...
首页> 外文期刊>Nuclear instruments and methods in physics research >Fluorine uptake into the human enamel surface from fluoride-containing sealing materials during cariogenic pH cycling
【24h】

Fluorine uptake into the human enamel surface from fluoride-containing sealing materials during cariogenic pH cycling

机译:致癌pH循环过程中,含氟密封材料将氟吸收到人牙釉质表面

获取原文
获取原文并翻译 | 示例

摘要

To prevent the formation of caries and reduce dentin hypersensitivity, sealing materials, either with or without fluoride, are generally applied on the tooth in clinical practice. Application of fluoride-free sealing materials results in the formation of an acid-resistant layer on the tooth surface. On the other hand, fluoride-containing sealing materials might not only form an acid-resistant layer but could possibly further provide fluoride to enhance remineralization and reduce demineralization. In this study, the dem-ineralization prevention ability and fluorine uptake rate in human enamel of fluoride-containing sealing materials ["MS coats F" (MSF)] and fluoride-free sealing materials ("hybrid coats 2" [HI]) were evaluated using an automatic pH cycling system. Each material was applied to the original tooth surface, the cut surfaces were covered with sticky wax, and the automatic pH-cycling system simulated daily acid changes (pH 6.8-4.5) occurring in the oral cavity for 4 weeks. Caries progression was analyzed using transverse microradiography (TMR) taken pre and post the 4 weeks of pH cycling. The fluorine and calcium distributions in the carious lesion in each specimen were evaluated using the proton-induced gamma emission (PIGE) and proton-induced X-ray (PIXE) techniques, respectively. TMR analysis showed that both MSF and HI had a caries-preventing effect after 4 weeks of pH cycling. PIGE/PIXE analysis demonstrated that only MSF resulted in fluoride uptake in the enamel surface. Therefore, MSF can help to form an acid-resistant layer and provide fluoride to the enamel surface. The presence of fluoride on the enamel surface suggested that MSF could prevent demineralization, even if the acid-resistant layer was removed, in clinical settings. The data obtained using the PIGE and PIXE techniques are useful for understanding the benefits of the use of a fluoride-containing sealing material for preventing caries.
机译:为了防止龋齿的形成并降低牙本质过敏,在临床实践中通常在牙齿上施加有或没有氟化物的密封材料。无氟密封材料的应用导致在牙齿表面形成耐酸层。另一方面,含氟化物的密封材料不仅可以形成耐酸层,而且可以进一步提供氟化物以增强再矿化并减少去矿质。在这项研究中,含氟密封材料[“ MS涂层F”(MSF)]和无氟密封材料(“混合涂层2” [HI])在人牙釉质中的防脱矿质能力和氟吸收率分别为使用自动pH循环系统进行评估。将每种材料应用到原始牙齿表面,用粘性蜡覆盖切割的表面,并且自动pH循环系统模拟了口腔中每天发生的酸变化(pH 6.8-4.5),持续4周。在pH循环的4周之前和之后使用横向显微X射线照相术(TMR)分析龋病的进展。分别使用质子诱导的伽马发射(PIGE)和质子诱导的X射线(PIXE)技术评估每个标本的龋损中的氟和钙分布。 TMR分析表明,pH循环4周后,MSF和HI均具有防龋效果。 PIGE / PIXE分析表明只有MSF会导致搪瓷表面吸收氟化物。因此,MSF可以帮助形成耐酸层并向搪瓷表面提供氟化物。牙釉质表面氟化物的存在表明,即使在临床环境中,即使去除了耐酸层,MSF也可以防止脱矿质。使用PIGE和PIXE技术获得的数据有助于理解使用含氟密封材料预防龋齿的好处。

著录项

  • 来源
  • 作者单位

    Department of Restorative Dentistry, Division of Oral Health Science, Hokkaido University Graduate School of Dental Medicine, Kita 13, Nishi 7, Kita-ku, Sapporo, Hokkaido 060-8586, Japan;

    Department of Restorative Dentistry, Graduate School of Dental Medicine Hokkaido University, Japan;

    Graduate School of Dentistry, Osaka University, Japan;

    Department of Restorative Dentistry, Graduate School of Dental Medicine Hokkaido University, Japan;

    Takasaki Advanced Radiation Research Institute, JAEA, Japan;

    Takasaki Advanced Radiation Research Institute, JAEA, Japan;

    Department of Restorative Dentistry, Graduate School of Dental Medicine Hokkaido University, Japan;

    Department of Restorative Dentistry, Graduate School of Dental Medicine Hokkaido University, Japan;

    Department of Restorative Dentistry, Graduate School of Dental Medicine Hokkaido University, Japan;

    Department of Restorative Dentistry, Graduate School of Dental Medicine Hokkaido University, Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fluoride uptake; Fluoride containing materials; Microbeam; PIGE/PIXE system;

    机译:氟化物吸收;含氟物质;微束;PIGE / PIXE系统;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号