Programmed Cell Death and Cell Transformation in Craniofacial Development
Open Access
- 1 July 1995
- journal article
- review article
- Published by SAGE Publications in Critical Reviews in Oral Biology & Medicine
- Vol. 6 (3) , 202-217
- https://doi.org/10.1177/10454411950060030301
Abstract
Fusion of branchial arch derivatives is an essential component in the development of craniofacial structures. Bilaterally symmetric branchial arch processes fuse in the midline to form the mandible, lips, and palate. The mechanism for fusion requires several different morphologic and molecular events prior to the completion of the mesenchymal continuity between opposing tissue processes. The ectodermal covering of the branchial arches is one of the cell types that has an important role during craniofacial development. The surface epithelia provide the initial adherence between the processes; however, this population of cells is ultimately absent from the fusion zone. The medial edge epithelium of the secondary palatal shelves is one example of such an epithelium that must disappear from the fusion zone of the secondary palate during development in order to complete palatal fusion. The mechanisms for removal of the epithelial cells from the fusion zone could include either programmed cell death, epithelial-mesenchymal transformation, or migration to adjacent epithelia. All three of these fates have been hypothesized as a mechanism for the removal of the palatal medial edge epithelia. The processes of programmed cell death, epithelial-mesenchymal transformation, and epithelial migration are reviewed with respect to both palatal fusion and results reported in other model systems.Keywords
This publication has 103 references indexed in Scilit:
- Cell Suicide: by ICE, Not FireScience, 1994
- bcl-x, a bcl-2-related gene that functions as a dominant regulator of apoptotic cell deathCell, 1993
- Thymocyte apoptosis induced by p53-dependent and independent pathwaysNature, 1993
- Apoptosis or programmed cell death?Cell Biology International, 1993
- Differentiation of isolated murine embryonic palatal epithelium in culture: exogenous transforming growth factor alpha modulates matrix biosynthesis in defined experimental conditionsIn Vitro Cellular & Developmental Biology – Animal, 1993
- Apoptotic cell death induced by c-myc is inhibited by bcl-2Nature, 1992
- The effects of epidermal growth factor, transforming growth factors alpha and beta and platelet-derived growth factor on murine palatal shelves in organ cultureArchives of Oral Biology, 1992
- Rearrangements of desmosomal and cytoskeletal proteins during the transition from epithelial to fibroblastoid organization in cultured rat bladder carcinoma cells.The Journal of cell biology, 1989
- Palatogenesis in hamster. II. Ultrastructural observations on the closure of palateJournal of Morphology, 1973
- Ultrastructure of mouse and rat palatal processes prior to and during secondary palate formationArchives of Oral Biology, 1968