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How the tooth got its stripes: patterning via strain-cued motility

机译:牙齿如何形成条纹:通过应变提示的运动来形成图案

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摘要

We hypothesize that a population of migrating cells can form patterns when changes in local strains owing to relative cell motions induce changes in cell motility. That the mechanism originates in competing rates of motion distinguishes it from mechanisms involving strain energy gradients, e.g. those generated by surface energy effects or eigenstrains among cells, and diffusion–reaction mechanisms involving chemical signalling factors. The theory is tested by its ability to reproduce the morphological characteristics of enamel in the mouse incisor. Dental enamel is formed during amelogenesis by a population of ameloblasts that move about laterally within an expanding curved sheet, subject to continuously evolving spatial and temporal gradients in strain. Discrete-cell simulations of this process compute the changing strain environment of all cells and predict cell trajectories by invoking simple rules for the motion of an individual cell in response to its strain environment. The rules balance a tendency for cells to enhance relative sliding motion against a tendency to maintain uniform cell–cell separation. The simulations account for observed waviness in the enamel microstructure, the speed and shape of the ‘commencement front’ that separates domains of migrating secretory-stage ameloblasts from those that are not yet migrating, the initiation and sustainment of layered, fracture-resistant decussation patterns (cross-plied microstructure) and the transition from decussating inner enamel to non-decussating outer enamel. All these characteristics can be correctly predicted with the use of a single scalar adjustable parameter.
机译:我们假设,当由于相对细胞运动而引起的局部菌株变化诱导细胞运动性变化时,迁移细胞群体可以形成模式。该机制起源于运动的竞争速率,使其与涉及应变能梯度的机制(例如它们是由表面能效应或细胞之间的本征应变以及涉及化学信号因子的扩散反应机制产生的。该理论通过其在小鼠门牙中复制牙釉质形态特征的能力进行了测试。牙釉质是在成釉过程中由成釉细胞群体形成的,成釉细胞在不断扩展的弯曲薄片内横向移动,并受到应变不断变化的时空梯度的影响。此过程的离散细胞模拟通过调用简单的规则来响应单个细胞响应其应变环境,从而计算出所有细胞不断变化的应变环境,并预测细胞轨迹。该规则平衡了细胞增强相对滑动的趋势与保持均匀的细胞间分离趋势的平衡。模拟说明了搪瓷微观结构中观察到的起伏,将迁移阶段的分泌成釉细胞与尚未迁移的成釉细胞区分开的“开始前沿”的速度和形状,分层的,抗断裂的层积模式的形成和维持(交叉叠置的微观结构)和从无内釉的过渡到无内釉的过渡。使用单个标量可调参数可以正确预测所有这些特性。

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