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Analysis of Rat Vestibular Hair Cell Development and Regeneration Using Calretinin as an Early Marker

机译:Calretinin作为早期标记的大鼠前庭毛细胞发育和再生的分析

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摘要

Despite increased interest in inner ear hair cell regeneration, it is still unclear what exact mechanisms underlie hair cell regeneration in mammals because of our limited understanding of hair cell development and the lack of specific hair cell markers. In this report, we studied hair cell development using immunohistochemistry on sections prepared from embryonic day (E) 13 to postnatal day 7 rat inner ear tissues. Of many epithelial, neuronal, and glial markers, we found that calcium-binding protein antibodies recognizing calretinin, calmodulin, or parvalbumin labeled immature hair cells in rat vestibular end organs. In particular, calretinin antiserum labeled the initial differentiating hair cells at E15, a stage immediately after the terminal mitosis of hair cell progenitors. The selective immunoreactivity of postmitotic presumptive hair cells, but not supporting cells or peripheral epithelial cells, was confirmed in utricular epithelial sheet cultures. Double labeling with calretinin and bromodeoxyuridine antibodies in long-term cultures showed that only a few mitotic utricular supporting cells became calretinin positive. Thus, although proliferation-mediated regeneration of new hair cells might directly contribute to hair cell regeneration in rat utricles after injury, it is very limited. In addition, double labeling with calretinin and terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling (TUNEL) revealed that differentiated hair cells underwent apoptosis during normal development at late embryonic and early postnatal stages in vivo and in vitro. Therefore, these experiments lay the groundwork for the time course of differentiation, regeneration, and apoptosis of mammalian vestibular hair cells. This work also suggests that calcium-binding proteins are useful markers for studies on inner ear hair cell differentiation and regeneration.
机译:尽管对内耳毛细胞再生的兴趣增加,但由于我们对毛细胞发育的了解有限以及缺乏特定的毛细胞标记物,目前尚不清楚哺乳动物毛细胞再生的确切机制是什么。在此报告中,我们研究了从胚胎第(E)天第13天到出生后第7天大鼠内耳组织制备的切片上使用免疫组织化学方法进行的毛细胞发育。在许多上皮,神经元和神经胶质标记物中,我们发现钙结合蛋白抗体可识别大鼠前庭终末器官中的钙调蛋白,钙调蛋白或小白蛋白标记的未成熟毛细胞。特别是,钙网蛋白抗血清在E15标记了最初分化的毛细胞,E15是在毛细胞祖细胞最终有丝分裂之后的一个阶段。在上皮表层培养物中证实了有丝分裂后推测的毛细胞的选择性免疫反应性,但不支持细胞或外周上皮细胞。在长期培养物中用钙网蛋白和溴脱氧尿苷抗体进行的双重标记显示,只有少数有丝分裂的细胞支持细胞变为钙网蛋白阳性。因此,尽管损伤后大鼠毛囊中新毛细胞的增殖介导的再生可能直接促进了毛细胞的再生,但这是非常有限的。此外,钙调蛋白和末端脱氧核苷酸转移酶介导的dUTP缺口末端标记(TUNEL)的双重标记显示,分化的毛细胞在体内和体外在胚胎后期和出生后早期的正常发育过程中经历了凋亡。因此,这些实验为哺乳动物前庭毛细胞的分化,再生和凋亡的时间过程奠定了基础。这项工作还表明钙结合蛋白是用于内耳毛细胞分化和再生研究的有用标记。

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