Oriented and Ordered Biomimetic Remineralization of the Surface of Demineralized Dental Enamel Using HAP@ACP Nanoparticles Guided by Glycine

生物矿化 釉原蛋白 无定形磷酸钙 搪瓷漆 再矿化 纳米颗粒 牙齿再矿化 材料科学 磷灰石 化学工程 纳米技术 化学 矿物学 复合材料 工程类 冶金
作者
Haorong Wang,Zuohui Xiao,Jie Yang,Danyang Lu,Anil Kishen,Yanqiu Li,Zhe Chen,Kehua Que,Qian Zhang,Xuliang Deng,Xiaoping Yang,Qing Cai,Ning Chen,Changhong Cong,Binbin Guan,Ting Li,Xu Zhang
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:7 (1): 40701-40701 被引量:101
标识
DOI:10.1038/srep40701
摘要

Achieving oriented and ordered remineralization on the surface of demineralized dental enamel, thereby restoring the satisfactory mechanical properties approaching those of sound enamel, is still a challenge for dentists. To mimic the natural biomineralization approach for enamel remineralization, the biological process of enamel development proteins, such as amelogenin, was simulated in this study. In this work, carboxymethyl chitosan (CMC) conjugated with alendronate (ALN) was applied to stabilize amorphous calcium phosphate (ACP) to form CMC/ACP nanoparticles. Sodium hypochlorite (NaClO) functioned as the protease which decompose amelogenin in vivo to degrade the CMC-ALN matrix and generate HAP@ACP core-shell nanoparticles. Finally, when guided by 10 mM glycine (Gly), HAP@ACP nanoparticles can arrange orderly and subsequently transform from an amorphous phase to well-ordered rod-like apatite crystals to achieve oriented and ordered biomimetic remineralization on acid-etched enamel surfaces. This biomimetic remineralization process is achieved through the oriented attachment (OA) of nanoparticles based on non-classical crystallization theory. These results indicate that finding and developing analogues of natural proteins such as amelogenin involved in the biomineralization by natural macromolecular polymers and imitating the process of biomineralization would be an effective strategy for enamel remineralization. Furthermore, this method represents a promising method for the management of early caries in minimal invasive dentistry (MID).
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