Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, Shatin N.T., Hong Kong, China.
College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, 518060, China.
Adv Mater. 2021 Jan;33(4):e2002047. doi: 10.1002/adma.202002047. Epub 2020 Dec 4.
Micro-/nanorobots (m-bots) have attracted significant interest due to their suitability for applications in biomedical engineering and environmental remediation. Particularly, their applications in in vivo diagnosis and intervention have been the focus of extensive research in recent years with various clinical imaging techniques being applied for localization and tracking. The successful integration of well-designed m-bots with surface functionalization, remote actuation systems, and imaging techniques becomes the crucial step toward biomedical applications, especially for the in vivo uses. This review thus addresses four different aspects of biomedical m-bots: design/fabrication, functionalization, actuation, and localization. The biomedical applications of the m-bots in diagnosis, sensing, microsurgery, targeted drug/cell delivery, thrombus ablation, and wound healing are reviewed from these viewpoints. The developed biomedical m-bot systems are comprehensively compared and evaluated based on their characteristics. The current challenges and the directions of future research in this field are summarized.
微/纳米机器人(m-bots)由于其在生物医学工程和环境修复中的应用适用性而引起了极大的关注。特别是,它们在体内诊断和干预方面的应用近年来一直是广泛研究的焦点,各种临床成像技术被用于定位和跟踪。将精心设计的 m-bots 与表面功能化、远程驱动系统和成像技术成功集成,成为生物医学应用的关键步骤,特别是对于体内应用。因此,本综述从四个不同方面讨论了生物医学 m-bots:设计/制造、功能化、驱动和定位。从这些角度回顾了 m-bots 在诊断、传感、微创手术、靶向药物/细胞输送、血栓消融和伤口愈合方面的生物医学应用。基于它们的特点,对所开发的生物医学 m-bot 系统进行了全面比较和评估。总结了当前的挑战和该领域未来研究的方向。
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