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Chondrocyte-specific Smad4 gene conditional knockout results in hearing loss and inner ear malformation in mice.

机译:软骨细胞特异性Smad4基因条件性敲除导致小鼠听力下降和内耳畸形。

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摘要

Smad4 is the central intracellular mediator of transforming growth factor-beta (TGF-beta) signaling, which plays crucial roles in tissue regeneration, cell differentiation, embryonic development, and regulation of the immune system. Conventional Smad4 gene knockout results in embryonic lethality, precluding its use in studies of the role of Smad4 in inner ear development. We used chondrocyte-specific Smad4 knockout mice (Smad4Co/Co) to investigate the function of Smad4 in inner ear development. Smad4Co/Co mice were characterized by a smaller cochlear volume, bone malformation, and abnormalities of the osseous spiral lamina and basilar membrane. The development of the hair cells was also abnormal, as evidenced by the disorganized stereocilia and reduced density of the neuronal processes beneath the hair cells. Auditory function tests revealed the homozygous Smad4Co/Co mice suffered from severe sensorineural hearing loss. Our results suggest that Smad4 is required for inner ear development and normal auditory function in mammals.
机译:Smad4是转化生长因子-β(TGF-beta)信号传导的中心细胞内介体,在组织再生,细胞分化,胚胎发育和免疫系统调节中起关键作用。常规的Smad4基因敲除会导致胚胎致死,从而使其无法用于研究Smad4在内耳发育中的作用。我们使用软骨细胞特异性Smad4基因敲除小鼠(Smad4Co / Co)来研究Smad4在内耳发育中的功能。 Smad4Co / Co小鼠的特征是耳蜗体积较小,骨骼畸形以及骨螺旋层和基底膜异常。毛细胞的发育也是异常的,如立体毛细胞紊乱和毛细胞下方神经元过程密度降低所证明的。听觉功能测试显示纯合的Smad4Co / Co小鼠患有严重的感音神经性听力损失。我们的结果表明,Smad4是哺乳动物内耳发育和正常听觉功能所必需的。

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