Interaction between Hexametaphosphate, Other Active Ingredients of Toothpastes, and Erosion-Abrasion in Enamel in vitro.

IF 2.9 2区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Caries Research Pub Date : 2023-01-01 Epub Date: 2023-09-19 DOI:10.1159/000534057
Benedikt Luka, Andrea Duerrschnabel, Sina Neumaier, Nadine Schlueter, Kirstin Vach
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Abstract

Sodium hexametaphosphate (HMP) as toothpaste additive is claimed to reduce erosive tooth wear and to stabilize stannous ions. However, little is known about the impact of concentration and its interactions with fluoride (F) or stannous+fluoride ions (F/Sn) on enamel erosion and erosion-abrasion. In a 10 day cyclic in vitro erosion-abrasion model, 320 flat human enamel specimens were divided into ten groups (n = 32 each) and daily subjected to six erosive challenges (0.5% citric acid, 2 min) and two toothpaste suspension applications (2 min, 1:3 F-free toothpaste:mineral-salt solution, 0.23% sodium gluconate). Half of specimens per group were additionally brushed twice/day (200 g, 15 s) during suspension immersion. Nine suspensions contained HMP (0.25%, 1.75%, 3.25%), either on its own or combined with F (373 ppm F-) or F/Sn (800 ppm Sn2+, 373 ppm F-). One suspension contained sodium gluconate only (NegContr). After 10 days, specimens' surfaces were analysed with profilometry, energy dispersive X-ray spectroscopy, and scanning electron microscopy. Tissue loss (µm, mean ± standard deviation) in NegContr was 10.9 ± 2.0 (erosion), 22.2 ± 1.6 (erosion-abrasion). Under erosive conditions, only 0.25% HMP in any combination and 1.75% HMP with F/Sn reduced loss significantly (-28% to -54%); 3.25% HMP without F and F/Sn increased loss significantly (+35%). With additional abrasion, no suspension reduced loss significantly compared to NegContr, instead, in groups without F and F/Sn or with 3.25% HMP loss was increased (+15% to +30%). Conclusively, at higher concentrations, HMP increased erosive tooth wear and seemed to reduce anti-erosive effects of fluoride and stannous ions.

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六偏磷酸盐与牙膏中其他活性成分的相互作用与体外牙釉质侵蚀磨损。
六偏磷酸钠(HMP)作为牙膏添加剂被认为可以减少侵蚀性牙齿磨损并稳定亚锡离子。然而,人们对浓度及其与氟化物(F)或亚锡+氟离子(F/Sn)的相互作用对牙釉质侵蚀和侵蚀磨损的影响知之甚少。在为期10天的循环体外侵蚀磨损模型中,320个扁平的人类牙釉质样本被分为10组(每组n=32),每天接受6次侵蚀挑战(0.5%柠檬酸,2分钟)和2次牙膏悬浮液应用(2分钟,1:3无氟牙膏:矿物盐溶液,0.23%葡萄糖酸钠)。在悬浮液浸泡过程中,每组一半的样本每天额外刷两次(200克,15秒)。九种悬浮液含有HMP(0.25%、1.75%、3.25%),单独或与F(373ppm F-)或F/Sn(800ppm Sn2+、373ppm F-)组合。一种悬浮液仅含有葡萄糖酸钠(NegContr)。十天后,用轮廓术、能量色散x射线光谱法和扫描电子显微镜对样品表面进行分析。NegContr的组织损失(µm,平均值±标准差)为10.9±2.0(侵蚀),22.2±1.6(侵蚀磨损)。在侵蚀条件下,任何组合中只有0.25%的HMP和含有F/Sn的1.75%的HMP显著降低了损失(-28%-54%);3.25%HMP不含F和F/Sn显著增加了损失(+35%)。与NegContr相比,在额外磨损的情况下,没有悬浮液显著减少损失,相反,在没有F和F/Sn或有3.25%HMP损失的组中,HMP损失增加(+15%至+30%)。总之,高浓度HMP增加了牙齿的侵蚀性磨损,似乎降低了氟和亚锡离子的抗侵蚀作用。
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来源期刊
Caries Research
Caries Research 医学-牙科与口腔外科
CiteScore
6.30
自引率
7.10%
发文量
34
审稿时长
6-12 weeks
期刊介绍: ''Caries Research'' publishes epidemiological, clinical and laboratory studies in dental caries, erosion and related dental diseases. Some studies build on the considerable advances already made in caries prevention, e.g. through fluoride application. Some aim to improve understanding of the increasingly important problem of dental erosion and the associated tooth wear process. Others monitor the changing pattern of caries in different populations, explore improved methods of diagnosis or evaluate methods of prevention or treatment. The broad coverage of current research has given the journal an international reputation as an indispensable source for both basic scientists and clinicians engaged in understanding, investigating and preventing dental disease.
期刊最新文献
Selective outcome reporting bias in randomized controlled trials on dental caries in children and adolescents: A meta-research study. Is poor self-rated health associated with higher caries experience in adults? The HUNT4 Oral Health Study. Concentration and Stability of Fluoride Chemically Available in Charcoal-Containing Toothpastes. Dentists' Treatment Decisions Concerning Restorations in Adult Patients in North Norway: A Cross-Sectional Tromsø 7 Study. Dietary Carbohydrates Modulate Streptococcus mutans Adherence and Bacterial Proteome.
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