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不同牙膏对树脂改性玻璃离子水门汀和复合树脂修复体纳米力学性能及化学成分的影响。

Effects of Different Toothpastes on the Nanomechanical Properties and Chemical Composition of Resin-Modified Glass Ionomer Cement and Composite Resin Restorations.

作者信息

Moda Mariana Dias, Dos Santos Paulo Henrique, Pini Nubia Inocencya Pavesi, Furini Leonardo Negri, Briso André Luiz Fraga, Assmann André, Fagundes Ticiane Cestari

机构信息

Department of Preventive and Restorative Dentistry, Araçatuba School of Dentistry, São Paulo State University (UNESP), Araçatuba 16015-050, SP, Brazil.

Faculty of Dentistry, Dental Research Institute-Restorative Dentistry, University of Toronto, Toronto, ON M5S 1A1, Canada.

出版信息

Dent J (Basel). 2023 Jul 17;11(7):173. doi: 10.3390/dj11070173.

Abstract

PURPOSE

This study evaluates the effects of different toothpastes on the nanohardness and chemical compositions of restorative materials and dental surfaces.

METHODS

Bovine enamel ( = 72) and dentin ( = 72) blocks were obtained and restored using RMGIC ( = 36) or CR ( = 36) to create the following surfaces: dentin adjacent to RMGIC (DRMGIC), enamel adjacent to RMGIC (ERMGIC), dentin adjacent to CR (DCR), and enamel adjacent to CR (ECR). After restoration, one hemiface of each specimen was coated with an acid-resistant varnish to facilitate the creation of control (C) and eroded (E) sides; the latter were achieved by erosion-abrasion cycles as follows: erosion with 1% citric acid: 5 days, four times for 2 min each day; 1% citric acid/abrasion, two times for 15 s, followed by immersion in a toothpaste slurry for 2 min. Toothpastes without fluoride (WF; = 12), with sodium fluoride (NaF; = 12), and with stannous fluoride (SnF; = 12) were used for RMGIC or CR. The specimens were analyzed for nanohardness (H), and chemical composition using energy-dispersive X-ray spectroscopy and Raman microscopy. The data were statistically analyzed using two-way repeated measures ANOVA and Tukey's test (α = 0.05).

RESULTS

Lower H values were obtained with NaF for DRMGIC-C, with a statistically significant difference from the H value obtained with WF ( < 0.05). The calcium and phosphorus concentrations in DCR-E were significantly lower with WF than with the other types of toothpaste ( < 0.05). Fluoride-containing toothpastes are capable of preserving the main chemical components of the dentin adjacent to the restorative materials under erosive-abrasive conditions.

摘要

目的

本研究评估不同牙膏对修复材料和牙齿表面纳米硬度及化学成分的影响。

方法

获取牛牙釉质(n = 72)和牙本质(n = 72)块,使用树脂改性玻璃离子水门汀(RMGIC,n = 36)或复合体树脂(CR,n = 36)进行修复,以创建以下表面:与RMGIC相邻的牙本质(DRMGIC)、与RMGIC相邻的牙釉质(ERMGIC)、与CR相邻的牙本质(DCR)以及与CR相邻的牙釉质(ECR)。修复后,每个标本的半面涂覆耐酸清漆,以方便创建对照(C)面和侵蚀(E)面;后者通过以下侵蚀磨损循环实现:用1%柠檬酸侵蚀:5天,每天4次,每次2分钟;1%柠檬酸/磨损,2次,每次15秒,然后浸入牙膏浆液中2分钟。不含氟牙膏(WF,n = 12)、含氟化钠牙膏(NaF,n = 12)和含氟化亚锡牙膏(SnF,n = 12)用于RMGIC或CR。使用能量色散X射线光谱和拉曼显微镜对标本进行纳米硬度(H)和化学成分分析。数据采用双向重复测量方差分析和Tukey检验进行统计学分析(α = 0.05)。

结果

NaF组DRMGIC-C的H值较低,与WF组获得的H值有统计学显著差异(P < 0.05)。WF组DCR-E中的钙和磷浓度显著低于其他类型牙膏(P < 0.05)。含氟牙膏能够在侵蚀磨损条件下保存修复材料相邻牙本质的主要化学成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f47/10378367/dad2b5ffc53f/dentistry-11-00173-g001.jpg

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