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鼓膜的发育方面:揭示其功能与疾病

Developmental aspects of the tympanic membrane: Shedding light on function and disease.

作者信息

Mozaffari Mona, Jiang Dan, Tucker Abigail S

机构信息

Centre for Craniofacial and Regenerative Biology, King's College London, Guy's Hospital, London, UK.

ENT Department, Guy's Hospital, London, UK.

出版信息

Genesis. 2020 Mar;58(3-4):e23348. doi: 10.1002/dvg.23348. Epub 2019 Nov 25.

Abstract

The ear drum, or tympanic membrane (TM), is a key component in the intricate relay that transmits air-borne sound to our fluid-filled inner ear. Despite early belief that the mammalian ear drum evolved as a transformation of a reptilian drum, newer fossil data suggests a parallel and independent evolution of this structure in mammals. The term "drum" belies what is in fact a complex three-dimensional structure formed from multiple embryonic cell lineages. Intriguingly, disease affects the ear drum differently in its different parts, with the superior and posterior parts being much more frequently affected. This suggests a key role for the developmental details of TM formation in its final form and function, both in homeostasis and regeneration. Here we review recent studies in rodent models and humans that are beginning to address large knowledge gaps in TM cell dynamics from a developmental biologist's point of view. We outline the biological and clinical uncertainties that remain, with a view to guiding the indispensable contribution that developmental biology will be able to make to better understanding the TM.

摘要

耳膜,即鼓膜(TM),是将空气传播的声音传递到充满液体的内耳的复杂传导系统中的关键组成部分。尽管早期认为哺乳动物的耳膜是由爬行动物的鼓膜演变而来,但新的化石数据表明,这种结构在哺乳动物中是平行且独立进化的。“鼓膜”这个术语掩盖了它实际上是一个由多个胚胎细胞谱系形成的复杂三维结构。有趣的是,疾病对耳膜不同部位的影响不同,上部和后部受影响的频率更高。这表明鼓膜形成的发育细节在其最终形态和功能中起着关键作用,无论是在稳态还是再生方面。在这里,我们回顾了最近在啮齿动物模型和人类中的研究,这些研究开始从发育生物学家的角度解决鼓膜细胞动力学方面的重大知识空白。我们概述了仍然存在的生物学和临床不确定性,以期指导发育生物学为更好地理解鼓膜做出不可或缺的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0280/7154630/4fee5bed17c6/DVG-58-e23348-g001.jpg

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