在小鸡听觉上皮细胞中镶嵌式缺失 atoh1 揭示了一种恢复毛细胞数量的平衡机制。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Nishant Singh , Raman Kaushik , Anubhav Prakash , Surjit Singh Saini , Sonal Garg , Adrija Adhikary , Raj K. Ladher
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引用次数: 0

摘要

脊椎动物内耳的机械感觉毛细胞会对听觉或重力加速度变化引起的机械偏转做出反应,使我们能够感知和解释声音,保持平衡和空间定位。在哺乳动物中,耳毒性化合物、疾病和声学创伤会导致毛细胞损伤和挤出,而不会被替代,从而导致听力损失。相反,非哺乳类脊椎动物的感觉毛细胞可以再生。一旦受损,毛细胞就会被挤出,与之相关的一种细胞类型--支持细胞就会转变为毛细胞。引发再生的机制尚不清楚。通过在胚胎鸟类内耳中镶嵌式缺失毛细胞主基因 Atoh1,我们发现,尽管毛细胞在 E9 期减少,但到 E12 期,感觉上皮细胞中的毛细胞数量得到恢复。我们的研究表明,基底乳头中的毛细胞数量可以通过一种平衡机制恢复,这种机制会在共神经信号中断时被激活。发育过程中毛细胞数量的恢复可能反映了再生过程,而我们的研究则为了解触发再生的机制提供了启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mosaic Atoh1 deletion in the chick auditory epithelium reveals a homeostatic mechanism to restore hair cell number

Mosaic Atoh1 deletion in the chick auditory epithelium reveals a homeostatic mechanism to restore hair cell number

The mechanosensory hair cell of the vertebrate inner ear responds to the mechanical deflections that result from hearing or change in the acceleration due to gravity, to allow us to perceive and interpret sounds, maintain balance and spatial orientation. In mammals, ototoxic compounds, disease, and acoustic trauma can result in damage and extrusion of hair cells, without replacement, resulting in hearing loss. In contrast, non-mammalian vertebrates can regenerate sensory hair cells. Upon damage, hair cells are extruded and an associated cell type, the supporting cell is transformed into a hair cell. The mechanisms that can trigger regeneration are not known. Using mosaic deletion of the hair cell master gene, Atoh1, in the embryonic avian inner ear, we find that despite hair cells depletion at E9, by E12, hair cell number is restored in sensory epithelium. Our study suggests a homeostatic mechanism can restores hair cell number in the basilar papilla, that is activated when juxtracrine signalling is disrupted. Restoration of hair cell numbers during development may mirror regenerative processes, and our work provides insights into the mechanisms that trigger regeneration.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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