超声与纳米医学的结合:走向疾病治疗和医学成像

IF 5.3 2区 化学 Q1 CHEMISTRY, ANALYTICAL Microchimica Acta Pub Date : 2025-03-07 DOI:10.1007/s00604-025-07042-y
Xiaochun Li, Yanting Liu, Xuewan Wu, Rui Huang, Shaoqi Chen, Kaisong Yuan
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引用次数: 0

摘要

超声作为一种机械波,因其具有深入组织、无损、无毒等优点,在生物医学领域得到了广泛的应用。本文综述了超声作为疾病治疗和医学成像的有力工具的研究进展和前景,包括:(1)超声作为驱动纳米/微电机的能量输入用于药物传递,首先介绍了纳米/微电机的合成和运动行为,然后综述了纳米/微电机所传递的小分子和大分子化合物;(2)用于疾病治疗的声敏纳米材料,声动力、声压电、声温和声力学治疗都将被涵盖;(3)超声作为纳米/微电机跟踪或医学成像的无创技术;(4)纳米/微泡的超声穿孔。在结论部分还将描述超声用于疾病治疗或医学成像的未来挑战。图形抽象
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Ultrasound meets nanomedicine: towards disease treatment and medical imaging

As a kind of mechanical wave, ultrasound has been widely employed in the biomedical field due to its superiors of deep tissue penetration, non-destructiveness and non-toxicity. In this review, we highlight current progress and prospects in using ultrasound as a powerful tool for disease treatment and medical imaging, including (1) ultrasound as energy input for driving nano/micromotor in drug delivery, this part first introduces the synthesis and motion behavior of nano/micromotors, then reviews the small molecular and macromolecular compounds that the nano/micromotors are delivering; (2) sonosensitive nanomaterials for disease therapy, the sonodynamic, sonopiezoelectric, sonothermal, and sonomechanical therapy will all be covered; (3) ultrasound as a non-invasive technique for nano/micromotor tracking or medical imaging; (4) the sonoporation of nano/microbubble. Future challenges in using ultrasound for disease treatment or medical imaging will also be described in the conclusion part.

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来源期刊
Microchimica Acta
Microchimica Acta 化学-分析化学
CiteScore
9.80
自引率
5.30%
发文量
410
审稿时长
2.7 months
期刊介绍: As a peer-reviewed journal for analytical sciences and technologies on the micro- and nanoscale, Microchimica Acta has established itself as a premier forum for truly novel approaches in chemical and biochemical analysis. Coverage includes methods and devices that provide expedient solutions to the most contemporary demands in this area. Examples are point-of-care technologies, wearable (bio)sensors, in-vivo-monitoring, micro/nanomotors and materials based on synthetic biology as well as biomedical imaging and targeting.
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