4.5 Article

Resolving the heterogeneity of diaphragmatic mesenchyme: a novel mouse model of congenital diaphragmatic hernia

期刊

DISEASE MODELS & MECHANISMS
卷 14, 期 1, 页码 -

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COMPANY BIOLOGISTS LTD
DOI: 10.1242/dmm.046797

关键词

Congenital diaphragmatic hernia; Wt1; Diaphragm development; Prx1-Cre; Mesenchyme; Mouse model; (you-ying; chau@ed; ac; uk)

资金

  1. Medical Research Council (MRC) Human Genetics Unit PhD studentship
  2. University of Edinburgh Fellowship
  3. la Caixa Foundation [LCF/PR/HR17/52150009]
  4. Cancer Research UK [C157/A25140, C157/A15703]
  5. MRC Human Genetics Unit

向作者/读者索取更多资源

Congenital diaphragmatic hernia (CDH) is a common developmental defect with high morbidity. Research suggests that the formation of the diaphragm involves multiple cell types, with the etiology being complex and unclear. The study highlights the importance of non-muscle mesenchyme in diaphragm development, showing that abnormalities in this cell population can lead to CDH.
Congenital diaphragmatic hernia (CDH) is a relatively common developmental defect with considerable mortality and morbidity. Formation of the diaphragm is a complex process that involves several cell types, each with different developmental origins. Owing to this complexity, the aetiology of CDH is not well understood. The pleuroperitoneal folds (PPFs) and the posthepatic mesenchymal plate (PHMP) are transient structures that are essential during diaphragm development. Using several mouse models, including lineage tracing, we demonstrate the heterogeneous nature of the cells that make up the PPFs. The conditional deletion of Wilms tumor 1 homolog (Wt1) in the non-muscle mesenchyme of the PPFs results in CDH. We show that the fusion of the PPFs and the PHMP to form a continuous band of tissue involves movements of cells from both sources. The PPFs of mutant mice fail to fuse with the PHMP and exhibit increased RALDH2 (also known as ALDH1A2) expression. However, no changes in the expression of genes (including Snai1, Snai2, Cdh1 and Vim) implicated in epithelial-to-mesenchymal transition are observed. Additionally, the mutant PPFs lack migrating myoblasts and muscle connective tissue fibroblasts (TCF4+/GATA4+), suggesting possible interactions between these cell types. Our study demonstrates the importance of the non-muscle mesenchyme in development of the diaphragm.

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