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Automated assembly of biological cells in a 3D scaffold via dielectrophoresis manipulation

机译:通过介电泳操作在3D支架中自动组装生物细胞

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Patterning and assembly of biological cells in a 3D structure represents an important process in artificial tissue engineering. This paper presents the design of a multi-layer electrode scaffold used to assemble biological cells into a 3D pattern. Through suppling voltage to the multi-layer scaffold, three-dimensional electric fields can be established to manipulate cells towards the scaffold via dielectrophoresis (DEP). To fabricate such a 3D scaffold, we utilized the laser cutting technology to cut stainless steel into a precision structure with integrated micro-tips. Layers of the structure were then stacked together forming the 3D scaffold. Experiments were conducted and the scaffold was able to generate the DEP force and assemble biological cells at the desired positions with required patterning.
机译:在3D结构中对生物细胞进行图案化和组装代表了人工组织工程中的重要过程。本文介绍了用于将生物细胞组装成3D模式的多层电极支架的设计。通过向多层支架提供电压,可以建立三维电场,以通过介电电泳(DEP)操纵朝向支架的细胞。为了制造这种3D支架,我们利用激光切割技术将不锈钢切割成带有集成微尖端的精密结构。然后将结构的各层堆叠在一起以形成3D支架。进行了实验,该支架能够产生DEP力并以所需的图案将生物细胞组装在所需的位置。

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