首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Role of Sonic hedgehog in patterning of tracheal-bronchial cartilage and the peripheral lung.
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Role of Sonic hedgehog in patterning of tracheal-bronchial cartilage and the peripheral lung.

机译:声波刺猬在气管支气管软骨和周围肺的模式中的作用。

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摘要

Sonic hedgehog (Shh) was conditionally deleted in respiratory epithelial cells of the embryonic lung in vivo. Deletion of Shh before embryonic day (E) 13.5 resulted in respiratory failure at birth. While lobulation was not perturbed, the lungs were hypoplastic, with reduced branching of peripheral lung tubules, evident from E13.5. Smooth muscle and endothelial cells were absent or reduced, the latter in relationship to the loss of peripheral lung parenchyma. Tracheal-bronchial ring abnormalities occurred when Shh was deleted between E8.5 and E12.5. Deletion of Shh later in gestation (after E13.5) caused mild abrogation of peripheral branching morphogenesis but did not disrupt tracheal-bronchial development. Defects in branching morphogenesis and vascularization seen in Shh null mutant (Shh(-/-)) mice were substantially corrected when SHH was ectopically expressed in the respiratory epithelium; however, peripheral expression of SHH failed to correct cartilage abnormalities in the trachea and bronchi, indicating a spatial requirement for SHH expression near sites of cartilage formation. Expression of SHH by the respiratory epithelium plays an important role in the patterning of tracheal-bronchial mesenchyme required for formation of cartilage rings in conducting airways. SHH regulates branching morphogenesis and influences differentiation of the peripheral lung mesenchyme required for formation of bronchial and vascular smooth muscle. Developmental Dynamics 231:57-71, 2004. Copyright 2004 Wiley-Liss, Inc.
机译:在体内胚胎肺的呼吸道上皮细胞中有条件地删除了声波刺猬(Shh)。在胚胎第(E)13.5天之前删除Shh会导致出生时出现呼吸衰竭。从E13.5可以看出,虽然小叶没有受到干扰,但肺部发育不良,外周肺小管分支减少。平滑肌和内皮细胞不存在或减少,后者与周围肺实质丧失有关。在E8.5和E12.5之间删除Shh时,发生气管支气管环异常。在妊娠后期(E13.5之后)删除Shh会引起周围分支形态的轻度消失,但不会破坏气管支气管的发育。当SHH在呼吸道上皮中异位表达时,Shh null突变(Shh(-/-))小鼠中看到的分支形态发生和血管形成的缺陷已得到基本纠正。然而,SHH的外周表达不能纠正气管和支气管中的软骨异常,这表明在软骨形成部位附近SHH表达的空间需求。呼吸道上皮表达SHH在形成气管中的软骨环所需的气管-支气管间充质的模式中起重要作用。 SHH调节分支形态,并影响形成支气管和血管平滑肌所需的周围肺间充质的分化。 Developmental Dynamics 231:57-71,2004。版权所有2004 Wiley-Liss,Inc.。

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