The application of hydrogels for enamel remineralization
Применение гидрогелей для реминерализации эмали
2024-06-25
SCID: 54.1/f8r756ad
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cross-linking polymersenamel remineralizationhydrogelshydroxyapatite crystals
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Abstract (AI)
Enamel is composed of numerous uniformly wide, well-oriented hydroxyapatite crystals. It possesses an acellular structure that cannot be repaired after undergoing damage. Therefore, remineralization after enamel defects has become a focal point of research. Hydrogels, which are materials with three-dimensional structures derived from cross-linking polymers, have garnered significant attention in recent studies. Their exceptional properties make them valuable in the application of enamel remineralization. In this review, we summarize the structure and formation of enamel, present the design considerations of hydrogels for enamel remineralization, explore diverse hydrogels types in this context, and finally, shed light on the potential future applications in this field.
Key Findings
1
Enamel is composed of uniformly wide, well-oriented hydroxyapatite crystals and is acellular, therefore unable to self-repair after damage.
2
Hydrogels—three-dimensional cross-linked polymer networks—have attracted significant attention for enamel remineralization because of their exceptional properties.
3
Remineralization of enamel defects is a major research focus due to enamel's inability to regenerate naturally.
4
The review summarizes enamel structure and formation, design considerations for hydrogels, diverse hydrogel types used for remineralization, and potential future applications in the field.
Research Object
Hydrogels used for enamel remineralization
Research Subject
Design, types, and application of hydrogels to promote enamel remineralization (including their properties and suitability for restoring hydroxyapatite crystal structure)
Publication Details
Publication Date
2024-06-25
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