Hydroxyapatite-anchored dendrimer for in situ remineralization of human tooth enamel

搪瓷漆 材料科学 原位 再矿化 牙釉质 树枝状大分子 牙齿再矿化 牙科 人类牙齿 生物医学工程 复合材料 高分子化学 化学 医学 有机化学
作者
Duo Wu,Jiaojiao Yang,Jiyao Li,Liang Chen,Bei Tang,Xingyu Chen,Wei Wu,Jianshu Li
出处
期刊:Biomaterials [Elsevier BV]
卷期号:34 (21): 5036-5047 被引量:173
标识
DOI:10.1016/j.biomaterials.2013.03.053
摘要

In situ remineralization of hydroxyapatite (HA) on human tooth enamel surface induced by organic matrices is of great interest in the fields of material science and stomatology. In order to mimic the organic matrices induced biomineralization process in developing enamel and enhance the binding strength at the remineralization interface, carboxyl-terminated poly(amido amine) (PAMAM-COOH)-alendronate (ALN) conjugate (ALN-PAMAM-COOH) was synthesized and characterized. PAMAM-COOH has a highly ordered architecture and is capable of promoting the HA crystallization process. ALN is conjugated on PAMAM-COOH due to its specific adsorption on HA (the main component of tooth enamel), resulting in increased binding strength which is tight enough to resist phosphate buffered saline (PBS) rinsing as compared with that of PAMAM-COOH alone. While incubated in artificial saliva, ALN-PAMAM-COOH could induce in situ remineralization of HA on acid-etched enamel, and the regenerated HA has the nanorod-like crystal structure similar to that of human tooth enamel. The hardness of acid-etched enamel samples treated by ALN-PAMAM-COOH can recover up to 95.5% of the original value with strong adhesion force. In vivo experiment also demonstrates that ALN-PAMAM-COOH is effective in repairing acid-etched enamel in the oral cavity. Overall, these results suggest that ALN-PAMAM-COOH is highly promising as a restorative biomaterial for in situ remineralization of human tooth enamel.

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