Department of Cardiology, Amsterdam Cardiovascular Sciences, Amsterdam UMC Location VUmc, Amsterdam, The Netherlands; Department of Cardiovascular Medicine, University of Nebraska Medical Center, Omaha, Nebraska, USA.
Department of Cardiovascular Medicine, University of Nebraska Medical Center, Omaha, Nebraska, USA; Department of Cardiology, First Affiliated Hospital of Nanjing Medical University, Nanjing, China.
Ultrasound Med Biol. 2021 Jul;47(7):1814-1825. doi: 10.1016/j.ultrasmedbio.2021.03.016. Epub 2021 Apr 23.
Nanoscale-diameter liquid droplets from commercially available microbubbles may optimize thrombus permeation and subsequent thrombus dissolution (TD). Thrombi were made using fresh porcine arterial whole blood and placed in an in vitro vascular simulation. A diagnostic ultrasound probe in contact with a tissue-mimicking phantom tested intermittent high-mechanical-index (HMI) fundamental multipulse (focused ultrasound [FUS], 1.8 MHz) versus harmonic single-pulse (HUS, 1.3 MHz) modes during a 10-min infusion of Definity nanodroplets (DNDs), Definity microbubbles (DMBs) or saline. The ability of FUS and intravenous DNDs to improve epicardial and microvascular flow was then tested in four pigs with left anterior descending thrombotic occlusion. Sixty in vitro thrombi were tested, 20 in each group. Percentage TD was significantly higher for DND-treated thrombi than DMB-treated thrombi and controls (DNDs: 42.4%, DMBs: 26.7%, saline: 15.0%; p < 0.0001 vs. control). The highest %TD was seen in the HMI FUS-treated DND group (51 ± 17% TD). HMI FUS detected droplet activation within the risk area in three of four pigs with left anterior descending thrombotic occlusion and re-canalized the epicardial vessel in two. DNDs with intermittent diagnostic HMI ultrasound resulted in significantly more intravascular TD than DMBs and have potential for coronary and risk area thrombolysis.
商业微泡产生的纳米级液滴可能优化血栓渗透和随后的血栓溶解 (TD)。血栓是使用新鲜的猪动脉全血制成的,并放置在体外血管模拟中。接触组织模拟体模的诊断超声探头测试了在 10 分钟的 Definity 纳滴(DND)、Definity 微泡(DMB)或生理盐水输注期间,间歇高机械指数(HMI)基本多脉冲(聚焦超声 [FUS],1.8 MHz)与谐波单脉冲(HUS,1.3 MHz)模式。然后,在四只左前降支血栓闭塞的猪中测试了 FUS 和静脉内 DND 改善心外膜和微血管血流的能力。对 60 个体外血栓进行了测试,每组 20 个。与 DMB 治疗的血栓和对照组相比,DND 治疗的血栓的 TD 百分比显着更高(DNDs:42.4%,DMBs:26.7%,生理盐水:15.0%;p <0.0001 与对照组相比)。在 HMI FUS 治疗的 DND 组中,TD 百分比最高(51 ± 17% TD)。在四只左前降支血栓闭塞的猪中,HMI FUS 在三只猪的风险区域内检测到了液滴激活,并在两只猪中重新开通了心外膜血管。间歇性诊断 HMI 超声的 DND 导致血管内 TD 明显多于 DMB,并有冠状动脉和风险区域溶栓的潜力。