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含 CPP-ACP 复合体氟涂料作用下人牙釉质结构和力学性能变化的近表面研究。

Near-Surface Studies of the Changes to the Structure and Mechanical Properties of Human Enamel under the Action of Fluoride Varnish Containing CPP-ACP Compound.

机构信息

Department of Biophysics, Faculty of Environmental Biology, University of Life Sciences in Lublin, 20-950 Lublin, Poland.

Chair and Department of Paediatric Dentistry, Medical University of Lublin, 20-059 Lublin, Poland.

出版信息

Biomolecules. 2020 May 14;10(5):765. doi: 10.3390/biom10050765.

Abstract

Changes to the features of the enamel surface submitted to induced demineralisation and subsequent remineralisation were studied. The in vitro examination was conducted on polished slices of human molar teeth, divided in four groups: the untreated control ( = 20), challenged by a demineralisation with orthophosphoric acid (HPO) ( = 20), and challenged by a demineralisation following remineralisation with fluoride (F) varnish containing casein phosphopeptides (CPP) and amorphous calcium phosphate (ACP) compounds ( = 20). The specimens' enamel surfaces were subjected to analysis of structure, molecular arrangement, mechanical features, chemical composition, and crystalline organization of apatite crystals. Specimens treated with acid showed a significant decrease in crystallinity, calcium, and phosphorus levels as well as mechanical parameters, with an increase in enamel surface roughness and degree of carbonates when compared to the control group. Treatment with fluoride CPP-ACP varnish provided great improvements in enamel arrangement, as the destroyed hydroxyapatite structure was largely rebuilt and the resulting enamel surface was characterised by greater regularity, higher molecular and structural organisation, and a smoother surface compared to the demineralised one. In conclusion, this in vitro study showed that fluoride CPP-ACP varnish, by improving enamel hardness and initiating the deposition of a new crystal layer, can be an effective remineralising agent for the treatment of damaged enamel.

摘要

研究了经诱导脱矿和随后再矿化处理后的牙釉质表面特征的变化。体外检查在人类磨牙的抛光切片上进行,将样本分为四组:未经处理的对照组(=20)、经磷酸(HPO)脱矿处理组(=20)、经含酪蛋白磷酸肽(CPP)和无定形磷酸钙(ACP)化合物的氟化物(F)涂料再矿化处理组(=20)。对样本的牙釉质表面进行了结构、分子排列、机械性能、化学成分和磷灰石晶体结晶组织的分析。与对照组相比,经酸处理的标本显示出结晶度、钙和磷水平以及机械参数显著降低,牙釉质表面粗糙度和碳酸盐程度增加。使用氟化物 CPP-ACP 涂料处理可极大地改善牙釉质排列,因为破坏的羟基磷灰石结构得到了很大程度的重建,所得牙釉质表面比脱矿化表面更规则、具有更高的分子和结构组织,并且更光滑。总之,这项体外研究表明,氟化物 CPP-ACP 涂料通过提高牙釉质硬度并引发新的晶体层沉积,可以成为治疗受损牙釉质的有效再矿化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d67/7277937/7b40d1f682de/biomolecules-10-00765-g001.jpg

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