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Medial edge epithelium transforms to mesenchyme after embryonic palatal shelves fuse
1Department of Anatomy and Cellular Biology, Harvard Medical School, Boston, Massachusetts 02105.
Abstract:
The disappearance of palatal medial edge epithelium (MEE) after fusion of secondary palatal shelves is often cited as a classical example of embryonic remodeling by programmed cell death. We reinvestigated this phenomenon in 16-day rat embryos, using light and electron microscopy. We confirm reports that the periderm of the two-layered MEE begins to slough after shelves assume horizontal positions. In vitro, peridermal cells are not able to slough and are trapped during the adhesion process. In vivo, however, surface cells shed before the shelves in the anterior palate adhere, allowing junctions to form between opposing basal epithelial cells. Midline seams so formed consist of two layers of basal cells, all of which appear healthy. Even though its cells are dividing, growth of the seam fails to keep pace with palatal growth and it thins to one layer of cells, and then breaks up into small islands. The basal lamina disappears and elongating MEE cells extend filopodia into adjacent connective tissue. Electron micrographs reveal transitional steps in loss of epithelial characteristics and gain of fibroblast-like features by transforming MEE cells. One such feature, observed with the aid of immunofluorescence, is the turn of the mesenchymal cytoskeletal protein, vimentin. No cell death or macrophages are observed after adhesion and thinning over most of the palate. These data indicate that MEE is an ectoderm that retains the ability to transform into mesenchymal cells. Epithelial-mesenchymal transformation may be expressed in other embryonic remodelings (R.L. Trelstad, A. Hayashi, K. Hayashi, and P.K. Donahue, 1982, Dev. Biol. 92, 27), resulting in heretofore unsuspected conservation of embryonic cell populations.
Insights
The medial edge epithelium in developing palates does not undergo programmed cell death but transforms into mesenchymal cells. This epithelial-mesenchymal transformation is crucial for embryonic development and cell population conservation.
Area of Science:
- Developmental Biology
- Cell Biology
- Histology
Background:
- The disappearance of medial edge epithelium (MEE) during secondary palate fusion was traditionally attributed to programmed cell death.
- This process is considered a classic example of embryonic remodeling.
Purpose of the Study:
- To reinvestigate the phenomenon of MEE disappearance during secondary palate fusion in rat embryos.
- To clarify the cellular mechanisms involved in MEE remodeling.
Main Methods:
- Light and electron microscopy were used on 16-day rat embryos.
- In vitro and in vivo experiments were conducted to observe cell behavior.
- Immunofluorescence was employed to detect cytoskeletal protein expression.
Main Results:
- Peridermal cells slough off, allowing basal epithelial cells to form healthy midline seams.
- The seam thins and breaks into islands as it fails to keep pace with palatal growth.
- MEE cells transform, losing epithelial traits and gaining fibroblast-like features, including vimentin expression.
- No evidence of cell death or macrophages was observed in the majority of the palate.
Conclusions:
- The medial edge epithelium undergoes epithelial-mesenchymal transformation, not programmed cell death.
- This transformation contributes to embryonic remodeling and may involve conserved embryonic cell populations.
- Epithelial-mesenchymal transformation is a significant mechanism in embryonic development.