University of Louisville, Department of Molecular, Cellular and Craniofacial Biology, Louisville, KY 40201, USA.
Stowers Institute for Medical Research, Kansas City, MO 64110, USA; Department of Anatomy and Cell Biology, University of Kansas Medical Center, Kansas City, KS 66160, USA.
Dev Biol. 2014 Jan 15;385(2):200-10. doi: 10.1016/j.ydbio.2013.11.009. Epub 2013 Nov 16.
The cochleovestibular (CV) nerve, which connects the inner ear to the brain, is the nerve that enables the senses of hearing and balance. The aim of this study was to document the morphological development of the mouse CV nerve with respect to the two embryonic cells types that produce it, specifically, the otic vesicle-derived progenitors that give rise to neurons, and the neural crest cell (NCC) progenitors that give rise to glia. Otic tissues of mouse embryos carrying NCC lineage reporter transgenes were whole mount immunostained to identify neurons and NCC. Serial optical sections were collected by confocal microscopy and were compiled to render the three dimensional (3D) structure of the developing CV nerve. Spatial organization of the NCC and developing neurons suggest that neuronal and glial populations of the CV nerve develop in tandem from early stages of nerve formation. NCC form a sheath surrounding the CV ganglia and central axons. NCC are also closely associated with neurites projecting peripherally during formation of the vestibular and cochlear nerves. Physical ablation of NCC in chick embryos demonstrates that survival or regeneration of even a few individual NCC from ectopic positions in the hindbrain results in central projection of axons precisely following ectopic pathways made by regenerating NCC.
蜗-前庭(CV)神经连接内耳和大脑,是产生听觉和平衡感的神经。本研究旨在记录鼠标 CV 神经的形态发育,特别是产生它的两种胚胎细胞类型:产生神经元的耳泡衍生祖细胞和产生神经嵴细胞(NCC)的祖细胞。携带 NCC 谱系报告基因转基因的小鼠胚胎的耳组织进行全胚胎免疫染色以鉴定神经元和 NCC。通过共聚焦显微镜收集连续光学切片,并进行编译以呈现发育中的 CV 神经的三维(3D)结构。NCC 和发育中的神经元的空间组织表明,CV 神经的神经元和神经胶质群体从神经形成的早期阶段就协同发育。NCC 形成 CV 神经节和中央轴突的鞘。NCC 也与在前庭和耳蜗神经形成过程中向周围投射的神经突密切相关。鸡胚中 NCC 的物理消融表明,即使从后脑的异位位置存活或再生少数 NCC,也会导致轴突的中央投射沿着再生 NCC 形成的异位途径精确进行。