Intracranial Clot Lysis With Intravenous Microbubbles and Transcranial Ultrasound in Swine
- 1 October 2004
- journal article
- research article
- Published by Wolters Kluwer Health in Stroke
- Vol. 35 (10), 2407-2411
- https://doi.org/10.1161/01.str.0000140890.86779.79
Abstract
Background and Purpose— Destruction of microbubbles by transcutaneous low-frequency ultrasound (LFUS) has been used to lyse adjacent clot and recanalize acutely thrombosed vessels. LFUS with intraarterial microbubbles has been shown to lyse cerebral clot rapidly in pigs without thrombolytic drugs. We hypothesized that intravenous platelet-targeted microbubbles with LFUS may be a rapid noninvasive technique to recanalize thrombosed intracerebral vessels. Methods— After angiography, 0.5 cc of autogenous thrombus was injected into 1 ascending pharyngeal artery of a pig, occluding it and the rete mirabile. These vessels connect the carotid to the internal carotid and are the main cerebral blood supply. Saline control or intravenous decafluorobutane-sonicated dextrose albumin microbubbles tagged with a subtherapeutic quantity of glycoprotein 2b/3a receptor inhibitor eptifibatide (75 U/kg plus 12 cc of microbubbles administered over 21 minutes), or eptifibatide control, was given with transcutaneous temporal LFUS (1 MHz at 2.0 W/cm2) for 24 minutes. Angiography followed with scoring of declotting and flow. The same protocol was repeated on the contralateral side with the other test fluid so each animal received a saline control and either tagged microbubble or eptifibatide alone. Results— Fifteen pigs completed the protocol with a mean clot age of 4.6 hours. Using tagged microbubbles, 6 of 8 achieved success compared with 0 of 7 receiving eptifibatide alone (P=0.007) and 1 of 15 receiving saline alone (P=0.02). Conclusions— Intravenous platelet-targeted microbubbles combined with transcranial LFUS can rapidly open acute intracranial thrombotic occlusions. Further development for ischemic stroke therapy is justified.Keywords
This publication has 16 references indexed in Scilit:
- CLOTBUST: Design of a Randomized Trial of Ultrasound‐Enhanced Thrombolysis for Acute Ischemic StrokeJournal of Neuroimaging, 2004
- Microbubble Potentiated Ultrasound as a Method of Stroke Therapy in a Pig Model: Preliminary FindingsJournal of Vascular and Interventional Radiology, 2003
- Combination reperfusion therapy with eptifibatide and reduced-dose tenecteplase for ST-elevation myocardial infarctionJournal of the American College of Cardiology, 2003
- Microbubble-augmented Ultrasound Declotting of Thrombosed Arteriovenous Dialysis Grafts in DogsJournal of Vascular and Interventional Radiology, 2003
- Targeted-Microbubble Binding Selectively to GPIIb IIIa Receptors of Platelet ThrombiInvestigative Radiology, 2002
- Cerebral hemorrhage after intra-arterial thrombolysis for ischemic strokeNeurology, 2001
- Microbubble Potentiated Ultrasound as a Method of Declotting Thrombosed Dialysis Grafts: Experimental Study in DogsCardioVascular and Interventional Radiology, 2001
- Thrombolytic enhancement with perfluorocarbon-exposed sonicated dextrose albumin microbubblesAmerican Heart Journal, 1996
- A review of in vitro bioeffects of inertial ultrasonic cavitation from a mechanistic perspectiveJapanese Journal of Clinical Oncology, 1996
- Thresholds for transient cavitation produced by pulsed ultrasound in a controlled nuclei environmentThe Journal of the Acoustical Society of America, 1990