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具有精确远程靶向能力的磁化学杂交微机器人。

Magnetic-chemotactic hybrid microrobots with precise remote targeting capability.

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, International School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, P. R. China.

Wuhan Institute of Photochemistry and Technology, 7 North Bingang Road, Wuhan 430083, P. R. China.

出版信息

J Mater Chem B. 2024 Oct 23;12(41):10550-10558. doi: 10.1039/d4tb01807a.

Abstract

Micro/nanorobots (MNRs) hold great promise for various applications due to their capability to execute complex tasks in hard-to-reach micro/nano cavities. However, the developed magnetic MNRs, as marionettes of external magnetic fields, lack built-in intelligence for self-targeting, while chemotactic MNRs suffer from limited self-targeting range. Here, we demonstrate magnetic-chemotactic ZnO/Fe-Ag Janus microrobots (JMRs) capable of rapid, remote self-targeting for bacterial elimination. The JMRs utilize the magnetic Fe engine for coarse navigation from a distance, allowing for external control to swiftly guide them to the vicinity of a hidden/uncharted target that establishes a local chemical gradient ([CO] or [H] gradient). Once in proximity, the inherent chemotaxis of the JMRs takes over, the chemotactic engine enables them to autonomously accumulate at the target site along the chemical gradient in high precision. Upon reaching the target, the ZnO/Fe-Ag JMRs can release Zn and Ag to eliminate bacteria residing there. The proposed strategy of integrating on-board chemotaxis with external magnetic field-driven propulsion paves the way for efficient precise therapies using MNRs, especially in targeted drug/energy delivery involving remote hidden or uncharted targets.

摘要

微/纳机器人(MNRs)由于能够在难以到达的微/纳米腔中执行复杂任务,因此在各种应用中具有广阔的应用前景。然而,已开发的磁性 MNRs 作为外部磁场的提线木偶,缺乏内置的自我靶向智能,而趋化性 MNRs 则受到自我靶向范围的限制。在这里,我们展示了能够快速、远程自我靶向以消除细菌的磁性趋化性 ZnO/Fe-Ag 双金属微机器人(JMRs)。JMRs 利用磁性 Fe 引擎进行远距离的粗导航,允许外部控制迅速引导它们到隐藏/未知目标的附近,该目标建立局部化学梯度([CO]或[H]梯度)。一旦接近目标,JMRs 的固有趋化性就会接管,趋化性引擎使它们能够沿着化学梯度高精度地自主聚集在目标位点。到达目标后,ZnO/Fe-Ag JMRs 可以释放 Zn 和 Ag 以消除驻留在那里的细菌。将板载趋化性与外部磁场驱动推进相结合的策略为使用 MNRs 进行高效精确治疗铺平了道路,特别是在涉及远程隐藏或未知目标的靶向药物/能量输送中。

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