纳米技术
生物材料
仿生学
计算机科学
材料科学
生化工程
工程类
作者
Hongbao Xin,Nan Zhao,Yunuo Wang,Xiaoting Zhao,Ting Pan,Yang Shi,Baojun Li
出处
期刊:Nano Letters
[American Chemical Society]
日期:2020-09-16
卷期号:20 (10): 7177-7185
被引量:69
标识
DOI:10.1021/acs.nanolett.0c02501
摘要
Bioinspired and biohybrid micromotors represent a revolution in microrobotic research and are playing an increasingly important role in biomedical applications. In particular, biological micromotors that are multifunctional and can perform complex tasks are in great demand. Here, we report living and multifunctional micromotors based on single cells (green microalgae: Chlamydomonas reinhardtii) that are controlled by optical force. The micromotor's locomotion can be carefully controlled in a variety of biological media including cell culture medium, saliva, human serum, plasma, blood, and bone marrow fluid. It exhibits the capabilities to perform multiple tasks, in particular, indirect manipulation of biological targets and disruption of biological aggregates including in vitro blood clots. These micromotors can also act as elements in reconfigurable motor arrays where they efficiently work collaboratively and synchronously. This work provides new possibilities for many in vitro biomedical applications including target manipulation, cargo delivery and release, and biological aggregate removal.
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