Self-assembly of magnetized microstructures for in vitro cell systems

M. Hattori, A. Ichikawa, K. Ohara, T. Fukuda, Masaru Takeuchi, M. Nakajima, Y. Hasegawa, Qiang Huang
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引用次数: 1

Abstract

In this paper, we conducted to assembly of microstructures for in vitro 3D cellular structures using self-assembly of magnetized hydrogels. The biocompatible hydrogel microstructures are fabricated by electrodeposition method and ferrite particles are coated on the structures with poly-L-lysine. The microstructures are magnetized by applying 3 T magnetic field, and assembled by the magnetic force. Biological cells can be encapsulated in the microstructures and cultured to achieve high density cell structures. The magnetic microstructures were assembled automatically to form tube structures. The magnetic force generated from the ferrite embedded microstructures was estimated and compared to the fluid resistance applied to the microstructures. The assembly of microstructures was achieved using a shaker to shake the structures inside liquid. The proposed method can be applied to assemble 3D cell structures with vascular-like channels for tissue engineering applications.
体外细胞系统磁化微结构的自组装
在本文中,我们利用磁化水凝胶的自组装对体外三维细胞结构进行了微结构组装。采用电沉积法制备了具有生物相容性的水凝胶微结构,并用聚赖氨酸包覆铁氧体颗粒。通过施加3t磁场磁化微结构,并通过磁力进行组装。生物细胞可以包封在微结构中进行培养,实现高密度细胞结构。磁性微结构自动组装形成管状结构。估计了铁氧体嵌入微结构产生的磁力,并与施加在微结构上的流体阻力进行了比较。利用振动筛对液体内部的结构进行振动,实现了微结构的组装。该方法可用于组织工程中具有血管样通道的三维细胞结构的组装。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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