Microfluidic Design of Streamlined Alginate Hydrogel Micromotors with Run and Tumble Motion Patterns

Author:

Luan Jiabin1ORCID,Kuijken Peter F.1ORCID,Chen Wen1,Wang Danni1ORCID,Charleston Levy A.1,Wilson Daniela A.1ORCID

Affiliation:

1. Radboud University Nijmegen Institute for Molecules and Materials Heyendaalseweg 135 Nijmegen 6525 AJ The Netherlands

Abstract

AbstractAutonomous micromotors demonstrate remarkable advancements in biomedical applications. A noteworthy example is streamlined motors, which display enhanced movement efficiency with low fluid‐resistance. However, existing streamlined motors, primarily constructed from inorganic materials, present challenges due to their complex fabrication procedures and lack of a soft interface for interaction with biological systems. Herein, a novel design of biodegradable streamlined alginate hydrogel micromotors with a teardrop shape by microfluidics is introduced. The platform enables the high‐throughput fabrication of monodisperse micromotors with varied dimensions. By incorporating Pt‐coated Fe3O4 nanoparticles, micromotors are equipped with dual capabilities of catalytic propulsion and accurate magnetic guidance. Through precisely tuning the localization regions of catalysts within the micromotors, the streamlined hydrogel micromotors not only exhibit enhanced propelling efficiency, but also accomplish distinct motion patterns of run and tumble. The design provides insights for developing advanced micromotors capable of executing intricate tasks across diverse application scenarios.

Funder

Ministerie van Onderwijs, Cultuur en Wetenschap

H2020 Excellent Science

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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