首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Neuronal cell adhesion molecule (NrCAM) is expressed by sensory cells in the cochlea and is necessary for proper cochlear innervation and sensory domain patterning during development
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Neuronal cell adhesion molecule (NrCAM) is expressed by sensory cells in the cochlea and is necessary for proper cochlear innervation and sensory domain patterning during development

机译:神经元细胞粘附分子(NRCAM)由耳蜗中的感觉细胞表达,并且在开发期间适当的耳蜗内接管和感官域图案化是必要的

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Background : In the cochlea, auditory development depends on precise patterns of innervation by afferent and efferent nerve fibers, as well as a stereotyped arrangement of hair and supporting cells. Neuronal cell adhesion molecule (NrCAM) is a homophilic cell adhesion molecule that controls diverse aspects of nervous system development, but the function of NrCAM in cochlear development is not well understood. Results : Throughout cochlear innervation, NrCAM is detectable on spiral ganglion neuron (SGN) afferent and olivocochlear efferent fibers, and on the membranes of developing hair and supporting cells. Neonatal Nrcam ‐null cochleae show errors in type II SGN fasciculation, reduced efferent innervation, and defects in the stereotyped packing of hair and supporting cells. Nrcam loss also leads to dramatic changes in the profiles of presynaptic afferent and efferent synaptic markers at the time of hearing onset. Despite these numerous developmental defects, Nrcam‐ null adults do not show defects in auditory acuity, and by postnatal day 21, the developmental deficits in ribbon synapse distribution and sensory domain structure appear to have been corrected. Conclusions : NrCAM is expressed by several neural and sensory epithelial subtypes within the developing cochlea, and the loss of Nrcam confers numerous, but nonpermanent, developmental defects in innervation and sensory domain patterning. Developmental Dynamics 247:934–950, 2018 . ? 2018 Wiley Periodicals, Inc.
机译:背景:在耳蜗中,听觉发展取决于传入和散发性神经纤维的精确构建,以及毛发和支持细胞的刻板布置。神经元细胞粘附分子(NRCAM)是一种激发性细胞粘附分子,可控制神经系统发育的不同方面,但NRCAM在耳蜗发育中的功能尚不清楚。结果:在整个耳蜗内接管中,NRCAM可检测在螺旋神经节神经元(SGN)传入和奥利犬效果纤维上,以及在发育毛发和支撑细胞的膜上。新生儿NRCAM -NULL Cochleae显示II型SGN束型的误差,减少了散发性的头发和支撑细胞的刻板包装中的缺陷。在听力发作时,NRCAM损失也导致突触前传入和兴奋剂突触标记的概况曲线的变化。尽管存在这些众多发育缺陷,但NRCAM-零成年人在听觉敏锐度下没有显示出缺陷,并且在第四天第21天,似乎已经纠正了色带突触分布和感官域结构的发育缺陷。结论:NRCAM在显影耳蜗内的几种神经和感觉上皮亚型表达,NRCAM的丧失赋予了众多,但非正式,非经常的发育缺陷,并且在内部的发育缺陷和感官域图案化。发展动力学247:934-950,2018。还2018年Wiley期刊,Inc。

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