The Role of Ultrasound-Driven Microbubble Dynamics in Drug Delivery: From Microbubble Fundamentals to Clinical Translation

微气泡 药物输送 治疗性超声 翻译(生物学) 超声波 体内 声穿孔 生物医学工程 纳米技术 材料科学 化学 医学 放射科 生物化学 生物 基因 信使核糖核酸 生物技术
作者
Silke Roovers,Tim Segers,Guillaume Lajoinie,Joke Deprez,Michel Versluis,Stefaan C. De Smedt,Ine Lentacker
出处
期刊:Langmuir [American Chemical Society]
卷期号:35 (31): 10173-10191 被引量:187
标识
DOI:10.1021/acs.langmuir.8b03779
摘要

In the last couple of decades, ultrasound-driven microbubbles have proven excellent candidates for local drug delivery applications. Besides being useful drug carriers, microbubbles have demonstrated the ability to enhance cell and tissue permeability and, as a consequence, drug uptake herein. Notwithstanding the large amount of evidence for their therapeutic efficacy, open issues remain. Because of the vast number of ultrasound- and microbubble-related parameters that can be altered and the variability in different models, the translation from basic research to (pre)clinical studies has been hindered. This review aims at connecting the knowledge gained from fundamental microbubble studies to the therapeutic efficacy seen in in vitro and in vivo studies, with an emphasis on a better understanding of the response of a microbubble upon exposure to ultrasound and its interaction with cells and tissues. More specifically, we address the acoustic settings and microbubble-related parameters (i.e., bubble size and physicochemistry of the bubble shell) that play a key role in microbubble–cell interactions and in the associated therapeutic outcome. Additionally, new techniques that may provide additional control over the treatment, such as monodisperse microbubble formulations, tunable ultrasound scanners, and cavitation detection techniques, are discussed. An in-depth understanding of the aspects presented in this work could eventually lead the way to more efficient and tailored microbubble-assisted ultrasound therapy in the future.
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