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哺乳动物中耳上皮的双重起源。

Dual origin of the epithelium of the mammalian middle ear.

机构信息

Department of Craniofacial Development and Stem Cell Biology, King's College London, Guy's Hospital, London, UK, SE1 9RT.

出版信息

Science. 2013 Mar 22;339(6126):1453-6. doi: 10.1126/science.1232862.

Abstract

The air-filled cavity and ossicles of the mammalian middle ear conduct sound to the cochlea. Using transgenic mice, we show that the mammalian middle ear develops through cavitation of a neural crest mass. These cells, which previously underwent an epithelial-to-mesenchymal transformation upon leaving the neural tube, undergo a mesenchymal-to-epithelial transformation to form a lining continuous with the endodermally derived auditory tube. The epithelium derived from endodermal cells, which surrounds the auditory tube and eardrum, develops cilia, whereas the neural crest-derived epithelium does not. Thus, the cilia critical to clearing pathogenic infections from the middle ear are distributed according to developmental derivations. A different process of cavitation appears evident in birds and reptiles, indicating that this dual epithelium may be unique to mammals.

摘要

哺乳动物中耳的气腔和听小骨将声音传导至耳蜗。我们利用转基因小鼠表明,哺乳动物中耳通过神经嵴细胞团的空泡化形成。这些细胞在离开神经管后经历上皮-间充质转化,然后经历间充质-上皮转化以形成与内胚层来源的听觉管连续的衬里。源自听觉管和鼓膜周围的内胚层细胞的上皮产生纤毛,而神经嵴衍生的上皮则不产生纤毛。因此,对于清除中耳致病性感染至关重要的纤毛根据发育来源进行分布。在鸟类和爬行动物中似乎存在明显不同的空泡化过程,这表明这种双重上皮可能是哺乳动物所特有的。

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