首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >siRNA targeting Hes5 augments hair cell regeneration in aminoglycoside-damaged mouse utricle.
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siRNA targeting Hes5 augments hair cell regeneration in aminoglycoside-damaged mouse utricle.

机译:siRNA靶向HES5在氨基糖苷损伤的小鼠UTRICLICLICLICLICLICLICLICLICLICLICE中增强毛细胞再生。

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摘要

Notch signaling is active during the development of mosaic epithelial sheets and during their turnover and regeneration. After the loss of hair cells in the mosaic sheet of the vestibular sensory epithelium, new hair cells can be spontaneously generated by transdifferentiation of supporting cells. This regenerative process involves downregulation of the Hes5 gene and is known to be limited and incomplete, especially when the lesion is severe. Here, we test whether further downregulation of Hes5 gene accomplished by the use of siRNA after a severe lesion induced by an aminoglycoside in the mouse utricle can enhance the transdifferentiation of supporting cells and lead to the increased production of new hair cells. We demonstrate that Hes5 levels in the utricle decreased after the application of siRNA and that the number of hair cells in these utricles was significantly larger than following control treatment. The data suggest that siRNA technology may be useful for inducing repair and regeneration in the inner ear and that the Notch signaling pathway is a potentially useful target for specific gene expression inhibition.
机译:在马赛克上皮板的开发期间和转换和再生期间,凹口信令是有效的。在前庭感觉上皮的马赛克片中的头发细胞丧失之后,可以通过支持细胞的转染细胞来自发地产生新的毛细胞。该再生过程涉及HES5基因的下调,已知受限制和不完全,特别是当病变严重时。在这里,我们测试在小鼠尿素中的氨基糖苷氏苷诱导的严重病变后进一步下调HES5基因,在小鼠尿道中诱导的严重病变可以增强支撑细胞的转染细胞并导致增加新毛细胞的产生。我们证明,在施用siRNA之后,尿嘧啶中的HES5水平降低,并且这些卵泡中的毛细胞的数量显着大于以下对照处理。该数据表明siRNA技术可用于在内耳中诱导修复和再生,并且陷波信号通路是特定基因表达抑制的潜在有用的靶标。

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