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超声纳米医学与材料医学。

Ultrasound nanomedicine and materdicine.

机构信息

Materdicine Lab, School of Life Sciences, Shanghai University, Shanghai 200444, P. R. China.

Department of Shanghai Lung Cancer Center, Shanghai Chest Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200030, P. R. China.

出版信息

J Mater Chem B. 2023 Jun 21;11(24):5350-5377. doi: 10.1039/d2tb02640f.

Abstract

The conventional microbubble-based ultrasound biomedicine clinically plays a vital role in providing the dynamic detection of macro and microvasculature and disease theranostics. However, the intrinsic limitation of particle size severely decreases the treatment effectiveness due to their vascular transport characteristics, which promotes the development and application of multifunctional ultrasound-responsive nanomaterials. Herein, we put forward a research field of "ultrasound nanomedicine and materdicine", referring to the interdiscipline of ultrasound, nanobiotechnology and materials, which seeks to produce specific biological effects for addressing the challenges faced and dilemma of conventional ultrasound medicine. We comprehensively summarize the state-of-the-art scientific advances in the latest progress in constructing ultrasound-based platforms and ultrasound-activated sonosensitizers, ranging from the synthesis strategies, biological functions to ultrasound-triggered therapeutic applications. Ultimately, the unresolved challenges and clinical-translation potentials of ultrasound nanomedicine and materdicine are discussed and prospected in this evolving field.

摘要

传统的基于微泡的超声生物医学在提供宏观和微观血管的动态检测以及疾病治疗方面发挥着至关重要的作用。然而,由于其血管传输特性,颗粒尺寸的固有限制严重降低了治疗效果,这促进了多功能超声响应纳米材料的开发和应用。在这里,我们提出了一个名为“超声纳米医学和材料医学”的研究领域,它是超声、纳米生物技术和材料的交叉学科,旨在产生特定的生物学效应,以应对传统超声医学所面临的挑战和困境。我们全面总结了构建基于超声的平台和超声激活声敏剂的最新进展中的最先进的科学进展,范围从合成策略、生物功能到超声触发的治疗应用。最终,我们讨论并展望了这个不断发展的领域中超声纳米医学和材料医学未解决的挑战和临床转化潜力。

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