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新型含硅酸钙和焦磷酸钠的牙膏经体外实验可封闭牙本质小管。

In vitro dentine tubule occlusion by a novel toothpaste containing calcium silicate and sodium phosphate.

机构信息

Unilever Oral Care, 66 Lin Xin Road, Shanghai 200335, PR China.

Unilever Oral Care, Quarry Road East, Bebington, Wirral CH63 3JW, United Kingdom.

出版信息

J Dent. 2020;103S:100024. doi: 10.1016/j.jjodo.2020.100024. Epub 2020 Aug 6.

Abstract

OBJECTIVES

To investigate the deposition, formation of hydroxyapatite (HAP) and acid resistance of dentine surfaces following brushing with a toothpaste containing calcium silicate and sodium phosphate (CSSP) and fluoride in vitro.

METHODS

Human dentine specimens were brushed with a slurry of CSSP toothpaste followed by exposure to simulated oral fluid (SOF) in two in vitro studies, with a silica-based non-occluding toothpaste as control. The surface and tubule deposits were analysed after 14 cycles with scanning electron microscopy (SEM), energy dispersive x-ray spectroscopy (EDX), transmission electron microscopy (TEM) and selected area electron diffraction (SAED). In a third study, dentine specimens were additionally exposed to citric acid erosive challenges for 30, 300 or 600 s after 2, 6, 10 and 14 cycles of SOF and either the CSSP toothpaste or a positive control toothpaste containing calcium sodium phosphosilicate and fluoride. The level of tubule occlusion was evaluated using SEM.

RESULTS

The SEM analyses indicated complete coverage of the dentine surface following 14 cycles of brushing with CSSP toothpaste with no observable patent tubules, in contrast to the non-occluding control toothpaste. The TEM and SAED analyses confirmed the deposited material on the surface and within tubules was HAP. The deposited material from CSSP toothpaste was more acid resistant than the deposited material from the positive control toothpaste at all time points and acid exposure levels (p < 0.05).

CONCLUSIONS

The CSSP toothpaste fully occluded dentine tubules and formed the mineral HAP. The dentine deposition on and within dentine tubules was resilient to acid erosive challenges.

CLINICAL SIGNIFICANCE

A novel toothpaste containing CSSP can form HAP on dentine surfaces and within tubules. The potential of this technology is for a novel approach for the protection of dentine surfaces to acid challenges and the reduction of dentine hypersensitivity.

摘要

目的

研究含有硅酸钙和磷酸钠(CSSP)及氟化物的牙膏刷牙后牙本质表面的沉积、羟基磷灰石(HAP)形成及耐酸情况。

方法

在两项体外研究中,用人牙本质标本用 CSSP 牙膏糊剂刷牙,然后暴露于模拟口腔液(SOF)中,以含硅酸钠的非封闭牙膏作为对照。用扫描电子显微镜(SEM)、能谱(EDX)、透射电子显微镜(TEM)和选区电子衍射(SAED)分析 14 个循环后的表面和管内沉积物。在第三项研究中,牙本质标本在用 SOF 循环 2、6、10 和 14 次后,还分别用柠檬酸侵蚀 30、300 或 600 秒,然后再用 CSSP 牙膏或含硅酸钙、磷酸钠和氟化物的阳性对照牙膏进行处理。用 SEM 评估管腔闭塞程度。

结果

SEM 分析表明,在用 CSSP 牙膏刷牙 14 次后,牙本质表面完全被覆盖,没有观察到明显的开放管腔,与非封闭对照牙膏形成对比。TEM 和 SAED 分析证实,表面和管腔内沉积的物质是 HAP。在所有时间点和酸暴露水平下,CSSP 牙膏的沉积材料比阳性对照牙膏的沉积材料更耐酸(p<0.05)。

结论

CSSP 牙膏完全封闭牙本质小管并形成矿物 HAP。牙本质小管内和表面的牙本质沉积对酸侵蚀具有抵抗力。

临床意义

含有 CSSP 的新型牙膏可以在牙本质表面和小管内形成 HAP。该技术的潜在用途是为保护牙本质表面免受酸侵蚀和减少牙本质敏感提供一种新方法。

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