模块化设计
磁性
计算机科学
体内
脚手架
纳米技术
胆管
生物医学工程
材料科学
工程类
生物
医学
物理
外科
量子力学
操作系统
生物技术
作者
Lin Su,Dongdong Jin,Yuqiong Wang,Qinglong Wang,Chengfeng Pan,Shuai Jiang,Haojin Yang,Zhengxin Yang,Xin Wang,Neng Xia,Kai Fung Chan,Philip Wai Yan Chiu,Joseph J.�Y. Sung,Li Zhang
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2023-12-15
卷期号:9 (50): eadj0883-eadj0883
被引量:81
标识
DOI:10.1126/sciadv.adj0883
摘要
The magnetic microrobots promise benefits in minimally invasive cell-based therapy. However, they generally suffer from an inevitable compromise between their magnetic responsiveness and biomedical functions. Herein, we report a modularized microrobot consisting of magnetic actuation (MA) and cell scaffold (CS) modules. The MA module with strong magnetism and pH-responsive deformability and the CS module with cell loading-release capabilities were fabricated by three-dimensional printing technique. Subsequently, assembly of modules was performed by designing a shaft-hole structure and customizing their relative dimensions, which enabled magnetic navigation in complex environments, while not deteriorating the cellular functionalities. On-demand disassembly at targeted lesion was then realized to facilitate CS module delivery and retrieval of the MA module. Furthermore, the feasibility of proposed system was validated in an in vivo rabbit bile duct. Therefore, this work presents a modular design-based strategy that enables uncompromised fabrication of multifunctional microrobots and stimulates their development for future cell-based therapy.
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