Updated
Updated · Oral Health · Jul 11
UW Researchers Identify 2 Key Enamel-Regrowth Signals, Producing Enamel-Like Material in Mice
Updated
Updated · Oral Health · Jul 11

UW Researchers Identify 2 Key Enamel-Regrowth Signals, Producing Enamel-Like Material in Mice

1 articles · Updated · Oral Health · Jul 11

Summary

  • University of Washington researchers found DLX3 is required for terminal ameloblast maturation, while activating Notch signaling pushed stem cell-derived ameloblasts toward enamel-forming function.
  • CRISPR-made DLX3-deficient cells still formed early ameloblasts but failed to switch on the full enamel-secreting gene program, even under strong Notch stimulation.
  • Using single-cell RNA sequencing, human iPSC-derived tooth cells and mouse transplants, the team showed engineered organoids could generate enamel-like mineralized material beneath the kidney capsule of immunodeficient mice.
  • The March 2 study in the International Journal of Oral Science targets a major dentistry gap: human tooth enamel is the body's hardest tissue but cannot naturally regenerate once damaged.

Insights

Lab-grown enamel works in mice. What is the biggest hurdle preventing this from becoming a routine treatment for humans?
A new gel can repair enamel. Will this complex stem-cell method ever compete with simpler solutions for common cavities?