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鸡耳基板中神经母细胞的起源及其在听神经节和前庭神经节中的分布

Origin of Neuroblasts in the Avian Otic Placode and Their Distributions in the Acoustic and Vestibular Ganglia.

作者信息

Hidalgo-Sánchez Matías, Callejas-Marín Antuca, Puelles Luis, Sánchez-Guardado Luis

机构信息

Department of Cell Biology, School of Science, University of Extremadura, E06071 Badajoz, Spain.

Department of Human Anatomy and Psychobiology, School of Medicine, University of Murcia, E30100 Murcia, Spain.

出版信息

Biology (Basel). 2023 Mar 15;12(3):453. doi: 10.3390/biology12030453.

Abstract

The inner ear is a complex three-dimensional sensorial structure with auditory and vestibular functions. This intricate sensory organ originates from the otic placode, which generates the sensory elements of the membranous labyrinth, as well as all the ganglionic neuronal precursors. How auditory and vestibular neurons establish their fate identities remains to be determined. Their topological origin in the incipient otic placode could provide positional information before they migrate, to later segregate in specific portions of the acoustic and vestibular ganglia. To address this question, transplants of small portions of the avian otic placode were performed according to our previous fate map study, using the quail/chick chimeric graft model. All grafts taking small areas of the neurogenic placodal domain contributed neuroblasts to both acoustic and vestibular ganglia. A differential distribution of otic neurons in the anterior and posterior lobes of the vestibular ganglion, as well as in the proximal, intermediate, and distal portions of the acoustic ganglion, was found. Our results clearly show that, in birds, there does not seem to be a strict segregation of acoustic and vestibular neurons in the incipient otic placode.

摘要

内耳是一个具有听觉和前庭功能的复杂三维感觉结构。这个复杂的感觉器官起源于耳板,耳板产生膜迷路的感觉元件以及所有神经节神经元前体。听觉和前庭神经元如何确定其命运身份仍有待确定。它们在初始耳板中的拓扑起源可以在迁移之前提供位置信息,以便后来在听觉和前庭神经节的特定部分中分离。为了解决这个问题,根据我们之前的命运图谱研究,使用鹌鹑/鸡嵌合移植模型对鸟类耳板的小部分进行了移植。所有取自神经源性板层区域小面积的移植都为听觉和前庭神经节贡献了神经母细胞。在前庭神经节的前叶和后叶以及听觉神经节的近端、中间和远端部分发现了耳神经元的差异分布。我们的结果清楚地表明,在鸟类中,初始耳板中听觉和前庭神经元似乎没有严格的分离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfef/10045822/aef7d3e77a72/biology-12-00453-g001.jpg

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