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早期小脑发育与三叉神经系统的关系。

Early Cerebellar Development in Relation to the Trigeminal System.

机构信息

Department of Human Anatomy and Cell Science, The Children's Hospital Research Institute of Manitoba (CHRIM), Max Rady College of Medicine, Rady Faculty of Health Sciences, University of Manitoba, Rm 129 BMSB, 745 Bannatyne Avenue, Winnipeg, MB, R3E 0J9, Canada.

Department of Cell Biology & Anatomy and Hotchkiss Brain Institute, Faculty of Medicine, University of Calgary, Calgary, AB, T2N 4N1, Canada.

出版信息

Cerebellum. 2022 Oct;21(5):784-790. doi: 10.1007/s12311-022-01388-2. Epub 2022 Mar 2.

Abstract

Despite the wealth of knowledge of adult cerebellar connectivity, little is known about the developmental mechanisms that underpin its development. Early connectivity is important because it is the foundation of the neural networks crucial for neuronal function and serves as a scaffold on which later tracts form. Conventionally, it is believed that afferents from the vestibular system are the first to invade the cerebellum, at embryonic days (E) 11-E12/13 in mice, where they target the new born Purkinje cells. However, we have demonstrated that pioneer axons that originate from the trigeminal ganglia are already present in the cerebellar primordium by E9, a stage at which afferents from the vestibular ganglia have not yet reached the brainstem, where they target neurons of the cerebellar nuclei. An early-born subset of cerebellar nuclei may be derived from the mesencephalon. These may be the target of the earliest pioneer axons. They form the early connectivity at the rostral end. This is consistent with the notion that the formation of the antero-posterior axis follows a rostro-caudal sequence. The finding that trigeminal ganglion-derived pioneer axons enter the cerebellar primordium before Purkinje cells are born and target the cerebellar nuclei, reveals a novel perspective on the development of early cerebellar connectivity.

摘要

尽管人们对成人小脑连接的了解很多,但对构成其发育基础的发育机制却知之甚少。早期连接很重要,因为它是神经元功能所必需的神经网络的基础,并为后来形成的束提供了支架。传统上,人们认为前庭系统的传入神经是最早侵入小脑的,在小鼠的胚胎第 11-13 天(E),它们的靶标是新生的浦肯野细胞。然而,我们已经证明,源自三叉神经节的先驱轴突在 E9 时已经存在于小脑原基中,此时前庭神经节的传入神经尚未到达脑干,它们的靶标是小脑核神经元。小脑核的一个早生亚群可能来源于中脑。这些可能是最早的先驱轴突的靶标。它们在头部形成早期连接。这与前-后轴的形成遵循头-尾序列的观点是一致的。三叉神经节衍生的先驱轴突在浦肯野细胞出生之前进入小脑原基并靶向小脑核的发现,揭示了早期小脑连接发育的新视角。

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