再生(生物学)
矿化(土壤科学)
搪瓷漆
角蛋白
材料科学
生物矿化
牙科
化学
复合材料
地质学
化学工程
工程类
生物
细胞生物学
医学
古生物学
有机化学
氮气
作者
Sara Gamea,Elham Radvar,Dimitra Athanasiadou,Ryan Lee Chan,Giacomo De Sero,Ecaterina Ware,Sunie Kundi,Ashish Patel,Shwan Horamee,Shuaib Hadadi,Mads Carlsen,Leanne Allison,Roland A. Fleck,K. L. Andrew Chan,Avijit Banerjee,Nicola M. Pugno,Marianne Liebi,Paul T. Sharpe,Karina M. M. Carneiro,Sherif Elsharkawy
标识
DOI:10.1002/adhm.202502465
摘要
Abstract Biomimetic protein‐based platforms, with their hierarchical networks and optimal mechanical properties, show promising potential for hard tissue regeneration, including dental enamel. However, achieving aligned enamel‐like apatite nanocrystals from organic matrices remains challenging. A simple organic‐based approach to re‐create the hierarchical enamel structure using water‐based keratin films is reported. These films assemble via disulfide bridging into a fibrous organic network and birefringent spherulitic construction of predominant ordered β‐sheet conformation. The flexible structure of keratin templates facilitates rearrangement of the secondary structures into α‐helices upon mineralization, guiding the ordered growth of apatite nanocrystals. This system has shown potential in repairing early defective dental enamel lesions, restoring both optical appearance and mechanical properties. This study offers a promising, simple, and clinically‐friendly method for developing novel protein‐based matrices for hard tissue regeneration from naturally abundant sources.
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