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Formation of Cell Aggregates Using Microfabricated Hydrogel Chambers for Assembly into Larger Tissues

机译:使用超细水凝胶腔室组装成更大的组织的细胞聚集体的形成。

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This paper presents a fabrication process for cell aggregates with controlled shapes that can be used as building units for constructing relatively large tissue models. Microfabricated hydrogel-based chambers with non-adhesive surface characteristics were prepared via a micromolding process. Alginate was used as the hydrogel matrix, which facilitated the efficient formation of aggregates from cells retained inside the microchamber. We employed several types of toroidal and lattice-shaped hydrogel microchambers with different geometries. We examined the effect of cell type on the aggregate formation process using NIH-3T3, C2C12, and HepG2 cells and clearly observed that aggregation behavior is highly dependent on cell type. In addition, we tried to construct 2-layered capillary-like tissues by stacking heterotypic toroidal cell aggregates, which mimic blood vessels. The presented cell aggregate-based tissue fabrication process could become a versatile approach for preparing complex and scaffold-free 3D tissue models.
机译:本文介绍了具有可控形状的细胞聚集体的制造过程,该过程可用作构建相对较大的组织模型的构建单元。通过微成型工艺制备了具有非粘性表面特征的基于水凝胶的微型腔室。海藻酸盐用作水凝胶基质,有助于从保留在微腔室内的细胞有效形成聚集体。我们采用了几种具有不同几何形状的环形和晶格状水凝胶微腔。我们使用NIH-3T3,C2C12和HepG2细胞检查了细胞类型对聚集体形成过程的影响,并清楚地观察到聚集行为高度依赖于细胞类型。此外,我们试图通过堆叠模仿血管的异型环状细胞聚集体来构建2层毛细管样组织。提出的基于细胞聚集体的组织制造过程可能成为制备复杂且无支架的3D组织模型的通用方法。

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