Department of Mathematics and Statistics, University of Melbourne, Victoria 3010, Australia.
J Theor Biol. 2011 May 7;276(1):250-68. doi: 10.1016/j.jtbi.2011.01.043. Epub 2011 Feb 4.
A defining characteristic of the normal development of the enteric nervous system (ENS) is the existence of an enteric neural crest (ENC) cell colonization wave, where the ENC cells form stable chains often associated with axons and near the vascular network. However, within this evolving neural network, the individual ENC cell elements constantly move, change direction and appear to act independently of neighbors. Three possible hypotheses are investigated. The simplest of these postulates that the ENS follows the vascular network as a template. We present evidence which does not support this hypothesis. Two viable alternatives are either that (i) the axons muster the ENC cells, providing the pattern for the chain migration or (ii) ENC cells form chains and the axons follow these paths. These two hypotheses are explored by developing a stochastic cellular automata model, where ENC agents follow simple rules, which reflect the underlying biology of movement, proliferation and differentiation. By simulating ENC precursors and the associated neurons and axons, two models with different fundamental mechanisms are developed. From local rules, a mesoscale network pattern with lacunae emerges, which can be analyzed quantitatively. Simulation and analysis establishes the parameters that affect the morphology of the resulting network. This investigation into the axon/ENC and ENC/ENC interplay suggests possible explanations for observations in mouse and avian embryos in normal and abnormal ENS development, as well as further experimentation.
正常肠神经系统(ENS)发育的一个特征是存在肠神经嵴(ENC)细胞定植波,其中 ENC 细胞形成稳定的链,通常与轴突相关联,并靠近脉管网络。然而,在这个不断发展的神经网络中,单个 ENC 细胞元件不断移动、改变方向,似乎独立于其邻居而发挥作用。有三个可能的假说被研究。其中最简单的假说是 ENS 沿着脉管网络作为模板。我们提出的证据不支持这个假说。另外两个可行的替代方案是,(i)轴突召集 ENC 细胞,为链迁移提供模式,或者(ii)ENC 细胞形成链,轴突沿着这些路径前进。通过开发一个随机细胞自动机模型,探索了这两个假说,其中 ENC 代理遵循简单的规则,反映了运动、增殖和分化的潜在生物学。通过模拟 ENC 前体和相关神经元和轴突,开发了两种具有不同基本机制的模型。从局部规则中,出现了具有空隙的介观网络模式,可以进行定量分析。模拟和分析确定了影响所得网络形态的参数。对轴突/ENC 和 ENC/ENC 相互作用的研究为正常和异常 ENS 发育中在小鼠和禽类胚胎中的观察结果提供了可能的解释,以及进一步的实验。