华西口腔医学杂志 ›› 2015, Vol. 33 ›› Issue (6): 565-569.doi: 10.7518/hxkq.2015.06.003

• 基础研究 • 上一篇    下一篇

含长链烷基季铵盐纳米抗菌无机填料的复合树脂对人牙菌斑生物膜的影响

吴峻岭1,张强2,孙睿男1,朱婷1,葛建华3,周传健3   

  1. 1.山东大学口腔医院口腔修复科;山东省口腔组织再生重点实验室,济南 250012;2.济南市口腔医院口腔种植诊疗中心,济南 250001;3.山东大学材料科学与工程学院高分子材料研究所,济南 250061
  • 收稿日期:2015-03-15 修回日期:2015-07-12 出版日期:2015-12-01 发布日期:2015-12-01
  • 通讯作者: 周传健,教授,博士,E-mail:zhouchuanjian@sdu.edu.cn
  • 作者简介:吴峻岭,副主任医师,博士,E-mail:doctorwujunling@ 163.com
  • 基金资助:
    山东省自然科学基金资助项目(ZR2014HM073)

Dental plaque microcosm biofilm behavior on a resin composite incorporated with nano-antibacterial inorganic filler containing long-chain alkyl quaternary ammonium salt

Wu Junling1, Zhang Qiang2, Sun Ruinan1, Zhu Ting1, Ge Jianhua3, Zhou Chuanjian3   

  1. 1. Dept. of Prosthodontics, School of Stomatology, Shandong University; Shandong Provincial Key Laboratory of Oral Tissue Regeneration, Jinan 250012, China; 2. Oral Implantology Center, Jinan Stomatological Hospital, Jinan 250001, China; 3. Research Institute of Polymer Materials, School of Materials Science and Engineering, Shandong University, Jinan 250061, China)
  • Received:2015-03-15 Revised:2015-07-12 Online:2015-12-01 Published:2015-12-01

摘要: 目的 合成含长链烷基季铵盐纳米抗菌无机填料的复合树脂,探讨其对人牙菌斑生物膜的影响。方法 制备含长链烷基季铵盐的纳米抗菌二氧化硅填料,经表面偶联处理后,分别以0%、5%、10%、15%及20%的质量分数添加到复合树脂中,以0%组作为对照组,用三点弯曲试验来检测其力学性能。建立人牙菌斑生物膜体外模型,通过菌落计数、乳酸代谢分析及活/死细菌染色等手段来评价复合树脂对人牙菌斑生物膜的影响。结果 与对照组相比,当复合树脂纳米抗菌无机填料的质量分数小于15%时,其力学性能没有明显改变(P>0.05);当纳米抗菌无机填料的质量分数达到5%及以上时,复合树脂对人牙菌斑生物膜的代谢产生明显的抑制作用,显示出良好的抗菌性能(P<0.05)。结论 当抗菌无机填料的质量分数达到5%时,复合树脂具有较强的抗菌防龋功能。

关键词: 季铵盐, 牙菌斑生物膜, 无机填料, 复合树脂, 抗菌性

Abstract: Objective To develop a resin composite incorporated with nano-antibacterial inorganic filler containing longchain alkyl quaternary ammonium salt, and to measure its effect on human dental plaque microcosm biofilm. Methods A novel nano-antibacterial inorganic filler containing long-chain alkyl quaternary ammonium salt was synthesized according to methods introduced in previous research. Samples of the novel nano-antibacterial inorganic fillers were modified by a coupling agent and then added into resin composite at 0%, 5%, 10%, 15% or 20% mass fractions; 0% composite was used as control. A flexural test was used to measure resin composite mechanical properties. Results showed that a dental plaque microcosm biofilm model with human saliva as inoculum was formed. Colony-forming unit (CFU) counts, lactic acid production, and live/dead assay of biofilm on the resin composite were calculated to test the effect of the resin composite on human dental plaque microcosm biofilm. Results The incorporation of nano-antibacterial inorganic fillers with as much as 15% concentration into the resin composite showed no adverse effect on the mechanical properties of the resin composite (P>0.05). Resin composite containing 5% or more nano-antibacterial inorganic fillers significantly inhibited the metabolic activity of dental plaque microcosm biofilm, suggesting its strong antibacterial potency (P<0.05). Conclusion This novel resin composite exhibited a strong antibacterial property upon the addition of up to 5% nano-antibacterial inorganic fillers, thereby leading to effective caries inhibition in dental application.

Key words: quaternary ammonium salt, dental plaque microcosm biofilm, inorganic filler, resin composite, antibacterial property

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