Department of Radiology, Case Western Reserve University, Cleveland, OH, United States.
Department of Biomedical Engineering, Case Western Reserve University, Cleveland, OH, United States.
Adv Cancer Res. 2018;139:57-84. doi: 10.1016/bs.acr.2018.04.002. Epub 2018 May 24.
Ultrasound is the second most utilized imaging modality in the world because it is widely accessible, robust, and safe. Aside from its extensive use in diagnostic imaging, ultrasound has also been frequently utilized in therapeutic applications. Particularly, when combined with appropriate delivery systems, ultrasound provides a flexible platform for simultaneous real-time imaging and triggered release, enabling precise, on-demand drug delivery to target sites. This chapter will discuss the basics of ultrasound including its mechanism of action and how it can be used to trigger the release of encapsulated drug either through thermal or cavitation effects. Fundamentals of ultrasound contrast agents, how they enhance ultrasound signals, and how they can be modified to function as carriers for triggered and targeted release of drugs will also be discussed.
超声是世界上应用第二广泛的成像方式,因为它广泛易得、稳健且安全。除了在诊断成像中的广泛应用外,超声也经常用于治疗应用。特别是,当与适当的传递系统结合使用时,超声为同时实时成像和触发释放提供了一个灵活的平台,实现了对靶位的精确按需药物传递。本章将讨论超声的基本原理,包括其作用机制以及如何通过热效应或空化效应触发封装药物的释放。还将讨论超声对比剂的基本原理,它们如何增强超声信号,以及它们如何被修饰为用于触发和靶向药物释放的载体。