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Linear patterning of mesenchymal condensations is modulated by geometric constraints

机译:间充质凝结的线性图案受几何约束调节

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摘要

The development of the vertebral column starts with the formation of a linear array of mesenchymal condensations, forming the blueprint for the eventual alternating pattern of bone and cartilage. Despite growing insight into the molecular mechanisms of morphogenesis, the impact of the physical aspects of the environment is not well understood. We hypothesized that geometric boundary conditions may play a pivotal role in the linear patterning of condensations, as neighbouring tissues provide physical constraints to the cell population. To study the process of condensation and the patterning thereof under tightly controlled geometric constraints, we developed a novel in vitro model that combines micropatterning with the established micromass assay. The spacing and alignment of condensations changed with the width of the cell adhesive patterns, a phenomenon that could not be explained by cell availability alone. Moreover, the extent of chondrogenic commitment was increased on substrates with tighter geometric constraints. When the in vivo pattern of condensations was investigated in the developing vertebral column of chicken embryos, the measurements closely fit into the quantitative relation between geometric constraints and inter-condensation distance found in vitro. Together, these findings suggest a potential role of geometric constraints in skeletal patterning in a cellular process of self-organization.
机译:椎骨柱的发展始于间充质凝结的线性阵列的形成,形成了最终的骨骼和软骨交替模式的蓝图。尽管人们对形态发生的分子机制有了越来越多的了解,但人们对环境的物理方面的影响还知之甚少。我们假设几何边界条件可能在凝结的线性模式中起关键作用,因为相邻组织为细胞群提供了物理约束。为了研究在严格控制的几何约束下的缩合过程及其图案,我们开发了一种新型的体外模型,该模型将微图案与已建立的微质量分析相结合。缩合的间距和排列随电池粘合剂图案的宽度而变化,这种现象不能仅通过电池可用性来解释。此外,在具有更严格的几何约束的基材上,软骨形成承诺的程度增加了。当在发育中的鸡胚的椎骨中研究凝结物的体内模式时,这些测量值非常适合几何约束与体外发现的缩合距离之间的定量关系。总之,这些发现暗示了几何约束在细胞自组织过程中在骨骼构图中的潜在作用。

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