材料科学
纳米技术
微流控
金属有机骨架
生物相容性
仿生材料
药物输送
制作
纳米尺度
医学
病理
吸附
有机化学
化学
冶金
替代医学
作者
Xiaopu Wang,Xiang‐Zhong Chen,Carlos Alcantara,Semih Sevim,Marcus Hoop,Anastasia Terzopoulou,Carmela De Marco,Chengzhi Hu,Andrew J. de Mello,Paolo Falcaro,Shuhei Furukawa,Bradley J. Nelson,Josep Puigmartí‐Luis,Salvador Pané
标识
DOI:10.1002/adma.201901592
摘要
Motile metal-organic frameworks (MOFs) are potential candidates to serve as small-scale robotic platforms for applications in environmental remediation, targeted drug delivery, or nanosurgery. Here, magnetic helical microstructures coated with a kind of zinc-based MOF, zeolitic imidazole framework-8 (ZIF-8), with biocompatibility characteristics and pH-responsive features, are successfully fabricated. Moreover, it is shown that this highly integrated multifunctional device can swim along predesigned tracks under the control of weak rotational magnetic fields. The proposed systems can achieve single-cell targeting in a cell culture media and a controlled delivery of cargo payloads inside a complex microfluidic channel network. This new approach toward the fabrication of integrated multifunctional systems will open new avenues in soft microrobotics beyond current applications.
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