Issue 45, 2025, Issue in Progress

Micro/nano-robotic medical device: preparation, actuation mechanisms and their applications in medicine

Abstract

Hydrogels feature a unique three-dimensional crosslinked network integrated with responsive chemical functional groups, enabling them to undergo structural and functional transitions under various external stimuli, including chemical energy, temperature, light, pH, ultrasound, magnetic fields, and ions. These transformations arise from mechanisms such as molecular conformational changes, bond formation or cleavage, and ion exchange. Recent advances in micro/nanorobotics have led to the development of hydrogel-based micro/nano-robotic medical devices that combine excellent biocompatibility with multi-modal actuation, allowing adaptation to diverse environments and precise task execution. This review summarizes current progress in hydrogel micro/nano-robotic medical device research, with a focus on multi-drive synergistic strategies and advantages of composite hydrogel designs. Fabrication techniques, driving mechanisms, and biomedical applications—including targeted drug delivery, tissue engineering, and in vivo imaging—are discussed. Finally, the major challenges in clinical translation are analyzed, and possible solutions are proposed to facilitate future practical implementation.

Graphical abstract: Micro/nano-robotic medical device: preparation, actuation mechanisms and their applications in medicine

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Article information

Article type
Review Article
Submitted
25 Jul 2025
Accepted
29 Sep 2025
First published
09 Oct 2025
This article is Open Access
Creative Commons BY license

RSC Adv., 2025,15, 37728-37775

Micro/nano-robotic medical device: preparation, actuation mechanisms and their applications in medicine

J. Yao, Y. Yang, M. Li and X. Chen, RSC Adv., 2025, 15, 37728 DOI: 10.1039/D5RA05398F

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