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耳部发育中的模式形成与细胞命运

Patterning and cell fate in ear development.

作者信息

Alsina Berta, Giraldez Fernando, Pujades Cristina

机构信息

Departament de Ciències Experimentals i de la Salut, Universitat Pompeu Fabra, Parc de Recerca Biomèdica de Barcelona (PRBB), Spain.

出版信息

Int J Dev Biol. 2009;53(8-10):1503-13. doi: 10.1387/ijdb.072422ba.

Abstract

The inner ear is a complex structure responsible for the senses of audition and balance in vertebrates. The ear is organised into different sense organs that are specialised to detect specific stimuli such as sound and linear or angular accelerations. The elementary sensory unit of the ear consists of hair cells, supporting cells, neurons and Schwann cells. Hair cells are the mechano-electrical transducing elements, and otic neurons convey information coded in electrical impulses to the brain. With the exception of the Schwann cells, all cellular elements of the inner ear derive from the otic placode. This is an ectodermal thickening that is specified in the head ectoderm adjacent to the caudal hindbrain. The complex organisation of the ear requires precise coupling of regional specification and cell fate decisions during development, i.e. specificity in defining particular spatial domains containing particular cell types. Those decisions are taken early in development and are the subject of this article. We review here recent work on: i) early patterning of the otic placode, ii) the role of neural tube signals in the patterning of the otic vesicle, and iii) the genes underlying cell fate determination of neurons and sensory hair cells.

摘要

内耳是一种复杂的结构,负责脊椎动物的听觉和平衡感。耳朵由不同的感觉器官组成,这些器官专门用于检测特定的刺激,如声音以及直线或角加速度。耳朵的基本感觉单元由毛细胞、支持细胞、神经元和施万细胞组成。毛细胞是机械 - 电转换元件,耳神经元将以电脉冲编码的信息传递给大脑。除了施万细胞外,内耳的所有细胞成分均源自耳基板。耳基板是一种外胚层增厚结构,在与尾侧后脑相邻的头部外胚层中特化形成。耳朵的复杂结构需要在发育过程中精确耦合区域特化和细胞命运决定,即在定义包含特定细胞类型的特定空间域时具有特异性。这些决定在发育早期做出,也是本文的主题。我们在此回顾近期关于以下方面的研究工作:i)耳基板的早期模式形成,ii)神经管信号在耳泡模式形成中的作用,以及iii)神经元和感觉毛细胞命运决定的相关基因。

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