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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Three-dimensional culture of newborn rat utricle using an extracellular matrix promotes formation of a cyst.
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Three-dimensional culture of newborn rat utricle using an extracellular matrix promotes formation of a cyst.

机译:使用细胞外基质对新生大鼠幼鼠进行三维培养可促进囊肿的形成。

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The vestibule is the end organ devoted to sensing of head movements in space. To function properly, its mechano-receptors require the presence of a unique apical extracellular medium, the endolymph. Numerous studies have elucidated the mechanisms involved in the production and homeostasis of this unique medium and the responses of sensory cells to stimulation. However, anatomical constraints have prevented direct and simultaneous studies of their relationships. The aim of this study was the development of an in vitro model that would allow concomitant investigations on maturation and physiological properties of both the hair cells and their endolymphatic compartment. A three-dimensional (3D) culture of newborn rat utricles using an extracellular matrix sustaining 3D cellular growth was developed during 3, 6, or 10 days in vitro (DIV). Using morphological and electrophysiological techniques, we describe the de novo formation of a cyst. It was composed of the sensory epithelium and non-sensory cells-canalar, dark and intermediate cells-that polarized so that their apical surface faced its lumen. During the time of culture, the utricular potential (UP) was steady (-1.1+/-5.0 mV) in oxygenated condition, while in anoxia, the UP significantly decreased to -8.4+/-1.0 mV at 8 DIV. Over the same period, the K+ concentration in the cyst increased up to 86.1+/-33.9 mM (versus 5.6+/-1.5 mM in the bath). These observations indicated that the mechanisms generating the UP and the K-secretory activity were functional at this stage. Concomitantly, the hair cells acquired mature and functional properties: the type 1 and type 2 phenotypes, a mean resting membrane potential of -68.1+/-4.6 mV and typical electrophysiological responses. This preparation provides a powerful means to simultaneous access the hair cells and their endolymphatic compartment, with the possibility to use multi-technical approaches to investigate their interdependent relationships.
机译:前庭是致力于感知头部空间运动的末端器官。为了使其正常运转,其机械受体需要存在独特的顶端细胞外介质内淋巴。许多研究已经阐明了这种独特培养基的产生和体内平衡以及感觉细胞对刺激的反应所涉及的机制。但是,解剖学限制阻止了对其关系的直接和同时研究。这项研究的目的是开发一种体外模型,从而可以同时研究毛细胞及其内淋巴区室的成熟和生理特性。在体外(DIV)的3、6或10天中,开发了使用维持3D细胞生长的细胞外基质对新生大鼠小囊进行三维(3D)培养的技术。使用形态学和电生理技术,我们描述了囊肿的从头形成。它由感觉上皮和非感觉细胞(管形,深色和中间细胞)组成,这些细胞极化,使它们的顶表面面对内腔。在培养期间,在氧合条件下,脑电势(UP)稳定(-1.1 +/- 5.0 mV),而在缺氧时,在8 DIV时,UP显着降低至-8.4 +/- 1.0 mV。在同一时期,囊肿中的K +浓度增加至86.1 +/- 33.9 mM(与浴中的5.6 +/- 1.5 mM相比)。这些观察表明,在该阶段,产生UP和K分泌活性的机制起作用。同时,毛细胞获得了成熟和功能特性:1型和2型表型,-68.1 +/- 4.6 mV的平均静息膜电位和典型的电生理反应。这种制备方法提供了一种强大的手段,可以同时进入毛细胞及其内淋巴区室,并有可能使用多种技术方法来研究其相互依存的关系。

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