微气泡
超声波
药物输送
超声成像
生物医学工程
分子成像
超声波传感器
医学
药品
治疗性超声
纳米技术
靶向给药
材料科学
医学物理学
声带电泳
放射科
生物技术
体内
生物
作者
Yi-Ju Ho,Chih-Chung Huang,Chih‐Peng Fan,Hao-Li Liu,Chih Kuang Yeh
标识
DOI:10.1007/s00018-021-03904-9
摘要
Ultrasonic technologies show great promise for diagnostic imaging and drug delivery in theranostic applications. The development of functional and molecular ultrasound imaging is based on the technical breakthrough of high frame–rate ultrasound. The evolution of shear wave elastography, high-frequency ultrasound imaging, ultrasound contrast imaging, and super-resolution blood flow imaging are described in this review. Recently, the therapeutic potential of the interaction of ultrasound with microbubble cavitation or droplet vaporization has become recognized. Microbubbles and phase-change droplets not only provide effective contrast media, but also show great therapeutic potential. Interaction with ultrasound induces unique and distinguishable biophysical features in microbubbles and droplets that promote drug loading and delivery. In particular, this approach demonstrates potential for central nervous system applications. Here, we systemically review the technological developments of theranostic ultrasound including novel ultrasound imaging techniques, the synergetic use of ultrasound with microbubbles and droplets, and microbubble/droplet drug-loading strategies for anticancer applications and disease modulation. These advancements have transformed ultrasound from a purely diagnostic utility into a promising theranostic tool.
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