Biomedical Physics Research Unit, Department of Physics, School of Science, King Mongkut's Institute of Technology Ladkrabang, Bangkok, Thailand.
Department of Preventive and Restorative Sciences, School of Dental Medicine, University of Pennsylvania, Philadelphia, PA, USA.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2022;57(9):789-796. doi: 10.1080/10934529.2022.2115767. Epub 2022 Aug 29.
This study aimed to investigate the metal-binding effect of fluoride, contained in different commercial toothpaste gels; the study aimed to determine if the toothpastes contained excessive concentrations of fluoride, which result in white spot lesions. A spectrophotometric method that used spectrophotometric reagents, including zinc oxide nanoparticles and iron chloride, was used to determine fluoride distribution; the analysis was based on the selective attack of fluoride ions on metals. Fluoride concentrations between 0 and 1450 ppm were analyzed. Although the iron-fluoride complex was a more sensitive reagent, the zinc-fluoride complex could serve as a suitable alternative to it for fluoride analysis, partly because the method was less time consuming and more stable. The detection and quantification limits obtained from the linear calibration curves of the zinc-fluoride complexes, in deionized water, were 0.191:1 and 0.579:1 w/w ZnO, respectively. A model calibration curve was suggested to detect the unknown products of fluoride degradation. Dentists could use a fluoride treatment similar to the protocol used in this study, to prevent potential enamel demineralization, and exclude physical cavity preparation and restoration.
本研究旨在探讨不同商业牙膏凝胶中氟化物的金属结合效应;研究旨在确定牙膏中是否含有过量的氟化物,从而导致白斑病。本研究采用分光光度法,使用包括氧化锌纳米粒子和氯化铁在内的分光光度试剂来确定氟化物的分布;该分析基于氟离子对金属的选择性攻击。分析了 0 至 1450ppm 之间的氟化物浓度。虽然铁-氟化物复合物是一种更灵敏的试剂,但锌-氟化物复合物可以作为其替代物用于氟化物分析,部分原因是该方法耗时更少且更稳定。在去离子水中,锌-氟化物复合物的线性校准曲线得到的检测限和定量限分别为 0.191:1 和 0.579:1 w/w ZnO。建议建立一个模型校准曲线来检测氟化物降解的未知产物。牙医可以使用类似于本研究中使用的氟化物处理方案来预防潜在的牙釉质脱矿,并排除物理空腔制备和修复。