牙本质
脱盐
材料科学
钙
再生(生物学)
混合材料
磷酸盐
硬组织
化学工程
纳米技术
生物医学工程
化学
复合材料
有机化学
牙科
搪瓷漆
冶金
工程类
细胞生物学
生物
医学
作者
Lumiao Yan,Zheng Chen,Ding Yuan,Zhengxi Guo,Yihao Cui,Zhijian Xie,Zhi Chen,Ruikang Tang,Zhaoming Liu
标识
DOI:10.1002/adhm.202201161
摘要
Abstract The organic–inorganic structure in biological hard tissues ensures their marvelous characteristics but these hybrids are easily destroyed by the demineralization of inorganic components, e.g., the damage of dentin. Current clinical materials for hard tissue regeneration commonly act as “fillers” and their therapeutic effect is limited by the failures of biological‐linked organic–inorganic interface reconstruction. Herein, a fast in situ crosslinking of calcium phosphate oligomers (CPOs) on collagen matrixes for efficient organic–inorganic interface re‐construction, which can result in a biomimetic hybrid, is demonstrated. By using damaged dentin as an example, the inorganic ionic crosslinking can instantly infiltrate into the dentin matrix to rebuild a dense and continuous calcium phosphate‐collagen hybrid within only 5 min, where the structurally integrated organic–inorganic interface is identical to natural dentin. As a result, the damaged dentin can be fully recovered to a healthy one, which is superior to any current dentin treatments. The fast construction of biomimetic hybrid by inorganic ionic crosslinking provides a promising strategy for hard tissue repair and follows great potentials of CPOs as advanced biomedical materials in future.
科研通智能强力驱动
Strongly Powered by AbleSci AI