论文标题

神经元的生长和定向表面上神经元网络的形成

Neuronal Growth and Formation of Neuron Networks on Directional Surfaces

论文作者

Yurchenko, Ilya, Farwell, Matthew, Brady, Donovan D., Staii, Cristian

论文摘要

神经元网络的形成是理解神经系统发展以及为组织工程和神经修复创建仿生设备的基本重要性。控制网络形成的基本过程是细胞体轴突的生长及其向靶神经元扩展。轴突生长是由环境刺激指导的,包括细胞间相互作用,生化线索以及生长基板的机械和几何特性。尽管最近取得了重大进展,但增长的轴突的转向仍然鲜为人知。在本文中,我们开发了一种轴突运动模型,该模型结合了底物 - 几何感测。我们将实验数据与理论分析相结合,以测量描述微图表上轴突生长的参数:扩散(细胞运动)系数,速度和角度分布以及细胞 - 底物相互作用。对用微管(紫杉醇)和肌动蛋白丝(Y-27632)进行抑制剂治疗的神经元进行的实验表明,细胞骨架动力学在转向机制中起着至关重要的作用。我们的结果表明,轴突通过接触援助机制遵循几何模式,其中几何模式赋予了高牵引力的生长锥。这些结果对生物工程新型底物具有重要意义,以指导神经元生长并促进神经修复。

The formation of neuron networks is a process of fundamental importance for understanding the development of the nervous system and for creating biomimetic devices for tissue engineering and neural repair. The basic process that controls the network formation is the growth of an axon from the cell body and its extension towards target neurons. Axonal growth is directed by environmental stimuli that include intercellular interactions, biochemical cues, and the mechanical and geometrical properties of the growth substrate. Despite significant recent progress, the steering of the growing axon remains poorly understood. In this paper, we develop a model of axonal motility, which incorporates substrate-geometry sensing. We combine experimental data with theoretical analysis to measure the parameters that describe axonal growth on micropatterned surfaces: diffusion (cell motility) coefficients, speed and angular distributions, and cell-substrate interactions. Experiments performed on neurons treated with inhibitors for microtubules (Taxol) and actin filaments (Y-27632) indicate that cytoskeletal dynamics play a critical role in the steering mechanism. Our results demonstrate that axons follow geometrical patterns through a contact-guidance mechanism, in which geometrical patterns impart high traction forces to the growth cone. These results have important implications for bioengineering novel substrates to guide neuronal growth and promote nerve repair.

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