首页 /研究 /Acoustic Fabrication of Living Cardiomyocyte-based Hybrid Biorobots
MANIPULATION

Acoustic Fabrication of Living Cardiomyocyte-based Hybrid Biorobots

Jie Wang, Fernando Soto, Peng Ma, Rajib Ahmed, Huaxiao Yang, Sihan Chen, Ji‐Bo Wang, Chun Liu, Demir Akin, Kaiyu Fu, Xu Cao, Pu Chen, En‐Chi Hsu, H. Tom Soh, Tanya Stoyanova, Joseph C. Wu, Utkan Demirci

发表年份
2022
引用次数
37

摘要

Organized assemblies of cells have demonstrated promise as bioinspired actuators and devices; still, the fabrication of such "biorobots" has predominantly relied on passive assembly methods that reduce design capabilities. To address this, we have developed a strategy for the rapid formation of functional biorobots composed of live cardiomyocytes. We employ tunable acoustic fields to facilitate the efficient aggregation of millions of cells into high-density macroscopic architectures with directed cell orientation and enhanced cell-cell interaction. These biorobots can perform actuation functions both through naturally occurring contraction-relaxation cycles and through external control with chemical and electrical stimuli. We demonstrate that these biorobots can be used to achieve controlled actuation of a soft skeleton and pumping of microparticles. The biocompatible acoustic assembly strategy described here should prove generally useful for cellular manipulation in the context of tissue engineering, soft robotics, and other applications.

关键词

FabricationMaterials scienceNanotechnologyMedicine

相关论文

查看 MANIPULATION 分类全部论文