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首页> 外文期刊>The Journal of Comparative Neurology >Establishment of mice expressing EGFP in the placode-derived inner ear sensory cell lineage and FACS-array analysis focused on the regional specificity of the otocyst.
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Establishment of mice expressing EGFP in the placode-derived inner ear sensory cell lineage and FACS-array analysis focused on the regional specificity of the otocyst.

机译:流式细胞仪的内耳感觉细胞谱系中表达EGFP的小鼠的建立和FACS阵列分析的重点是耳囊的区域特异性。

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摘要

In this study, we established a novel enhanced green fluorescent protein (EGFP) reporter mouse line that enables the visualization of the placode-derived inner ear sensory cell lineage. EGFP was initially expressed in the otic placode and throughout its differentiation process into the inner ear sensory patches. At embryonic day 10.5 (E10.5), EGFP was expressed in the ventral and dorsomedial region of the otocyst. These regions could mainly give rise to the cochlea, including the organ of Corti, and the saccule, including the macula and the endolymphatic duct. The region could also give rise to cells that will develop as either prosensory cells or statoacoustic ganglion neuroblasts. By using this line and fluorescence-activated cell sorting (FACS)-array technology, we developed a new gene expression profile of the regional specificity of the otocyst. EGFP-positive regions include the Otx1-positive region, which could be clearly distinguished from EGFP-negative regions. The signal log ratio of microarray data showed high efficiency in predicting the genes expressed mainly in the ventral and/or dorsomedial otocyst and the data could be mined to uncover many novel genes involved in inner ear morphogenesis and cell fate regulation. Additionally, these data suggest that some novel genes enriched in EGFP-positive regions may be potentially involved in human congenital sensorineural hearing loss. This reporter line could play important roles in the use of animal models for detailed analysis of the differentiation process into the sensory patches and the identification of regional-specific gene networks and novel gene functions in the developing inner ear.
机译:在这项研究中,我们建立了一种新型的增强型绿色荧光蛋白(EGFP)报告基因小鼠系,能够可视化斑块衍生的内耳感觉细胞谱系。 EGFP最初在耳底斑中表达,并在整个分化过程中表达为内耳感觉斑块。在胚胎第10.5天(E10.5),EGFP在耳囊的腹侧和背侧区域表达。这些区域可能主要产生包括Corti器官在内的耳蜗,以及包括黄斑和内淋巴管在内的球囊。该区域还可能产生将发展为感觉细胞或静听神经节神经母细胞的细胞。通过使用此行和荧光激活细胞分选(FACS)阵列技术,我们开发了耳囊区域特异性的新基因表达谱。 EGFP阳性区域包括Otx1阳性区域,可以与EGFP阴性区域清楚地区分开。微阵列数据的信号对数比显示出预测主要在腹侧和/或背囊耳囊中表达的基因的高效,并且可以挖掘该数据以发现许多涉及内耳形态发生和细胞命运调控的新基因。此外,这些数据表明,一些富含EGFP阳性区域的新基因可能与人类先天性感音神经性听力损失有关。该报道分子系可能在动物模型的使用中起重要作用,该动物模型用于详细分析分化为感觉斑块的过程以及鉴定发育中的内耳的区域特异性基因网络和新型基因功能。

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