Epple Matthias, Meyer Frederic, Enax Joachim
Inorganic Chemistry and Center for Nanointegration Duisburg-Essen (CeNIDE), University of Duisburg-Essen, Universitaetsstr. 5-7, 45117 Essen, Germany.
Dr. Kurt Wolff GmbH & Co. KG, Research Department, Johanneswerkstr. 34-36, 33611 Bielefeld, Germany.
Dent J (Basel). 2019 Aug 1;7(3):79. doi: 10.3390/dj7030079.
Besides prevention of caries and periodontitis, an increasing number of oral care products focus on teeth whitening. The aim of this review is to summarize and discuss frequently used whitening agents and their efficacy from a chemical viewpoint. Therefore, a comprehensive literature survey on teeth whitening agents and products was conducted. The current whitening methods are analyzed and discussed from a chemist's viewpoint. Frequently used whitening agents are abrasives (mechanical removal of stains), antiredeposition agents (prevention of deposition of chromophores), colorants (intended to lead to a white color), proteases (degradation of proteins), peroxides (oxidation of organic chromophores), and surfactants (removal of hydrophobic compounds from tooth surface). In-office bleaching using peroxides is effective, but side effects like tooth sensitivity or a damage of the natural organic matrix of enamel and dentin may occur. The applicability of abrasives in teeth whitening is limited due to potential tooth wear, especially when toothpastes with high RDA values are used. The effect of other whitening agents in vivo is often unclear because of a shortage of placebo-controlled clinical trials.
除了预防龋齿和牙周炎外,越来越多的口腔护理产品专注于牙齿美白。本综述的目的是从化学角度总结和讨论常用的美白剂及其功效。因此,对牙齿美白剂和产品进行了全面的文献调查。从化学家的角度分析和讨论了当前的美白方法。常用的美白剂有磨料(机械去除污渍)、抗再沉积剂(防止发色团沉积)、着色剂(旨在呈现白色)、蛋白酶(降解蛋白质)、过氧化物(氧化有机发色团)和表面活性剂(从牙齿表面去除疏水化合物)。使用过氧化物进行诊室美白是有效的,但可能会出现牙齿敏感或牙釉质和牙本质天然有机基质受损等副作用。由于可能导致牙齿磨损,磨料在牙齿美白中的适用性有限,尤其是使用高RDA值牙膏时。由于缺乏安慰剂对照临床试验,其他美白剂在体内的效果往往不明确。