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In vitro reconstruction of branched tubular structures from lung epithelial cells in high cell concentration gradient environment

机译:在高细胞浓度梯度环境中从肺上皮细胞体外重建分支管状结构

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摘要

We have succeeded in developing hollow branching structure in vitro commonly observed in lung airway using primary lung airway epithelial cells. Cell concentration gradient is the key factor that determines production of the branching cellular structures, as optimization of this component removes the need for heterotypic culture. The higher cell concentration leads to the more production of morphogens and increases the growth rate of cells. However, homogeneous high cell concentration does not make a branching structure. Branching requires sufficient space in which cells can grow from a high concentration toward a low concentration. Simulation performed using a reaction-diffusion model revealed that long-range inhibition prevents cells from branching when they are homogeneously spread in culture environments, while short-range activation from neighboring cells leads to positive feedback. Thus, a high cell concentration gradient is required to make branching structures. Spatial distributions of morphogens, such as BMP-4, play important roles in the pattern formation. This simple yet robust system provides an optimal platform for the further study and understanding of branching mechanisms in the lung airway, and will facilitate chemical and genetic studies of lung morphogenesis programs.
机译:我们已经成功地开发了使用原发性肺气道上皮细胞在肺气道中常见的体外空心分支结构。细胞浓度梯度是决定分支细胞结构产生的关键因素,因为该成分的优化消除了异型培养的需要。较高的细胞浓度导致更多的形态发生子产生并增加细胞的生长速率。但是,均匀的高细胞浓度不会形成分支结构。分支需要足够的空间,细胞可以在其中从高浓度向低浓度生长。使用反应扩散模型进行的模拟显示,当细胞在培养环境中均匀分布时,远距离抑制可防止细胞分支,而相邻细胞的近距离激活可导致正反馈。因此,需要高的细胞浓度梯度来制备分支结构。 BMP-4等形态发生子的空间分布在模式形成中起重要作用。这个简单而强大的系统为进一步研究和了解肺气道中的分支机制提供了一个最佳平台,并将促进肺形态发生程序的化学和遗传研究。

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