Peng Chang, Chen Mengyue, Spicer James B, Jiang Xiaoning
Department of Mechanical and Aerospace Engineering, North Carolina State University, Raleigh, NC 27695, USA.
Department of Materials Science and Engineering, The Johns Hopkins University, 3400 North Charles Street, Baltimore, MD 21218, USA.
Sens Actuators A Phys. 2021 Dec 1;332(Pt 2). doi: 10.1016/j.sna.2021.112925. Epub 2021 Jun 17.
In the past decade, acoustics at the nanoscale (i.e., nanoacoustics) has evolved rapidly with continuous and substantial expansion of capabilities and refinement of techniques. Motivated by research innovations in the last decade, for the first time, recent advancements of acoustics-associated nanomaterials/nanostructures and nanodevices for different applications are outlined in this comprehensive review, which is written in two parts. As part II of this two-part review, this paper concentrates on nanoacoustics in biomedical imaging and therapy applications, including molecular ultrasound imaging, photoacoustic imaging, ultrasound-mediated drug delivery and therapy, and photoacoustic drug delivery and therapy. Firstly, the recent developments of nanosized ultrasound and photoacoustic contrast agents as well as their various imaging applications are examined. Secondly, different types of nanomaterials/nanostructures as nanocarriers for ultrasound and photoacoustic therapies are discussed. Finally, a discussion of challenges and future research directions are provided for nanoacoustics in medical imaging and therapy.
在过去十年中,纳米尺度的声学(即纳米声学)随着能力的持续大幅扩展和技术的不断完善而迅速发展。受过去十年研究创新的推动,本文首次在这篇分两部分撰写的全面综述中概述了用于不同应用的声学相关纳米材料/纳米结构及纳米器件的最新进展。作为这篇两部分综述的第二部分,本文重点关注纳米声学在生物医学成像和治疗应用中的情况,包括分子超声成像、光声成像、超声介导的药物递送与治疗以及光声药物递送与治疗。首先,研究了纳米级超声和光声造影剂的最新进展及其各种成像应用。其次,讨论了作为超声和光声治疗纳米载体的不同类型纳米材料/纳米结构。最后,针对纳米声学在医学成像和治疗中的挑战及未来研究方向进行了讨论。