Department of Ultrasound, Xinqiao Hospital, Third Military Medical University, Shapingba, Chongqing, China.
J Thromb Thrombolysis. 2010 Jul;30(1):29-35. doi: 10.1007/s11239-010-0450-z.
Thrombosis is the common mechanism of various diseases of heart and vasculature and their major morbility and mortality. An efficient, safe and easy thrombolysis method is needed. We tried to develop a new type of ultrasound microbubbles carrying thrombolytics and simultaneously targeting to thrombus, which could bind with thrombus specifically and release the encapsulated drug locally under the ultrasound exposure. Microbubbles carrying tissue plasminogen activator (tPA) and Arg-Gly-Asp-Ser tetrapeptide (RGDS) were prepared by lyopyilization. Their properties were detected, including morphology, particle size, surface potential and pH. The results showed that the microbubbles were suitable for intravenous injection. The envelope rate of tPA, detected by ELISA, was (81.12 +/- 2.44%), and the conjugate rate of RGDS, detected by flow cytometer, was (94.49 +/- 6.19%). The tPA encapsulated in microbubbles kept fibrinolysis activity under the conditions of both natural releasing and ultrasound exposure, checked by agarose fibrin plate process. The contrast-enhanced ultrasonography (CEU) in rabbit liver showed that they were good for enhanced ultrasound imaging. The in vitro thrombolysis of the microbubbles to the blood clots from healthy human was detected with a mimical flowing model propelled by peristaltic pump. The drug-loaded microbubbles plus ultrasound irradiation got higher thrombolysis with the lowest dosage. The tPA-loaded microbubbles targeting to thrombus can be prepared by lyopyilization, which will bring out a novel way for the targeting drug-released thrombolysis therapy.
血栓形成是多种心血管疾病的共同机制,也是其主要的发病率和死亡率的原因。因此,我们需要一种高效、安全、简便的溶栓方法。我们试图开发一种新型的载溶栓药物的超声微泡,并同时靶向血栓,使其在超声暴露下能够特异性结合血栓并局部释放包裹的药物。通过冷冻干燥法制备载组织型纤溶酶原激活剂(tPA)和精氨酸-甘氨酸-天冬氨酸-丝氨酸四肽(RGDS)的微泡。检测其性质,包括形态、粒径、表面电位和 pH 值。结果表明,微泡适合静脉注射。ELISA 法检测 tPA 的包封率为(81.12 ± 2.44%),流式细胞仪检测 RGDS 的偶联率为(94.49 ± 6.19%)。微泡中包裹的 tPA 在自然释放和超声暴露条件下均保持纤溶活性,通过琼脂糖纤维蛋白平板法进行检测。兔肝的超声增强造影(CEU)显示,它们有利于增强超声成像。采用蠕动泵驱动的模拟流动模型检测了微泡对健康人血液凝块的体外溶栓作用。载药微泡联合超声辐照,在最低剂量下获得了更高的溶栓效果。通过冷冻干燥法制备的靶向血栓的载 tPA 微泡,为靶向释药溶栓治疗带来了新的途径。