Novel tea polyphenol‐modified calcium phosphate nanoparticle and its remineralization potential

再矿化 核化学 无定形磷酸钙 磷酸盐 化学 纳米颗粒 扫描电子显微镜 抗氧化剂 多酚 搪瓷漆 化学工程 无机化学 生物化学 材料科学 氟化物 纳米技术 有机化学 复合材料 工程类
作者
Libang He,Dongmei Deng,Xuedong Zhou,Lei Cheng,J.M. ten Cate,Jiyao Li,Xudong Li,Wim Crielaard
出处
期刊:Journal of Biomedical Materials Research Part B [Wiley]
卷期号:103 (8): 1525-1531 被引量:27
标识
DOI:10.1002/jbm.b.33333
摘要

Abstract Tea polyphenols (TP) are not only potent antimicrobial and antioxidant agents but also effective modifiers in the formation of nanosized crystals. Since nano‐hydroxyapatite (n‐HA) is known to enhance remineralization of dental hard tissue, our aims were to synthesize nanosized calcium phosphate particles incorporating TP and to test their potential as caries preventive agent. An ammonia water diffusion method was used to synthesize nanosized calcium phosphate particles (TP‐CaP) in the presence of various amounts of TP. The resultant products were characterized by scanning electron microscopy (SEM) and X‐ray diffraction (XRD). The remineralization potential of the nano TP‐CaP was then investigated in a 12‐day pH‐cycling model. Nano TP‐CaP slurries, at pH 7.0 and pH 5.5, were applied onto preformed enamel lesions 4 × 3 min per day. n‐HA slurries at pH 7.0 and pH 5.5 were used as positive controls, and deionized water was served as a negative control. SEM showed nanosized particles were only formed at 27 mg/mL of TP. Further characterization of the nanosized particles revealed the components were amorphous calcium phosphate, HA, and TP. Both surface microhardness and transverse microradiography analyses showed that nano TP‐CaP at pH 5.5, but not at pH 7.0, significantly enhanced remineralization, to the same extent as the n‐HA controls. Furthermore, significantly higher amount of TP was found in the supernatant of TP‐CaP at pH 5.5 than those at pH 7.0. Since TP can inhibit bacterial growth and enzyme activities, the novel nanosized TP‐CaP particle, at low pH, is a potential dual‐functional‐remineralization and antibacteria‐product. © 2014 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 103B: 1525–1531, 2015.
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