Lee Bor-Shiunn, Chou Po-Hung, Chen Shu-Yu, Liao Hua-Yang, Chang Che-Chen
Graduate Institute of Oral Biology, School of Dentistry, National Taiwan University and National Taiwan University Hospital, No.1, Changde St., Jhongjheng District, Taipei 100, Taiwan.
Department of Chemistry, National Taiwan University, No. 1, Sec. 4, Roosevelt Road, Taipei 10617, Taiwan.
Sci Rep. 2015 Aug 21;5:13352. doi: 10.1038/srep13352.
There is no topically applicable low concentration fluoride delivery device available for caries prevention. This study was aimed to assess the use of a low concentration (1450 ppm) fluoride strip as an effective fluoride delivery system against enamel demineralization. The enamel surface composition and calcium-deficient hydroxyapatite or toothpaste treatments were investigated using X-ray photoelectron spectroscopy. In vitro enamel demineralization was assayed using a pH cycling model and the dissolution of calcium ions from the treated specimens was quantified using ion chromatography. After 24-hr fluoride-strip treatment, the enamel was covered with a CaF2 layer which showed a granular morphology of 1 μm in size. Below the CaF2 layer was a region of mixed fluorapatite and CaF2. Fluoride infiltrated extensively in enamel to produce highly fluorinated fluorohydroxyapatite. In comparison, low-fluoride-level fluorinated fluorohydroxyapatite was formed on the enamel specimen exposed to toothpaste. The treatments with the fluoride strip as short as 1 hr significantly inhibited enamel demineralization. The fluoride strip was effective for topical fluoride delivery and inhibited in vitro demineralization of enamel by forming CaF2 and fluoride-containing apatites at the enamel surface. It exhibited the potential as an effective fluoride delivery device for general use in prevention of caries.
目前尚无可用于预防龋齿的局部适用低浓度氟化物输送装置。本研究旨在评估低浓度(1450 ppm)氟化物条带作为一种有效的氟化物输送系统对牙釉质脱矿的作用。使用X射线光电子能谱研究了牙釉质表面成分以及缺钙羟基磷灰石或牙膏处理情况。使用pH循环模型检测体外牙釉质脱矿情况,并使用离子色谱法定量测定处理后标本中钙离子的溶解情况。经过24小时的氟化物条带处理后,牙釉质表面覆盖有一层CaF2层,其呈现出尺寸为1μm的颗粒形态。在CaF2层下方是氟磷灰石和CaF2的混合区域。氟化物大量渗入牙釉质中,形成高度氟化的氟羟基磷灰石。相比之下,暴露于牙膏的牙釉质标本上形成的是低氟水平的氟化氟羟基磷灰石。氟化物条带处理仅1小时就能显著抑制牙釉质脱矿。氟化物条带在局部输送氟化物方面有效,通过在牙釉质表面形成CaF2和含氟磷灰石来抑制牙釉质的体外脱矿。它展现出作为一种有效氟化物输送装置用于预防龋齿的潜力。