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Microfluidic formation of multicore-shell cell-laden fibers

机译:多核壳载细胞纤维的微流体形成

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This paper describes a multicore-shell hydrogel fiber encapsulating multi type cell with lotus root structure (Fig. 1). Microfluidic techniques are able to encapsulate the cells in 3D configuration such as beads and fibers. Especially, an excellent method was reported that the core-shell cell microfibers reconstitute intrinsic morphologies and functions of living tissues in vitro [1]. Among various tissues and organs that have been targeted for in vitro reconstruction using cell microfiber application, various types of cells, such as pancreatic β cells [2], adipocytes [3], neural cells [4] and stem cells [5], can be cultured in a 3D tubular hydrogel microenvironment. However, cell distribution in vivo is extremely complex, and spatially anisotropic or heterogeneous tissues are widespread. We here took an approach to fabricate multicore-shell fibers with controlled heterogeneous cell-laden structures for construction of macro-size tissue. The fibers mimicked the structure of lotus root and the encapsulated cells in the fiber separately cultured as multi cell type co-culture system.
机译:本文描述了一种多核壳水凝胶纤维,其包裹了具有莲lotus结构的多型细胞(图1)。微流体技术能够以3D配置封装细胞,例如珠子和纤维。尤其是,据报道,一种极好的方法是,核-壳细胞微纤维可在体外重构活组织的固有形态和功能[1]。在使用细胞微纤维进行体外重建的各种组织和器官中,可以使用各种类型的细胞,例如胰腺β细胞[2],脂肪细胞[3],神经细胞[4]和干细胞[5]。在3D管状水凝胶微环境中培养。然而,体内细胞分布极为复杂,并且空间各向异性或异质组织也很普遍。我们在这里采用了一种方法来制造具有受控异质细胞结构的多核壳纤维,以用于构建大型组织。纤维模仿莲root的结构,并以多细胞型共培养系统分别培养纤维中的包封细胞。

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