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区域特异性内胚层信号指导神经嵴细胞形成三个中耳听小骨。

Region-specific endodermal signals direct neural crest cells to form the three middle ear ossicles.

机构信息

Department of Anatomy, Yonsei University College of Medicine, Seoul, South Korea.

BK21 PLUS Project for Medical Science, Yonsei University College of Medicine, Seoul, South Korea.

出版信息

Development. 2019 Jan 22;146(2):dev167965. doi: 10.1242/dev.167965.

Abstract

Defects in the middle ear ossicles - malleus, incus and stapes - can lead to conductive hearing loss. During development, neural crest cells (NCCs) migrate from the dorsal hindbrain to specific locations in pharyngeal arch (PA) 1 and 2, to form the malleus-incus and stapes, respectively. It is unclear how migratory NCCs reach their proper destination in the PA and initiate mesenchymal condensation to form specific ossicles. We show that secreted molecules sonic hedgehog (SHH) and bone morphogenetic protein 4 (BMP4) emanating from the pharyngeal endoderm are important in instructing region-specific NCC condensation to form malleus-incus and stapes, respectively, in mouse. Tissue-specific knockout of in the pharyngeal endoderm or (a transducer of SHH signaling) in NCCs causes the loss of malleus-incus condensation in PA1 but only affects the maintenance of stapes condensation in PA2. By contrast, knockout of in the pharyngeal endoderm or (a transducer of TGFβ/BMP signaling) in the NCCs disrupts NCC migration into the stapes region in PA2, affecting stapes formation. These results indicate that region-specific endodermal signals direct formation of specific middle ear ossicles.

摘要

中耳小骨(锤骨、砧骨和镫骨)的缺陷可导致传导性听力损失。在发育过程中,神经嵴细胞(NCC)从背侧后脑迁移到咽弓(PA)1 和 2 的特定位置,分别形成锤骨-砧骨和镫骨。迁移的 NCC 如何到达 PA 的适当目的地并启动间充质凝聚以形成特定的小骨,目前尚不清楚。我们表明,来自咽内胚层的分泌分子 sonic hedgehog (SHH) 和骨形态发生蛋白 4 (BMP4) 对于指示特定区域的 NCC 凝聚以分别形成锤骨-砧骨和镫骨在小鼠中非常重要。在咽内胚层中特异性敲除 或在 NCC 中敲除(SHH 信号的转导器) 会导致 PA1 中的锤骨-砧骨凝聚丧失,但仅影响 PA2 中镫骨凝聚的维持。相比之下,在咽内胚层中特异性敲除 或在 NCC 中敲除(TGFβ/BMP 信号的转导器)会破坏 NCC 向 PA2 中镫骨区域的迁移,从而影响镫骨的形成。这些结果表明,特定区域的内胚层信号指导特定中耳小骨的形成。

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