Experimental Embryology Lab, Consejo Superior de Investigaciones Científicas, Instituto de Neurociencias de Alicante, Universidad Miguel Hernandez Alicante, Spain.
Front Neuroanat. 2013 Jun 26;7:18. doi: 10.3389/fnana.2013.00018. eCollection 2013.
Historically, the molecular and cellular mechanisms of cerebellar development were investigated through structural descriptions and studying spontaneous mutations in animal models and humans. Advances in experimental embryology, genetic engineering, and neuroimaging techniques render today the possibility to approach the analysis of molecular mechanisms underlying histogenesis and morphogenesis of the cerebellum by experimental designs. Several genes and molecules were identified to be involved in the cerebellar plate regionalization, specification, and differentiation of cerebellar neurons, as well as the establishment of cellular migratory routes and the subsequent neuronal connectivity. Indeed, pattern formation of the cerebellum requires the adequate orchestration of both key morphogenetic signals, arising from distinct brain regions, and local expression of specific transcription factors. Thus, the present review wants to revisit and discuss these morphogenetic and molecular mechanisms taking place during cerebellar development in order to understand causal processes regulating cerebellar cytoarchitecture, its highly topographically ordered circuitry and its role in brain function.
从历史上看,通过对动物模型和人类自发突变的结构描述和研究,研究了小脑发育的分子和细胞机制。实验胚胎学、基因工程和神经影像学技术的进步使得今天有可能通过实验设计来研究小脑发生和形态发生的分子机制。已经确定了几个基因和分子参与小脑板的区域化、特化和小脑神经元的分化,以及细胞迁移途径的建立和随后的神经元连接。事实上,小脑的模式形成需要来自不同脑区的关键形态发生信号的适当协调,以及特定转录因子的局部表达。因此,本综述旨在重新审视和讨论这些发生在小脑发育过程中的形态发生和分子机制,以了解调节小脑细胞结构、其高度拓扑有序的回路及其在脑功能中的作用的因果过程。