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一种治疗牙本质过敏的突破性疗法:含8%精氨酸和碳酸钙的牙科产品如何有效缓解牙齿敏感。

A breakthrough therapy for dentin hypersensitivity: how dental products containing 8% arginine and calcium carbonate work to deliver effective relief of sensitive teeth.

作者信息

Petrou Irene, Heu Rod, Stranick Mike, Lavender Stacey, Zaidel Lynette, Cummins Diane, Sullivan Richard J, Hsueh Carlin, Gimzewski James K

机构信息

Colgate-Palmolive Technology Center, Piscataway, NJ, USA.

出版信息

J Clin Dent. 2009;20(1):23-31.

Abstract

OBJECTIVE

These studies have utilized a range of state-of-the-art surface techniques to gain insight into the mechanism of action of a new technology for dentin hypersensitivity relief based upon arginine and calcium carbonate and, in particular, to address important questions regarding the nature and extent of dentin tubule occlusion.

METHODS

Confocal laser scanning microscopy (CLSM), scanning electron microscopy (SEM), and atomic force microscopy (AFM) have been used to assess tubule occlusion. Energy dispersive x-ray (EDX) and electron spectroscopy for chemical analysis (ESCA) have been used to identify the composition of the dentin plug. CLSM has also been used to compare the mechanism of action of the toothpaste and the desensitizing prophylaxis paste, to address whether both the arginine and the calcium carbonate components are essential to occlusion, to identify the location of the arginine within the occluded dentin, and to demonstrate resistance of the occlusion to acid challenge. Hydraulic conductance has been used to assess the effectiveness of the arginine-calcium carbonate technology in arresting dentin fluid movement, to evaluate the effects of pulpal pressure on the robustness of the occlusion, and to confirm the resistance of the occlusion to an acid challenge.

RESULTS

The CLSM, SEM, and AFM studies demonstrate that the arginine-calcium carbonate technology is highly effective in rapidly and completely occluding dentin tubules. The EDX and ESCA studies show that the dentin surface deposit and occluded tubule plug contain high levels of calcium and phosphate, as well as carbonate. CLSM has confirmed that the toothpaste and the desensitizing prophylaxis paste have the same mechanism of action, that the arginine and calcium carbonate components are both essential to the effectiveness of these products, and that the arginine becomes incorporated into the dentin plug. The hydraulic conductance studies demonstrate that the occlusion provided by the arginine-calcium carbonate technology results in highly significant reductions in dentin fluid flow, and that the tubule plug is resistant to normal pulpal pressure and acid challenge.

CONCLUSION

A breakthrough technology based upon arginine and calcium carbonate provides clinically proven benefits with respect to rapid and lasting relief of dentin hypersensitivity. It is unique in that two of its key components, arginine and calcium, are found naturally in saliva, and that the arginine and calcium carbonate work together to accelerate the natural mechanisms of occlusion to deposit a dentin-like mineral, containing calcium and phosphate, within the dentin tubules and in a protective layer on the dentin surface.

摘要

目的

这些研究运用了一系列先进的表面技术,以深入了解一种基于精氨酸和碳酸钙的缓解牙本质过敏新技术的作用机制,特别是解决有关牙本质小管封闭的性质和程度的重要问题。

方法

共聚焦激光扫描显微镜(CLSM)、扫描电子显微镜(SEM)和原子力显微镜(AFM)已被用于评估小管封闭情况。能量色散X射线(EDX)和化学分析电子能谱(ESCA)已被用于识别牙本质栓的成分。CLSM还被用于比较牙膏和脱敏预防膏的作用机制,以确定精氨酸和碳酸钙成分对封闭是否都必不可少,确定精氨酸在封闭牙本质中的位置,并证明封闭对酸侵蚀的抗性。液压传导率已被用于评估精氨酸 - 碳酸钙技术在阻止牙本质液流动方面的有效性,评估牙髓压力对封闭稳固性的影响,并确认封闭对酸侵蚀的抗性。

结果

CLSM、SEM和AFM研究表明,精氨酸 - 碳酸钙技术在快速且完全封闭牙本质小管方面非常有效。EDX和ESCA研究表明,牙本质表面沉积物和封闭的小管栓含有高水平的钙、磷以及碳酸盐。CLSM已证实牙膏和脱敏预防膏具有相同的作用机制,精氨酸和碳酸钙成分对这些产品的有效性都必不可少,并且精氨酸会掺入牙本质栓中。液压传导率研究表明,精氨酸 - 碳酸钙技术提供的封闭可使牙本质液流动显著减少,并且小管栓对正常牙髓压力和酸侵蚀具有抗性。

结论

基于精氨酸和碳酸钙的突破性技术在快速且持久缓解牙本质过敏方面提供了临床验证的益处。其独特之处在于其两个关键成分,精氨酸和钙,天然存在于唾液中,并且精氨酸和碳酸钙共同作用以加速自然封闭机制,在牙本质小管内和牙本质表面的保护层中沉积一种含钙和磷的类牙本质矿物质。

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