生物矿化
矿化(土壤科学)
矿化组织
材料科学
生物物理学
无定形磷酸钙
胶原纤维
生物分子
润湿
化学工程
磷酸盐
牙本质
化学
纳米技术
生物化学
有机化学
生物
复合材料
氮气
工程类
作者
Changyu Shao,Ruibo Zhao,Shuqin Jiang,Shasha Yao,Zhifang Wu,Biao Jin,Yuling Yang,Haihua Pan,Ruikang Tang
标识
DOI:10.1002/adma.201704876
摘要
Abstract Biological hard tissues such as bones always contain extremely high levels of citrate, which is believed to play an important role in bone formation as well as in osteoporosis treatments. However, its mechanism on biomineralization is not elucidated. Here, it is found that the adsorbed citrate molecules on collagen fibrils can significantly reduce the interfacial energy between the biological matrix and the amorphous calcium phosphate precursor to enhance their wetting effect at the early biomineralization stage, sequentially facilitating the intrafibrillar formation of hydroxyapatite to produce an inorganic–organic composite. It is demonstrated experimentally that only collagen fibrils containing ≈8.2 wt% of bound citrate (close to the level in biological bone) can reach the full mineralization as those in natural bones. The effect of citrate on the promotion of the collagen mineralization degree is also confirmed by in vitro dentin repair. This finding demonstrates the importance of interfacial controls in biomineralization and more generally, provides a physicochemical view about the regulation effect of small biomolecules on the biomineralization front.
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