Mesodermal lineages in the developing respiratory system.

Trends in developmental biology Pub Date : 2016-01-01
Lu Han, Talia Nasr, Aaron M Zorn
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Abstract

The life-sustaining air-blood interface of the respiratory system requires the exquisite integration of the epithelial lining with the mesenchymal capillary network, all supported by elastic smooth muscle and rigid cartilage keeping the expandable airways open. These intimate tissue interactions originate in the early embryo, where bidirectional paracrine signaling between the endoderm epithelium and adjacent mesoderm orchestrates lung and trachea development and controls the stereotypical branching morphogenesis. Although much attention has focused on how these interactions impact the differentiation of the respiratory epithelium, relatively less is known about the patterning and differentiation of the mesenchyme. Endothelial cells, smooth muscle cells, and chondrocytes together with other types of mesenchymal cells are essential components of a functional respiratory system, and malformation of these cells can lead to various congenital defects. In this review, we summarize the current understanding of mesenchymal development in the fetal trachea and lung, focusing on recent findings from animal models that have begun to shed light on the poorly understood respiratory mesenchyme lineages.

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发育中的呼吸系统的中胚层谱系。
呼吸系统维持生命的气-血界面需要上皮衬里与间充质毛细血管网络的精细整合,所有这些都由弹性平滑肌和刚性软骨支撑,保持可扩张气道的开放。这些亲密的组织相互作用起源于胚胎早期,在胚胎早期,内胚层上皮和邻近的中胚层之间的双向旁分泌信号协调了肺和气管的发育,并控制了典型的分支形态发生。虽然很多注意力集中在这些相互作用如何影响呼吸上皮的分化上,但对间质的模式和分化知之甚少。内皮细胞、平滑肌细胞和软骨细胞以及其他类型的间充质细胞是功能呼吸系统的重要组成部分,这些细胞的畸形可导致各种先天性缺陷。在这篇综述中,我们总结了目前对胎儿气管和肺间质发育的了解,重点介绍了动物模型的最新发现,这些发现已经开始揭示人们对呼吸间质谱系知之甚少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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