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Application of acoustic droplet vaporization in ultrasound therapy

机译:声滴汽化在超声治疗中的应用

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摘要

Microbubbles have been used widely both in the ultrasonic diagnosis to enhance the contrast of vasculature and in ultrasound therapy to increase the bioeffects induced by bubble cavitation. However, due to their large size, the lifetime of microbubbles in the circulation system is on the order of minutes, and they cannot penetrate through the endothelial gap to enter the tumor. In an acoustic field, liquefied gas nanoparticles may be able to change the state and become the gas form in a few cycles of exposure without significant heating effects. Such a phenomenon is called as acoustic droplet vaporization (ADV). This review is intended to introduce the emerging application of ADV. The physics and the theoretical model behind it are introduced for further understanding of the mechanisms. Current manufacturing approaches are provided, and their differences are compared. Based on the characteristic of phase shift, a variety of therapeutic applications have been carried out both in vitro and in vivo. The latest progress and interesting results of vessel occlusion, thermal ablation using high-intensity focused ultrasound (HIFU), localized drug delivery to the tumor and cerebral tissue through the blood-brain barrier, localized tissue erosion by histotripsy are summarized. ADV may be able to overcome some limitations of microbubble-mediated ultrasound therapy and provide a novel drug and molecular targeting carrier. More investigation will help progress this technology forward for clinical translation.
机译:微泡已广泛用于超声诊断中以增强脉管系统的对比度以及在超声治疗中以增加由气泡空化引起的生物效应。然而,由于它们的大尺寸,其在循环系统中的寿命约为数分钟,并且它们不能穿透内皮间隙进入肿瘤。在声场中,液化的气体纳米颗粒可能会在暴露的几个周期内改变状态并变成气体形式,而不会产生明显的热效应。这种现象称为声滴汽化(ADV)。这篇综述旨在介绍ADV的新兴应用。介绍了物理学及其背后的理论模型,以进一步了解其机理。提供了当前的制造方法,并比较了它们的差异。基于相移的特征,已经在体外和体内进行了多种治疗应用。总结了血管闭塞的最新进展和有趣的结果,使用高强度聚焦超声(HIFU)进行的热消融,通过血脑屏障向肿瘤和脑组织的局部药物输送,组织变性引起的局部组织糜烂。 ADV可能能够克服微泡介导的超声治疗的某些限制,并提供一种新型药物和分子靶向载体。进行更多的调查将有助于将该技术向前推进以进行临床翻译。

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