Abstract
The lung is a branched tubular network with two distinct compartments - the proximal conducting airways and the peripheral gas exchange region - separated by a discrete boundary termed the bronchoalveolar duct junction (BADJ). Here we image the developing mouse lung in three-dimensions (3D) and show that two nested developmental waves demarcate the BADJ under the control of a global hormonal signal. A first wave of branching morphogenesis progresses throughout embryonic development, generating branches for both compartments. A second wave of conducting airway differentiation follows the first wave but terminates earlier, specifying the proximal compartment and setting the BADJ. The second wave is terminated by a glucocorticoid signalling: premature activation or loss of glucocorticoid signalling causes a proximal or distal shift, respectively, in BADJ location. The results demonstrate a new mechanism of boundary formation in complex, 3D organs and provide new insights into glucocorticoid therapies for lung defects in premature birth. © 2014 Macmillan Publishers Limited. All rights reserved.
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CITATION STYLE
Alanis, D. M., Chang, D. R., Akiyama, H., Krasnow, M. A., & Chen, J. (2014). Two nested developmental waves demarcate a compartment boundary in the mouse lung. Nature Communications, 5. https://doi.org/10.1038/ncomms4923
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