Comprehensive Stroke Center, University of Alabama Hospital, Birmingham, Alabama, USA.
Am J Cardiovasc Drugs. 2010;10(1):5-10. doi: 10.2165/11316850-000000000-00000.
Multiple in vitro and animal models have demonstrated the efficacy of ultrasound to enhance fibrinolysis. Mechanical pressure waves produced by ultrasound energy improve the delivery and penetration of alteplase (recombinant tissue plasminogen activator [tPA]) inside the clot. In human stroke, the CLOTBUST phase II trial showed that the combination of alteplase plus 2 hours of continuous transcranial Doppler (TCD) increased recanalization rates, producing a trend toward better functional outcomes compared with alteplase alone. Other small clinical trials also showed an improvement in clot lysis when transcranial color-coded sonography was combined with alteplase. In contrast, low-frequency ultrasound increased the symptomatic intracranial hemorrhage rate in a clinical trial. Administration of microbubbles (MBs) may further enhance the effect of ultrasound on thrombolysis by lowering the ultrasound-energy threshold needed to induce acoustic cavitation. Initial clinical trials have been encouraging, and a multicenter international study, TUCSON, determined a dose of newly developed MBs that can be safely administered with alteplase and TCD. Even in the absence of alteplase, the ultrasound energy, with or without MBs, could increase intrinsic fibrinolysis. The intra-arterial administration of ultrasound with the EKOS NeuroWave catheter is another ultrasound application for acute stroke that is currently being studied in the IMS III trial. Operator-independent devices, different MB-related techniques, and other ultrasound parameters for improving and spreading sonothrombolysis are being tested.
多种体外和动物模型已经证明了超声增强纤维蛋白溶解的功效。超声能量产生的机械压力波可改善纤维蛋白溶酶原激活物(tPA)在血栓内的输送和渗透。在人类中风中,CLOTBUST 二期试验表明,与单独使用纤维蛋白溶酶原激活物相比,阿替普酶联合 2 小时连续经颅多普勒(TCD)增加了再通率,产生了更好的功能结果趋势。其他小型临床试验还表明,当经颅彩色超声与阿替普酶联合使用时,血栓溶解率有所提高。相比之下,低频超声在一项临床试验中增加了症状性颅内出血的发生率。微泡(MBs)的给药可能通过降低诱导声空化所需的超声能量阈值进一步增强超声对溶栓的作用。初步临床试验令人鼓舞,一项多中心国际研究 TUCSON 确定了新开发的 MBs 的剂量,可与阿替普酶和 TCD 一起安全给药。即使没有阿替普酶,超声能量(有或没有 MBs)也可以增加内在的纤维蛋白溶解。EKOS NeuroWave 导管的动脉内超声给药是另一种用于急性中风的超声应用,目前正在 IMS III 试验中进行研究。正在测试用于改善和传播 sonothrombolysis 的操作员独立设备、不同的 MB 相关技术和其他超声参数。