A Dopamine Acrylamide Molecule for Promoting Collagen Biomimetic Mineralization and Regulating Crystal Growth Direction

矿化(土壤科学) 丙烯酰胺 分子 生物物理学 材料科学 多巴胺 晶体生长 纳米技术 仿生合成 仿生学 生物矿化 化学工程 化学 复合材料 结晶学 聚合物 神经科学 生物 有机化学 工程类 共聚物 氮气
作者
Leping Wu,Qingqing Wang,Yuzhu Li,Mengmeng Yang,Menglu Dong,Xiaoxue He,Shunli Zheng,Chris Ying Cao,Zheng Zhou,Yuancong Zhao,Quanli Li
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:13 (33): 39142-39156 被引量:18
标识
DOI:10.1021/acsami.1c12412
摘要

The reconstruction of the intra/interfibrillar mineralized collagen microstructure is extremely important in biomaterial science and regeneration medicine. However, certain problems, such as low efficiency and long period of mineralization, are apparent, and the mechanism of interfibrillar mineralization is often neglected in the present literature. Thus, we propose a novel model of biomimetic collagen mineralization that uses molecules with the dual function of cross-linking collagen and regulating collagen mineralization to construct the intrafibrillar and interfibrillar collagen mineralization of the structure of mineralized collagen hard tissues. In the present study completed in vitro, N-2-(3,4-dihydroxyphenyl) acrylamide (DAA) is used to bind and cross-link collagen molecules and further stabilize the self-assembled collagen fibers. The DAA–collagen complex provides more affinity with calcium and phosphate ions, which can reduce the calcium phosphate/collagen interfacial energy to promote hydroxyapatite (HA) nucleation and accelerate the rate of collagen fiber mineralization. Besides inducing intrafibrillar mineralization, the DAA–collagen complex mineralization template can realize interfibrillar mineralization with the c-axis of the HA crystal on the surface of collagen fibers and between fibers that are parallel to the long axis of collagen fibers. The DAA–collagen complex, as a new type of mineralization template, may provide a new collagen mineralization strategy to produce a mineralized scaffold material for tissue engineering or develop bone-like materials.
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