PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 4, 2026International Journal of Oral Science3 citationsOpen Access

Soluble Notch agonist enables human ameloblast maturation and enamel-like tissue formation for tooth regeneration

APAnjali P. PatniRMRubul MoutAAAmmar Alghadeer

Key Points

  • To explore how a soluble Notch agonist influences the maturation of iPSC-derived ameloblasts and enamel formation.
  • Developed a soluble Notch agonist to induce maturation of iPSC-derived ameloblast organoids.
  • Transplanted mature organoids under kidney capsules of NOD-SCID mice to assess enamel-like tissue formation.
  • Analyzed gene expression related to enamel production and maturation in ameloblasts.
  • The soluble Notch agonist induced the maturation of iPSC-derived ameloblasts to an enamel-like phenotype.
  • Organoids formed enamel-like calcified material when transplanted into mice, verified by microCT analysis.
  • DLX3 gene is essential for enamelin and MMP20 expression in human ameloblasts, a novel finding.

Abstract

Enamel, the hardest mineralized material in the human body, protects the underlying living tissues, the dentin and pulp of the tooth. However, over 90% of adults have lost or damaged enamel and cannot regenerate the protective structure due to lack of enamel-producing cells, ameloblasts. iPSC-derived secretory Ameloblasts (isAM) have promise in future regenerative dentistry. Today, it is not known why iAM maturation requires intimate contact with the dentin-producing cell type, odontoblast. Here, we reveal that one of the critical signaling ligands emanating from odontoblasts for ameloblast maturation is Delta, the ligand for Notch receptor. We showed that our designed, soluble Notch agonist can induce iAM organoid maturation in an unprecedented manner, without interactions with odontoblast layer. Notably, soluble Notch agonist induces the iAM maturation to a novel, WDR72-positive mature secretory AM stage (ismAM) in our ameloblast organoid model. When transplanted under the kidney capsule of NOD-SCID mice, these ismAM organoids generated enamel-like calcified material, as confirmed by microCT analysis, marking the first demonstration that Notch-activated iAM organoids can form such tissue in vivo. This novel maturation procedure enabled us to analyze the specific requirements of DLX3 function in ameloblasts, independent of its known function in odontoblasts. We now show that DLX3, a gene associated with Amelogenesis Imperfecta, is required on a cell-autonomous manner in human ameloblasts for the expression of Enamelin, MMP20, and WDR72, a role not previously demonstrated in mouse models.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Patni et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd7ed48f933b5eed9e77https://doi.org/10.1038/s41368-026-00429-4
Ask AI
Helpful
Bookmark
Share
View Full Paper