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首页> 外文期刊>Brain research >New ectopic vestibular hair cell-like cells induced by Math1 gene transfer in postnatal rats.
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New ectopic vestibular hair cell-like cells induced by Math1 gene transfer in postnatal rats.

机译:Math1基因转移在产后大鼠中诱导的新的异位前庭毛细胞样细胞。

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摘要

Overexpression of Math1 has been demonstrated to induce robust ectopic new hair cells in greater epithelial ridge (GER) and lesser epithelial ridge (LER) of the postnatal rats' cochlear in vitro. In spite of the similarities between cochlear and vestibular epithelia in origin and structure, no similar results have been reported in the non-sensory region of vestibular epithelia in vitro. In the study, the adenoviral vectors inserted with Math1 gene were constructed to examine their effect on vestibular epithelia in postnatal rats. In vivo, the adenovirus vectors administered in vestibular perilymphatic or endolymphatic space, their transduction efficiency and other indexes are different. We set up a culture construction to simulate and show the differences. In the study, we also developed a new dissection protocol to be quick to harvest the whole maculae and cristae. The new ectopic vestibular hair cell-like cells induced by overexpression of Math1, were found to appear in the non-sensory region of the postnatal rats' vestibular epithelia as observed in the cochlear, and the number of the new cells was different when a different virus administration was simulated in vestibular perilymphatic or endolymphatic space, suggesting that the cells found could have the capability to differentiate into new hair cells. Our study might pave the way for further in vivo studies on vestibular Math1 adenoviral vector gene transfer.
机译:已经证明,Math1的过表达会在体外诱导产后大鼠耳蜗的上皮(GER)和小上皮(LER)诱导健壮的异位新毛细胞。尽管耳蜗和前庭上皮在来源和结构上相似,但在体外前庭上皮的非感觉区域尚未见类似结果的报道。在这项研究中,构建了插入Math1基因的腺病毒载体,以检查其对出生后大鼠前庭上皮细胞的作用。在体内,腺病毒载体在前庭周围淋巴或内淋巴空间中施用,其转导效率和其他指标是不同的。我们建立了一种文化结构来模拟并显示差异。在研究中,我们还开发了一种新的解剖方案,可以快速收获整个黄斑和cr。如在耳蜗中观察到的,发现由Math1的过表达诱导的新的异位前庭毛细胞样细胞出现在产后大鼠前庭上皮的非感觉区域,并且新细胞的数量不同在前庭周围淋巴或内淋巴空间模拟了病毒的施用,表明发现的细胞可能具有分化为新的毛细胞的能力。我们的研究可能为进一步的前庭Math1腺病毒载体基因转移的体内研究铺平道路。

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