Ultrasound-Based Micro-/Nanosystems for Biomedical Applications.

IF 51.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Chemical Reviews Pub Date : 2024-06-26 DOI:10.1021/acs.chemrev.4c00009
Hui Huang, Yi Zheng, Meiqi Chang, Jun Song, Lili Xia, Chenyao Wu, Wencong Jia, Hongze Ren, Wei Feng, Yu Chen
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Abstract

Due to the intrinsic non-invasive nature, cost-effectiveness, high safety, and real-time capabilities, besides diagnostic imaging, ultrasound as a typical mechanical wave has been extensively developed as a physical tool for versatile biomedical applications. Especially, the prosperity of nanotechnology and nanomedicine invigorates the landscape of ultrasound-based medicine. The unprecedented surge in research enthusiasm and dedicated efforts have led to a mass of multifunctional micro-/nanosystems being applied in ultrasound biomedicine, facilitating precise diagnosis, effective treatment, and personalized theranostics. The effective deployment of versatile ultrasound-based micro-/nanosystems in biomedical applications is rooted in a profound understanding of the relationship among composition, structure, property, bioactivity, application, and performance. In this comprehensive review, we elaborate on the general principles regarding the design, synthesis, functionalization, and optimization of ultrasound-based micro-/nanosystems for abundant biomedical applications. In particular, recent advancements in ultrasound-based micro-/nanosystems for diagnostic imaging are meticulously summarized. Furthermore, we systematically elucidate state-of-the-art studies concerning recent progress in ultrasound-based micro-/nanosystems for therapeutic applications targeting various pathological abnormalities including cancer, bacterial infection, brain diseases, cardiovascular diseases, and metabolic diseases. Finally, we conclude and provide an outlook on this research field with an in-depth discussion of the challenges faced and future developments for further extensive clinical translation and application.

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用于生物医学应用的基于超声波的微型/纳米生态系统。
除了诊断成像外,超声波作为一种典型的机械波,因其固有的非侵入性、成本效益高、安全性高和实时性强等特点,已被广泛开发为一种物理工具,用于多种生物医学应用。尤其是纳米技术和纳米医学的蓬勃发展为超声医学的发展注入了活力。空前高涨的研究热情和不懈的努力,使得大量多功能微/纳米生态系统被应用于超声生物医学,为精确诊断、有效治疗和个性化治疗提供了便利。要在生物医学应用中有效部署基于超声的多功能微/纳米生态系统,就必须深刻理解其组成、结构、性质、生物活性、应用和性能之间的关系。在这篇综述中,我们阐述了有关设计、合成、功能化和优化基于超声波的微/纳米生态系统的一般原则,以实现丰富的生物医学应用。特别是细致总结了用于诊断成像的超声基微型/纳米生态系统的最新进展。此外,我们还系统阐述了针对各种病理异常(包括癌症、细菌感染、脑部疾病、心血管疾病和代谢性疾病)的治疗应用中基于超声的微型/纳米生态系统的最新研究进展。最后,我们对这一研究领域进行了总结和展望,深入探讨了进一步广泛临床转化和应用所面临的挑战和未来发展。
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来源期刊
Chemical Reviews
Chemical Reviews 化学-化学综合
CiteScore
106.00
自引率
1.10%
发文量
278
审稿时长
4.3 months
期刊介绍: Chemical Reviews is a highly regarded and highest-ranked journal covering the general topic of chemistry. Its mission is to provide comprehensive, authoritative, critical, and readable reviews of important recent research in organic, inorganic, physical, analytical, theoretical, and biological chemistry. Since 1985, Chemical Reviews has also published periodic thematic issues that focus on a single theme or direction of emerging research.
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