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利用超声的力学效应进行无创治疗。

Exploiting the mechanical effects of ultrasound for noninvasive therapy.

机构信息

Physical Sciences Platform, Sunnybrook Research Institute, Toronto, ON, Canada.

Department of Medical Biophysics, Temerty Faculty of Medicine, University of Toronto, Toronto, ON, Canada.

出版信息

Science. 2024 Sep 13;385(6714):eadp7206. doi: 10.1126/science.adp7206.

Abstract

Focused ultrasound is a platform technology capable of eliciting a wide range of biological responses with high spatial precision deep within the body. Although focused ultrasound is already in clinical use for focal thermal ablation of tissue, there has been a recent growth in development and translation of ultrasound-mediated nonthermal therapies. These approaches exploit the physical forces of ultrasound to produce a range of biological responses dependent on exposure conditions. This review discusses recent advances in four application areas that have seen particular growth and have immense clinical potential: brain drug delivery, neuromodulation, focal tissue destruction, and endogenous immune system activation. Owing to the maturation of transcranial ultrasound technology, the brain is a major target organ; however, clinical indications outside the brain are also discussed.

摘要

聚焦超声是一种平台技术,能够在体内深处以高精度引发广泛的生物学反应。尽管聚焦超声已经在临床中用于组织的聚焦热消融,但近年来超声介导的非热治疗的开发和转化有了显著的增长。这些方法利用超声的物理力产生一系列依赖于暴露条件的生物学反应。本文综述了四个应用领域的最新进展,这些领域取得了特别的发展,并具有巨大的临床潜力:脑内药物递送、神经调节、局灶性组织破坏和内源性免疫系统激活。由于经颅超声技术的成熟,大脑成为了主要的靶器官;然而,也讨论了大脑以外的临床适应证。

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