Mintech Bio provides a chair‑side remineralization technology that deposits nanostructured calcium‑phosphate onto demineralized enamel, rebuilding the native hydroxyapatite lattice and restoring hardness and translucency. The minimally invasive protocol requires no drilling or bonding agents and integrates with standard dental workflows, allowing dentists to repair early lesions, reduce sensitivity, and prevent further decay.
Funding
Funding not disclosed
Founders
Product
Problem
Dental enamel that has been demineralized by decay or acid exposure loses its crystalline structure, leading to reduced hardness, increased sensitivity, and higher risk of cavities. Conventional treatments such as fillings or fluoride applications only protect remaining tissue and do not fully restore the original enamel architecture.
Solution
Mintech Bio offers a proprietary remineralization technology that deposits mineral phases onto demineralized enamel, recreating the native hydroxyapatite lattice and restoring the mechanical and optical properties of the tooth surface. The process is applied directly to the tooth surface in a clinical setting, allowing the regenerated enamel to integrate with existing tissue without the need for invasive drilling or restorative materials. By re-establishing the enamel’s natural barrier, the solution helps prevent further decay, reduces hypersensitivity, and improves aesthetic appearance. The technology is compatible with standard dental workflows and can be used as a preventive or restorative treatment.
Target Audience
Primary customers are general dentists, pediatric dentists, and dental clinics seeking a minimally invasive method to repair early enamel lesions and improve patient outcomes.
Features
- Biomimetic mineral deposition that mimics natural enamel crystal growth
- Nanostructured calcium‑phosphate formulation for rapid penetration and bonding
- Clinically validated protocol that requires no drilling or bonding agents
- Restores hardness and translucency comparable to native enamel
- Compatible with existing dental instruments and chair‑side application