Papadopoulos Nikolaos, Damianou Christakis
Department of Bioengineering, City University, London, United Kingdom.
Electrical Engineering Department, Cyprus University of Technology, Limassol, Cyprus.
J Stroke Cerebrovasc Dis. 2016 Aug;25(8):1864-77. doi: 10.1016/j.jstrokecerebrovasdis.2016.03.051. Epub 2016 May 2.
The low and incomplete recanalization performance of thrombolytic therapy in patients with acute ischemic stroke has created the need to use focused ultrasound (FUS) energy as a way to enhance thrombolysis efficiency (sonothrombolysis). Using an in vitro flow model, the role of various parameters involved in FUS-enhanced tenecteplase (TNK-tPA [tissue plasminogen activator])-mediated thrombolysis was evaluated.
Fully retracted porcine blood clots were used for the proposed parametric studies. A spherically FUS transducer (4 cm diameter), focusing at 10 cm and operating at 1 MHz, was used. Pulsed ultrasound protocols were applied that maintained temperature elevation at the focus that never exceeded 1°C. Thrombolysis efficiency was measured as the relative reduction in the mass of the clot.
The role of various properties on thrombolysis efficacy was examined. These various properties are the acoustic power, the TNK-tPA concentration, the flow rate, the exposure time, the pulse length, the pulse repetition frequency, the duty factor, the formation of standing waves, the acoustic medium, and the administration of microbubbles. Study results have demonstrated that the parameters examined influenced thrombolysis efficacy and the degree of thrombolysis achieved by each parameter was measured.
Study findings helped us to optimize the treatment protocol for 1 MHz pulsed FUS that maximizes the thrombolytic efficacy of TNK-tPA, which potentially could be applied for therapeutic purposes. The outcome of the study showed poor thrombolysis efficacy, as with 30 minutes of FUS treatment only 370 mg of clot was removed.
急性缺血性中风患者溶栓治疗的再通率低且不完全,因此需要使用聚焦超声(FUS)能量来提高溶栓效率(超声溶栓)。利用体外血流模型,评估了FUS增强替奈普酶(TNK - tPA[组织型纤溶酶原激活剂])介导的溶栓过程中各种参数的作用。
使用完全收缩的猪血凝块进行拟议的参数研究。使用一个直径4厘米的球形FUS换能器,聚焦深度为10厘米,工作频率为1兆赫。采用脉冲超声方案,使焦点处的温度升高不超过1°C。溶栓效率以血凝块质量的相对减少量来衡量。
研究了各种特性对溶栓效果的作用。这些特性包括声功率、TNK - tPA浓度、流速、暴露时间、脉冲长度、脉冲重复频率、占空比、驻波的形成、声学介质以及微泡的给药。研究结果表明,所研究的参数影响溶栓效果,并测量了每个参数所达到的溶栓程度。
研究结果有助于我们优化1兆赫脉冲FUS的治疗方案,以最大限度地提高TNK - tPA的溶栓效果,这有可能用于治疗目的。研究结果显示溶栓效果不佳,因为在30分钟的FUS治疗后,仅去除了370毫克的血凝块。