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Microscopic hollow hydrogel springs, necklaces and ladders: A tubular robot as a potential vascular scavenger

  • Shumin Liang
  • , Yaqing Tu
  • , Qing Chen
  • , Wei Jia
  • , Wenhan Wang
  • , Lidong Zhang
  • East China Normal University
  • Shanghai Academy of Agricultural Sciences
  • National R and D Center for Edible Fungal Processing

科研成果: 期刊稿件文章同行评审

摘要

Microscopic hollow hydrogel fibers are capable of being used as carriers, scaffolds and actuators for biomedical applications. However, preparation of sophisticated geometries remains a challenge. We herein present a non-coaxial microfluidic method, which is different from traditional coaxial devices that form perfusable channels during the extruding process. Our method produces solid microfibers into tris(hydroxymethy)aminomethane-HCl buffered solution containing CuSO4 and H2O2 elements, where chemical reactions contribute to hollow structures. The process doesn't require coaxial nozzles, whereby it allows generation of sophisticated geometries with interconnected channels including single-and double-helical springs, necklaces and ladders by adjusting the distance between the nozzles and liquid level. After magnetizing the hollow microfibers, they can be steered by magnetic actuation to generate controllable movements and to navigate across unstructured environments in liquid systems. The hollow microfibers are non-Toxic. We thus show an interesting concept by preparing hollow microfibers into a tubular small-scale robot that can shift inside an artificial blood vessel to clean up blockages, demonstrating potential application as a vascular scavenger.

源语言英语
页(从-至)2135-2142
页数8
期刊Materials Horizons
6
10
DOI
出版状态已出版 - 12月 2019

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