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首页> 外文期刊>Integrative Biology: quantitative biosciences from nano to macro >Magnetic engineering of stable rod-shaped stem cell aggregates: circumventing the pitfall of self-bending
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Magnetic engineering of stable rod-shaped stem cell aggregates: circumventing the pitfall of self-bending

机译:稳定的棒状干细胞聚集体的磁工程:规避自弯曲的陷阱

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A current challenge for tissue engineering while restoring the function of diseased or damaged tissue is to customize the tissue according to the target area. Scaffold-free approaches usually yield spheroid shapes with the risk of necrosis at the center due to poor nutrient and oxygen diffusion. Here, we used magnetic forces developed at the cellular scale by miniaturized magnets to create rod-shaped aggregates of stem cells that subsequently matured into a tissue-like structure. However, during the maturation process, the tissue-rods spontaneously bent and coiled into sphere-like structures, triggered by the increasing cell-cell adhesion within the initially non-homogeneous tissue. Optimisation of the intra-tissular magnetic forces successfully hindered the transition, in order to produce stable rod-shaped stem cells aggregates.
机译:在恢复患病或受损组织功能的同时,组织工程面临的当前挑战是根据目标区域定制组织。由于缺乏营养和氧气扩散,无支架的方法通常会产生球体形状,并在中心具有坏死的风险。在这里,我们使用了由微型磁体在细胞尺度上产生的磁力来形成干细胞的杆状聚集体,这些聚集体随后成熟为组织状结构。然而,在成熟过程中,组织杆自发地弯曲并盘绕成球形结构,这是由最初不均一的组织内不断增加的细胞间粘附引起的。为了产生稳定的棒状干细胞聚集体,优化脉管内磁力可以成功地阻止过渡。

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