口腔医学 ›› 2026, Vol. 46 ›› Issue (9): 663-670.doi: 10.13591/j.cnki.kqyx.2026.09.004

• 基础与临床研究 • 上一篇    下一篇

P-PAMAM介导不同钙磷比再矿化液诱导牙釉质再矿化的实验研究

孙思怡1,2, 沙颖1,2, 秦梓一1,2, 江飞2,3, 徐海1,2, 张光东1,2()   

  1. 1 1南京医科大学附属口腔医院急诊、综合诊疗科, 江苏南京 (210029)
    2 南京医科大学口腔医学院, 江苏南京 (210029)
    3 南京医科大学附属口腔医院口腔种植科, 江苏南京 (210029)
  • 收稿日期:2026-03-17 出版日期:2026-09-28 发布日期:2026-09-20
  • 通讯作者: 张光东 E-mail:egd_zhang@njmu.edu.cn
  • 基金资助:
    江苏省科教能力提升工程——江苏省研究型医院(YJXYYJSDW4);江苏省医学创新中心(CXZX202227);南京市卫生科技发展专项资金(YKK24293)

Experimental study on enamel remineralization induced by remineralization solutions with different calcium-to-phosphate ratios mediated by P-PAMAM

SUN Siyi1,2, SHA Ying1,2, QIN Ziyi1,2, JIANG Fei2,3, XU Hai1,2, ZHANG Guangdong1,2()   

  1. Department of Emergency and General Dentistry, The Affiliated Stomatological Hospital of Nanjing Medical University, Nanjing 210029, China
  • Received:2026-03-17 Online:2026-09-28 Published:2026-09-20

摘要:

目的 本研究旨在探究不同钙磷比例的再矿化液对磷酸化聚酰胺胺(phosphorylated polyamidoamine,P-PAMAM)树状大分子诱导形成的再矿化层特性的影响,以期获得适当的P-PAMAM质量浓度与再矿化液钙磷比,为构建口内再矿化体系提供思路。方法 体外磷酸化修饰PAMAM,用衰减全反射傅里叶变换红外光谱和核磁共振氢谱对修饰结果进行确证,通过对P-PAMAM吸附羟基磷灰石(hydroxyapatite,HAP)的能力及其生物安全性进行分析筛选P-PAMAM质量浓度并制备脱矿人牙釉质样本。以再矿化条件为2∶1+P-P、1.67∶1+P-P、1.67∶1、1∶1+P-P、0.5∶1+P-P进行分组,体外矿化脱矿人牙釉质样本24 h、1周、3周后,用扫描电子显微镜分析牙釉质表面形态,用显微维氏硬度分析再矿化层硬度,结合X射线衍射分析再矿化层晶体结构。结果 再矿化液钙磷比为1.67∶1时,在4 mg/mL P-PAMAM介导下,1周后脱矿牙釉质可形成致密平整的再矿化层,其晶体结构与天然HAP晶体类似,3周后牙釉质表面显微维氏硬度显著高于其余各实验组(P<0.000 1),恢复至健康牙釉质水平。缺乏P-PAMAM介导的再矿化层虽有一定厚度,但大量无序化生长的晶体使其表面形貌和显微维氏硬度存在缺陷。高钙磷比(2∶1)环境下,P-PAMAM诱导形成的再矿化层在3周后趋于无序化,限制牙釉质表面形貌和力学性能的恢复。低钙磷比(1∶1、0.5∶1)限制了P-PAMAM的诱导作用,再矿化层形成不良,再矿化晶体中碳羟基磷灰石和无定形磷酸钙含量升高。结论 P-PAMAM介导的再矿化在矿化液中钙磷比为1.67∶1时能达到良好的诱导脱矿牙釉质再矿化作用,升高或降低钙磷比均可能降低其疗效。

关键词: 磷酸化聚酰胺胺树状大分子, 人牙釉质, 再矿化, 羟基磷灰石

Abstract:

Objective To investigate the effects of remineralization solutions with different calcium-to-phosphate ratios on the properties of the remineralized layer induced by phosphorylated polyamidoamine (P-PAMAM) dendrimers, to determine appropriate P-PAMAM mass concentrations and calcium-to-phosphate ratio, and to provide insights for the construction of an intraoral remineralization system. Methods Phosphoryl groups were used to modify PAMAM in vitro. The modification results were confirmed by attenuated total reflectance-Fourier transform infrared spectroscopy and proton nuclear magnetic resonance. The mass concentration was screened by analyzing the ability of P-PAMAM to absorb hydroxyapatite(HAP) and its biocompatibility. Demineralized human enamel samples were prepared. The samples were divided into groups with remineralization conditions of 2∶1+P-P, 1.67∶1+P-P, 1.67∶1, 1∶1+P-P, and 0.5∶1+P-P. After 24 hours, 1 week, and 3 weeks of in vitro mineralization, the surface morphology was analyzed by scanning electron microscopy, the hardness of the remineralization layer was analyzed by micro Vickers hardness tester, and the crystal structure of the remineralization layer was analyzed by X-ray diffraction. Results Under a calcium-to-phosphate ratio of 1.67∶1 and the mediation of 4 mg/mL P-PAMAM, a dense and smooth remineralized layer formed on the demineralized enamel surface after 1 week, with a crystal structure similar to that of natural HAP. After 3 weeks, the surface micro Vickers hardness of the enamel was significantly higher than that of the other groups(P<0.000 1), and the enamel surface hardness could be restored to the level of healthy enamel. Although the remineralized layer formed in the absence of P-PAMAM reached a certain thickness, the disordered growth of numerous crystals resulted in defects in surface morphology and micro Vickers hardness. Under a high calcium-to-phosphate ratio (2∶1), the remineralization layer induced by P-PAMAM tended to be disordered in the later stage, which limited the recovery of the surface morphology and mechanical properties of the enamel. A low calcium-to-phosphate ratio (1∶1, 0.5∶1) limited the induction effect of P-PAMAM, resulting in poor formation of the remineralization layer and an increase in the content of carbonated hydroxyapatite and amorphous calcium phosphate in the remineralization crystals. Conclusion P-PAMAM-mediated remineralization achieves optimal efficacy when the calcium-to-phosphate ratio in the mineralization solution is 1.67∶1. Increasing or decreasing the ratio may reduce its effectiveness.

Key words: phosphorylated polyamidoamine dendrimers, human tooth enamel, remineralization, hydroxyapatite

中图分类号: