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In-Vitro Rapid Centimeter-Scale Reconstruction of Lobule-Mimetic Liver Tissue Employing Dielectrophoresis-Based Cell Patterning

机译:在基于介电泳的细胞图案中使用介电泳的细胞模拟肝组织的体外快速厘米重建

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A lobule-mimetic cell-patterning technique for on-chip reconstructing centimeter-scale liver tissue of heterogeneous hepatic and endothelial cells via the enhanced field-induced dielectrophoresis (DEP) trap is demonstrated and reported. By mimicking the basic morphology of the liver tissue, the classic hepatic lobule, the lobule-mimetic-stellate-electrodes array is designed for cell patterning via DEP operation. Through the vertical positive DEP manipulation, well-defined and enhanced spatial electric field gradients are created for in-parallel manipulating of massive individual cells. Experiment results show that both hepatic and endothelial cells are orderly guided, snared, and aligned along the field-induced orientation to from the lobule-mimetic pattern containing of multiple radial hepatic cell-strings interlaced with radial endothelial cell-strings. About 95% cell viability of hepatic and endothelial cells is also observed after cell-patterning demonstration via the fluorescent assay technique.
机译:证实并报道了通过增强的场诱导的电泳(DEP)捕集器(DEP)捕集器的片上重建异质肝和内皮细胞的片上重建厘米肝组组织的叶片模拟电池图案化技术。通过模拟肝脏组织的基本形态,经典肝小叶,升高模拟星状电极阵列被设计用于通过DEP操作进行图案化。通过垂直的正DEP操纵,创建明确和增强的空间电场梯度,用于对大规模的单个细胞进行平行操纵。实验结果表明,肝癌和内皮细胞都是有序的引导,捕获的,沿着场诱导的取向对齐,从含有与径向内皮细胞串相互交织的多径向肝细胞串的升叶片模拟图案。在通过荧光测定技术的细胞 - 图案化证明后,还观察到肝脏和内皮细胞的约95%的细胞活力。

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