Extracellular Matrix in Secondary Palate Development
- PMID: 31513730
- DOI: 10.1002/ar.24263
Extracellular Matrix in Secondary Palate Development
Abstract
The secondary palate arises from outgrowths of epithelia-covered embryonic mesenchyme that grow from the maxillary prominence, remodel to meet over the tongue, and fuse at the midline. These events require the coordination of cell proliferation, migration, and gene expression, all of which take place in the context of the extracellular matrix (ECM). Palatal cells generate their ECM, and then stiffen, degrade, or otherwise modify its properties to achieve the required cell movement and organization during palatogenesis. The ECM, in turn, acts on the cells through their matrix receptors to change their gene expression and thus their phenotype. The number of ECM-related gene mutations that cause cleft palate in mice and humans is a testament to the crucial role the matrix plays in palate development and a reminder that understanding that role is vital to our progress in treating palate deformities. This article will review the known ECM constituents at each stage of palatogenesis, the mechanisms of tissue reorganization and cell migration through the palatal ECM, the reciprocal relationship between the ECM and gene expression, and human syndromes with cleft palate that arise from mutations of ECM proteins and their regulators. Anat Rec, 2019. © 2019 American Association for Anatomy.
Keywords: cell migration; cleft palate; gene expression; matrix stiffness; palate.
© 2019 American Association for Anatomy.
References
Literature Cited
-
- Adab K, Sayne JR, Carlson DS, Opperman LA. 2002. Tgf-beta1, Tgf-beta2, Tgf-beta3 and Msx2 expression is elevated during frontonasal suture morphogenesis and during active postnatal facial growth. Orthod Craniofac Res 5:227-237.
-
- Adab K, Sayne JR, Carlson DS, Opperman LA. 2003. Nasal capsular cartilage is required for rat transpalatal suture morphogenesis. Differentiation 71:496-505.
-
- Ahmed S, Liu CC, Nawshad A. 2007. Mechanisms of palatal epithelial seam disintegration by transforming growth factor (TGF) beta3. Dev Biol 309:193-207.
-
- Aman A, Piotrowski T. 2008. Wnt/beta-catenin and Fgf signaling control collective cell migration by restricting chemokine receptor expression. Dev Cell 15:749-761.
-
- Basch ML, Garcia-Castro MI, Bronner-Fraser M. 2004. Molecular mechanisms of neural crest induction. Birth Defects Res Part C Embryo Today 72:109-123.
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