unsatisfactory yet. We developed the microbubbles loading tissue plasminogen activator (tPA) and their in vitro thrombolysis efficacy under ultrasound exposure has been proved previously. We tried to investigate their thrombolysis effect in vivo in this present study. Thrombus model was made by clamping bilateral femoral arteries in 70 arteries of 40 rabbits. The targeted tPA-loaded microbubbles were made by lyophilization, taking arginine-glycine-aspartic acid-serine peptide as the targeting ligand. Its thrombolysis efficacy, calculated as count rate and efficiency rate of recanalization, was evaluated by Pearson's χ2 and One-way ANOVA, respectively. The count rate of recanalization of the targeted tPA-loaded microbubbles under ultrasound exposure (70 %) was similar to that of the combination of tPA, microbubbles and ultrasound exposure (80 %) (P = 0.61), while its tPA dosage (0.06 mg/kg) was much less than that of latter (0.9 mg/kg). Its efficiency rate of recanalization was the highest among all groups (53.22 ± 40.39 %) (P 0.01). Ultrasound-induced targeted tPA-loaded microbubbles release is a promising thrombolytic method with satisfactory thrombolytic efficacy, lowered tPA dose and potentially decreased hemorrhagic risk.
机译:由动脉血管血栓形成引起的缺血性中风的发病率越来越高,是威胁世界人民健康和生命的主要因素之一。目前对于血栓形成的治疗还不能令人满意。我们开发了微泡加载组织纤溶酶原激活剂(tPA),其在超声照射下的体外溶栓作用已得到证明。在本研究中,我们试图研究它们在体内的溶栓作用。通过将40只家兔的70条动脉夹在双侧股动脉中来建立血栓模型。以精氨酸-甘氨酸-天冬氨酸-丝氨酸肽为靶向配体,通过冻干制备靶向tPA的微泡。分别通过皮尔森的χ2和单向方差分析评估其溶栓效果,计算方法为计数率和再通效率。在超声暴露下,目标tPA加载的微泡的再通计数率(70%)与tPA,微泡和超声暴露的组合再通计数率(80%)相似(P = 0.61),而其tPA剂量(0.06 mg) / kg)远小于后者(0.9 mg / kg)。再通的再通效率在所有组中最高(53.22±40.39%)(P <0.01)。超声诱导的靶向tPA加载的微泡释放是一种有希望的溶栓方法,具有令人满意的溶栓效果,降低的tPA剂量和潜在的出血风险。

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