Polyelectrolyte‐Cation Complexes Using PAsp‐Sr Complexes Induce Biomimetic Mineralization with Antibacterial Ability

生物相容性 牙本质 核化学 化学 矿化(土壤科学) 磷灰石 模拟体液 聚电解质 材料科学 化学工程 矿物学 复合材料 有机化学 聚合物 冶金 氮气 工程类
作者
Yuedan Xu,Dongni Shen,Zihuai Zhou,Yi Sun,Xinni Pan,Wei Liu,Chun Hung Chu,Ling Zhang,Matthias Hannig,Baiping Fu
出处
期刊:Advanced Healthcare Materials [Wiley]
卷期号:13 (7) 被引量:4
标识
DOI:10.1002/adhm.202303002
摘要

Abstract Remineralized dentin with an antibacterial ability is still a significant challenge in dentistry. Previously, a polyelectrolyte‐calcium complexes pre‐precursor (PCCP) process is proposed for rapid collagen mineralization. In the present study, the expansion concept of the PCCP process is explored by replacing the calcium with other cations, such as strontium. The results of transmission electron microscopy (TEM), 3D stochastic optical reconstruction microscopy, energy‐dispersive X‐ray analysis, Fourier transform infrared spectroscopy, and high‐resolution TEM with selected area electron diffraction demonstrate that biomimetic mineralization of collagen fibrils and demineralized dentin could be fulfilled with Sr&F‐codoped hydroxyapatite (HAp) after they are treated with poly‐aspartic acid‐strontium (PAsp‐Sr) suspension followed by a phosphate&fluoride solution. Moreover, dentin remineralized with Sr&F‐codoped HAp exhibits in vitro and in vivo antibacterial ability against Streptococcus mutans . The cytotoxicity and oral mucosa irritation tests reveal excellent biocompatibility of mineralization mediums (PAsp‐Sr suspension and phosphate&fluoride solution). The demineralized dentin's mechanical properties (elastic modulus and microhardness) could be restored almost to that of the intact dentin. Hence, the expansion concept of the PCCP process that replaces calcium ions with some cationic ions along with fluorine opens up new horizons for generating antibacterial remineralized dentin containing ions‐doped HAp with excellent biocompatibility via biomimetic mineralization technology.
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