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釉质蛋白对酸蚀的影响。

The effect of enamel proteins on erosion.

作者信息

Baumann T, Carvalho T S, Lussi A

机构信息

Department of Preventive, Restorative and Pediatric Dentistry, University of Bern, Freiburgstrasse 7, CH-3010, Bern, Switzerland.

出版信息

Sci Rep. 2015 Oct 15;5:15194. doi: 10.1038/srep15194.

Abstract

Enamel proteins form a scaffold for growing hydroxyapatite crystals during enamel formation. They are then almost completely degraded during enamel maturation, resulting in a protein content of only 1% (w/v) in mature enamel. Nevertheless, this small amount of remaining proteins has important effects on the mechanical and structural properties of enamel and on the electrostatic properties of its surface. To analyze how enamel proteins affect tooth erosion, human enamel specimens were deproteinated. Surface microhardness (SMH), surface reflection intensity (SRI) and calcium release of both deproteinated and control specimens were monitored while continuously eroding them. The deproteination itself already reduced the initial SMH and SRI of the enamel significantly (p < 0.001 and p < 0.01). During the course of erosion, the progression of all three evaluated parameters differed significantly between the two groups (p < 0.001 for each). The deproteinated enamel lost its SMH and SRI faster, and released more calcium than the control group, but these differences were only significant at later stages of erosion, where not only surface softening but surface loss can be observed. We conclude that enamel proteins have a significant effect on erosion, protecting the enamel and slowing down the progression of erosion when irreversible surface loss starts to occur.

摘要

在牙釉质形成过程中,牙釉质蛋白为正在生长的羟基磷灰石晶体形成支架。然后,它们在牙釉质成熟过程中几乎完全降解,导致成熟牙釉质中的蛋白质含量仅为1%(w/v)。然而,这少量残留的蛋白质对牙釉质的机械和结构性能及其表面的静电性能具有重要影响。为了分析牙釉质蛋白如何影响牙齿侵蚀,对人类牙釉质标本进行了脱蛋白处理。在持续侵蚀脱蛋白标本和对照标本的同时,监测它们的表面显微硬度(SMH)、表面反射强度(SRI)和钙释放情况。脱蛋白处理本身就显著降低了牙釉质的初始SMH和SRI(p < 0.001和p < 0.01)。在侵蚀过程中,两组之间所有三个评估参数的变化情况均存在显著差异(每组p < 0.001)。脱蛋白的牙釉质比对照组更快地失去其SMH和SRI,并且释放出更多的钙,但这些差异仅在侵蚀后期才显著,此时不仅可以观察到表面软化,还能观察到表面损失。我们得出结论,牙釉质蛋白对侵蚀有显著影响,当不可逆的表面损失开始出现时,它能保护牙釉质并减缓侵蚀进程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40bc/4606565/c75c92a66913/srep15194-f1.jpg

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