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Self-assembly of cell springs using smooth muscle-like cells differentiated from multipotent cells

机译:利用与多能细胞分化的平滑肌样细胞自组装细胞弹簧

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This paper describes the self-assembly of “cell springs” using smooth muscle-like cells differentiated from multipotent dedifferentiated fat (DFAT) cells. Using a microfluidic co-axial device, DFAT cells suspended in extracellular matrix (ECM) mixture of fibrin and collagen were encapsulated within tubular alginate microfibers and formed into 3D fiber-shaped micro-constructs. Such DFAT cell fibers were then induced to differentiate into smooth muscle cells (SMCs) under various conditions. Upon differentiation induction, DFAT cell fibers spontaneously contracted into coiled spring structures within 3 days. After 3 weeks of differentiation, the differentiated DFAT cell fibers showed synchronized contraction upon electrical stimulation.
机译:本文介绍了使用与多能去分化脂肪(DFAT)细胞分化的平滑肌样细胞进行的“细胞弹簧”的自组装。使用微流体同轴设备,将悬浮在纤维蛋白和胶原蛋白的细胞外基质(ECM)混合物中的DFAT细胞包裹在管状藻酸盐微纤维中,并形成3D纤维状微结构。然后,在各种条件下,诱导此类DFAT细胞纤维分化为平滑肌细胞(SMC)。分化诱导后,DFAT细胞纤维在3天内自发收缩成螺旋弹簧结构。分化3周后,分化的DFAT细胞纤维在电刺激下显示同步收缩。

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