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PROJECT SUMMARY Alveologenesis is the last step of lung maturation and generates ~95% of the gas- exchange surface area through formation of new septa. Disruption of alveologenesis, such as in bronchopulmonary dysplasia (BPD), leads to simplified alveoli, poor gas exchange and other respiratory deficiencies later in life. Myofibroblasts represents a key cell type in alveologenesis. In conventional two-dimensional analysis, myofibroblasts are depicted as dots at the tip of the finger-like septal crest, and are postulated to drive new septa formation by migrating into the lumen. We have found from three-dimensional analysis, that myofibroblasts are interconnected into rings, and rings are interconnected into nets. We postulate that it is the tensile property of this network of myofibroblasts that drive new septa formation. In mouse models of human lung development and disease, we will use genetic tools to investigate the role of myofibroblasts in normal alveologenesis, in alveolar simplification in BPD, and in regeneration of new septa after premature birth and BPD.
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Mechanosensor Function in the Control of Gas Exchange Surface Size and Composition
2023 Lung Development, Injury and Repair Gordon Research Conference and Gordon Research Seminar
  • 批准号:
    10683622
  • 项目类别:
  • 资助金额:
    $4.5万
  • 财政年份:
    2023
  • 负责人:
    Xin Sun
  • 依托单位:
Balancing Airway Progenitor versus Progeny: a Pathway from Mitochondria
Dissecting the Interoception Circuit that Controls Airway Constriction
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