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September 12, 2025Advanced Functional Materials2 citations

Engineering a Biomimetic DentinLayer via Light‐Responsive Self‐Mineralizing Collagen Matrix for Dentin Repair

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JLJiyun LiXWXiaoyi WuKLKaifeng Li

Key Points

  • The biomimetic DentinLayer effectively restores dentin's mechanical integrity and occludes dentinal tubules.
  • Rapid collagen mineralization and pain reduction were observed in both in vitro and in vivo environments.
  • The method involves photo-crosslinking collagen with calcium phosphate, creating a hydrogel that supports dentin regeneration.
  • This approach highlights the potential for minimally invasive techniques in restoring dentin structure and function.

Abstract

Abstract Tooth integrity is essential for maintaining oral and systemic health. Dentin degradation poses a significant clinical burden, as exposed dentinal tubules serve as direct pathways for irritants and pathogens, triggering pain, inflammation, and irreversible pulp damage. Although biomimetic mineralization holds great promise for dentin regeneration, its clinical translation remains hindered by ineffective mineralization templates due to collagen degradation, poor mineral precursor delivery, and insufficient dentin–pulp complex restoration. Inspired by natural biomineralization, a biomimetic DentinLayer is constructed by photo‐crosslinking methacrylated type I collagen (ColMA) with methacrylated polyacrylic acid‐stabilized amorphous calcium phosphate (PMA@ACP), forming a composite hydrogel (ColPMA@ACP) that induces spontaneous intrafibrillar mineralization of both native and applied collagen. Both in vitro and in vivo studies confirm that ColPMA@ACP facilitates rapid collagen mineralization, effectively occludes dentinal tubules, restores dentin mechanical integrity, and creates a favorable microenvironment that supports reparative dentin formation and attenuates pain‐related neural signaling. This multifunctional biomimetic DentinLayer offers a minimally invasive, clinically translatable strategy that integrates structural reconstruction, mineralization templating, and autonomous mineralization to effectively restore the structure, function, and bioactivity of dentin. It provides a new approach for dentin defect repair and offers a versatile framework for the development of bioinspired materials in regenerative dentistry.

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Cite This Study

Li et al. (2025) studied this question.

synapsesocial.com/papers/68d44b2231b076d99fa53f6fhttps://doi.org/10.1002/adfm.202518601
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Biomimetic strategies for the dentin mineralization, using bioactive molecules: a scoping review and bibliometric analysis (2015–2025)2026 · 2 citations
  2. 2Biomimetic Remineralization of Dental Hard Tissues via Amyloid‐Like Protein Matrix Composite with Amorphous Calcium Phosphate2024 · 19 citations
  3. 3Biomimetic Biomineralization Strategies in Contemporary Restorative Dentistry: From Molecular Mechanisms to Clinical Application - A Comprehensive Review2026
  4. 4Hierarchical Mineralization Buffer Zone for Dentin Interface Reconstruction via Protein‐Guided Nonclassical Mineralization2026
  5. 5TA@PN System-Mediated Collagen Cross-Linking and Biomimetic Mineralization for Dentinal Tubule Occlusion in Dentin Hypersensitivity Management2025