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具有多模态运动的可生物降解磁性水凝胶机器人,用于靶向货物输送。

Biodegradable Magnetic Hydrogel Robot with Multimodal Locomotion for Targeted Cargo Delivery.

机构信息

State Key Laboratory of Robotics and Systems, Harbin Institute of Technology, 2 Yikuang, Harbin 150080, China.

出版信息

ACS Appl Mater Interfaces. 2023 Jun 21;15(24):28922-28932. doi: 10.1021/acsami.3c02703. Epub 2023 Jun 7.

Abstract

Recent strides in the development of untethered miniature robots have shown the advantages of diverse actuation methods, flexible maneuverability, and precise locomotion control, which has made miniature robots attractive for biomedical applications such as drug delivery, minimally invasive surgery, and disease diagnosis. However, biocompatibility and environmental adaptability are among the challenges for further in vivo applications of miniature robots due to the sophisticated physiological environment. Herein, we propose a biodegradable magnetic hydrogel robot (BMHR) that possesses precise locomotion with four stable motion modes, namely tumbling mode, precession mode, spinning-XY mode, and spinning-Z mode. Using a homemade vision-guided magnetic driving system, the BMHR can achieve flexible conversion between the different motion modes to cope with changes in complex environments, and its superior ability to cross obstacles is demonstrated. In addition, the transformation mechanism between different motion modes is analyzed and simulated. Benefiting from the diverse motion modes, the proposed BMHR has promising applications in drug delivery, showing remarkable effectiveness in targeted cargo delivery. The BMHR's biocompatible property, multimodal locomotion, and functionality with drug-loaded particles can provide a new perspective to combine miniature robots with biomedical applications.

摘要

最近,无绳微型机器人的发展取得了重大进展,展示了多样化的驱动方法、灵活的机动性和精确的运动控制的优势,这使得微型机器人在药物输送、微创手术和疾病诊断等生物医学应用中具有吸引力。然而,由于复杂的生理环境,生物相容性和环境适应性是微型机器人进一步体内应用的挑战之一。在这里,我们提出了一种可生物降解的磁性水凝胶机器人(BMHR),它具有精确的运动能力和四种稳定的运动模式,分别是翻滚模式、进动模式、旋转-XY 模式和旋转-Z 模式。使用自制的视觉引导磁驱动系统,BMHR 可以在不同的运动模式之间灵活转换,以应对复杂环境的变化,并且展示了卓越的越障能力。此外,还分析和模拟了不同运动模式之间的转换机制。得益于多样化的运动模式,所提出的 BMHR 在药物输送方面具有广阔的应用前景,在靶向货物输送方面表现出显著的效果。BMHR 的生物相容性、多模态运动能力以及载药颗粒的功能为将微型机器人与生物医学应用相结合提供了新的视角。

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