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1.
Circ Cardiovasc Imaging ; 13(4): e009536, 2020 04.
Article in English | MEDLINE | ID: mdl-32312114

ABSTRACT

BACKGROUND: It has recently been demonstrated that high-energy diagnostic transthoracic ultrasound and intravenous microbubbles dissolve thrombi (sonothrombolysis) and increase angiographic recanalization rates in patients with ST-segment-elevation myocardial infarction. We aimed to study the effect of sonothrombolysis on the myocardial dynamics and infarct size obtained by real-time myocardial perfusion echocardiography and their value in preventing left ventricular remodeling. METHODS: One hundred patients with ST-segment-elevation myocardial infarction were randomized to therapy (50 patients treated with sonothrombolysis and percutaneous coronary intervention) or control (50 patients treated with percutaneous coronary intervention only). Left ventricular volumes, ejection fraction, risk area (before treatment), myocardial perfusion defect over time (infarct size), and global longitudinal strain were determined by quantitative real-time myocardial perfusion echocardiography and speckle tracking echocardiography imaging. RESULTS: Risk area was similar in the control and therapy groups (19.2±10.1% versus 20.7±8.9%; P=0.56) before treatment. The therapy group presented a behavior significantly different than control group over time (P<0.001). The perfusion defect was smaller in the therapy at 48 to 72 hours even in the subgroup of patients with no recanalization at first angiography (12.9±6.5% therapy versus 18.8±9.9% control; P=0.015). The left ventricular global longitudinal strain was higher in the therapy than control immediately after percutaneous coronary intervention (14.1±4.1% versus 12.0±3.3%; P=0.012), and this difference was maintained until 6 months (17.1±3.5% versus 13.6±3.6%; P<0.001). The only predictor of left ventricular remodeling was treatment with sonothrombolysis: the control group was more likely to exhibit left ventricular remodeling with an odds ratio of 2.79 ([95% CI, 0.13-6.86]; P=0.026). CONCLUSIONS: Sonothrombolysis reduces microvascular obstruction and improves myocardial dynamics in patients with ST-segment-elevation myocardial infarction and is an independent predictor of left ventricular remodeling over time.


Subject(s)
High-Energy Shock Waves/therapeutic use , Mechanical Thrombolysis/methods , Microcirculation/physiology , Percutaneous Coronary Intervention/methods , ST Elevation Myocardial Infarction/physiopathology , ST Elevation Myocardial Infarction/therapy , Ventricular Remodeling , Echocardiography , Female , Heart/physiopathology , Heart Ventricles/diagnostic imaging , Heart Ventricles/physiopathology , Humans , Magnetic Resonance Imaging , Male , Middle Aged , Treatment Outcome
2.
J Am Coll Cardiol ; 73(22): 2832-2842, 2019 06 11.
Article in English | MEDLINE | ID: mdl-30894317

ABSTRACT

BACKGROUND: Preclinical studies have demonstrated that high mechanical index (MI) impulses from a diagnostic ultrasound transducer during an intravenous microbubble infusion (sonothrombolysis) can restore epicardial and microvascular flow in acute ST-segment elevation myocardial infarction (STEMI). OBJECTIVES: This study tested the clinical effectiveness of sonothrombolysis in patients with STEMI. METHODS: Patients with their first STEMI were prospectively randomized to either diagnostic ultrasound-guided high MI impulses during an intravenous Definity (Lantheus Medical Imaging, North Billerica, Massachusetts) infusion before, and following, emergent percutaneous coronary intervention (PCI), or to a control group that received PCI only (n = 50 in each group). A reference first STEMI group (n = 203) who arrived outside the randomization window was also analyzed. Angiographic recanalization before PCI, ST-segment resolution, infarct size by magnetic resonance imaging, and systolic function (LVEF) at 6 months were compared. RESULTS: ST-segment resolution occurred in 16 (32%) high MI PCI versus 2 (4%) PCI-only patients before PCI, and angiographic recanalization was 48% in high MI/PCI versus 20% in PCI only and 21% in the reference group (p < 0.001). Infarct size was reduced (29 ± 22 g high MI/PCI vs. 40 ± 20 g PCI only; p = 0.026). LVEF was not different between groups before treatment (44 ± 11% vs. 43 ± 10%), but increased immediately after PCI in the high MI/PCI group (p = 0.03), and remained higher at 6 months (p = 0.015). Need for implantable defibrillator (LVEF ≤30%) was reduced in the high MI/PCI group (5% vs. 18% PCI only; p = 0.045). CONCLUSIONS: Sonothrombolysis added to PCI improves recanalization rates and reduces infarct size, resulting in sustained improvements in systolic function after STEMI. (Therapeutic Use of Ultrasound in Acute Coronary Artery Disease; NCT02410330).


Subject(s)
Percutaneous Coronary Intervention/methods , ST Elevation Myocardial Infarction/therapy , Thrombolytic Therapy/methods , Ultrasonography, Interventional/methods , Aged , Combined Modality Therapy , Coronary Angiography , Electrocardiography , Female , Fluorocarbons/administration & dosage , Humans , Magnetic Resonance Imaging , Male , Microbubbles , Middle Aged , Prospective Studies , ST Elevation Myocardial Infarction/diagnostic imaging , Single-Blind Method , Treatment Outcome
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