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Multifunctional Micromachines Constructed by Combining Multiple Protein-Based Components with Different Functions.

Hironori Yamazoe1

  • 1National Institute of Advanced Industrial Science and Technology (AIST), 1-8-31 Midorigaoka, Ikeda, Osaka 563-8577, Japan.

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Area of Science:

  • Biomedical Engineering
  • Materials Science
  • Nanotechnology

Background:

  • Existing medical micromachines perform limited, specific tasks.
  • Methodologies for imparting diverse functions to micromachines remain underexplored.

Purpose of the Study:

  • To present a novel strategy for constructing multifunctional micromachines.
  • To enable the addition of specific biological functions to micromachines using protein components.

Main Methods:

  • Utilized inkjet printing to attach protein-based components with specific biological functions to micromachines.
  • Constructed various proof-of-concept machines by combining multiple functional components.

Main Results:

  • Demonstrated enzyme-powered self-propulsion and magnetic guidance.
  • Successfully collected target objects like bilirubin and living cells.
  • Achieved enzyme-mediated substrate conversion and drug (diapocynin) release.

Conclusions:

  • The novel construction strategy allows for easy integration of diverse functionalities into micromachines.
  • Multifunctional, biocompatible protein-based micromachines show significant potential for advanced medical applications.
  • This approach is expected to impact the development of intelligent machines with multiplex sophisticated functionalities.