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Updated: Sep 13, 2025

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Published on: July 10, 2014
Impact of Amelogenesis Imperfecta on Junctional Epithelium Structure and Function
Kevin Lin1, Jake Ngu1, Susu Uyen Le1
1Department of Orofacial Sciences, School of Dentistry, University of California, San Francisco, CA 94143, USA.
None:
The junctional epithelium, which lines the inner gingival surface, seals the gingival sulcus to block the infiltration of food debris and pathogens. The junctional epithelium is derived from the reduced enamel epithelium, consisting of late developmental stage ameloblasts and accessory cells. No prior studies have investigated whether defective ameloblast differentiation or enamel matrix formation affects junctional epithelium anatomy or function. Here, we examined the junctional epithelium in mice exhibiting amelogenesis imperfecta due to loss-of-function mutations in the major enamel matrix protein amelogenin (Amelx-/-) or the critical enamel matrix protease KLK4 (Klk4-/-). Histological analyses demonstrated altered morphology and cell layer thickness of the junctional epithelium in Amelx-/- and Klk4-/- mice as compared to wt. Immunohistochemistry revealed reduced ODAM, laminin 5, and integrin α6, all of which are critical for the adhesion of the junctional epithelium to the enamel in Amelx-/- and Klk4-/- mice. Furthermore, we observed altered cell-cell adhesion and increased permeability of Dextran-GFP through the mutants' junctional epithelium, indicating defective barrier function. Reduced β-catenin and Ki67 at the base of the junctional epithelium in mutants suggest impaired mitotic activity and reduced capacity to replenish continuously desquamated epithelium. These findings highlight the essential role of normal amelogenesis in maintaining junctional epithelium homeostasis.
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