arXiv:2606.21737cs.RO2026-06中稿 · the IEEE/RSJ Inter…

磁控软机器人可定向释放药物,兼顾运动与形变能力。

Programmable magnetic soft robots with controlled locomotion and directional liquid cargo release

  • 通过空间磁化分布设计,实现药液定向释放。
  • 磁力触发蜡层破裂,精准控制释放时机与方向。
  • 适合胃肠道靶向给药,尤其对复杂环境适应性强。

磁控软弹性体可在外部磁场下实现微型软机器人的复杂形变与运动。得益于其预编程形变与无线驱动特性,这类机器人在靶向药物递送(尤其是人体胃肠道)中展现出巨大潜力。然而,在保持形变与运动能力的同时,实现向特定组织界面的可控方向性液体药物释放仍面临挑战。本文提出一种新设计策略:通过优化磁化分布,使机器人在外部磁场作用下,主动将释放界面朝向肠壁方向对齐,从而实现定向释放。机器人内部嵌入互连微孔弹性体用于储存水性药物,表面薄层微晶蜡封堵释放孔,防止运输途中泄漏。当施加更高强度磁场时,机械力破坏蜡层,触发释放。通过调节磁场方向和强度,可分别独立控制翻转、运动与释放行为。该策略整合了定向释放、形变与运动功能,为胃肠道靶向给药提供了新基础。

原文摘要 · Abstract (English)

Magnetically programmable soft elastomers enable complex shape morphing and locomotion dynamics in small scale soft robots under external magnetic fields. Benefiting from their programmed deformation and wireless actuation capabilities, magnetic soft robots have emerged as promising platforms for targeted drug delivery, especially in human gastrointestinal tract. However, achieving controlled directional liquid cargo release toward desired tissue interface while preserving the encoded shape morphing and locomotion capabilities remain a significant challenge. Here, we report a new design strategy that employs an optimized magnetization profile to enable controlled directional release of aqueous cargo without compromising shape morphing and locomotion capabilities. Magnetic soft robots with a specific spatially distributed magnetization profile allow directional alignment of the release interface with the orientation of the external magnetic field. This orientation control ensures active alignment of the release interface toward the intestinal wall prior to drug release. An interconnected microporous elastomer is embedded within the robot for aqueous cargo storage, while a thin microcrystalline wax layer seals the release opening hole to isolate the stored liquid cargo from external environment during transport. Triggered release is achieved by mechanically rupturing the wax sealing layer under a higher magnitude external magnetic field. Controlled directional flipping, locomotion, and triggered release are decoupled through external magnetic field's direction and strength. The controlled directional release strategy reported here integrates directional targeted liquid cargo release, shape morphing, and locomotion, which establishes the groundwork for target drug delivery in gastrointestinal tract applications.

软体机器人磁控释放靶向给药胃肠道

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