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酪蛋白磷酸肽-无定形磷酸钙改性玻璃离子水门汀对人工“龋损”牙本质的剪切粘结强度及再矿化效果

Shear Bond Strength and Remineralisation Effect of a Casein Phosphopeptide-Amorphous Calcium Phosphate-Modified Glass Ionomer Cement on Artificial "Caries-Affected" Dentine.

作者信息

Zhao Irene Shuping, Mei May Lei, Zhou Zhuo Long, Burrow Michael Francis, Lo Edward Chin-Man, Chu Chun-Hung

机构信息

Faculty of Dentistry, The University of Hong Kong, Hong Kong, China.

Department of Mechanical Engineering, The University of Hong Kong, Hong Kong, China.

出版信息

Int J Mol Sci. 2017 Aug 7;18(8):1723. doi: 10.3390/ijms18081723.

Abstract

This study investigated the effect of casein phosphopeptide-amorphous calcium phosphate (CPP-ACP)-modified glass ionomer cement (GIC) on shear bond strength (SBS) and remineralisation of artificial "caries-affected" dentine. Human dentine slices were demineralised and allocated to three groups: group 1, conventional GIC; group 2, CPP-ACP-modified GIC; and group 3, resin-modified GIC. The SBS was measured using a universal testing machine ( = 16 per group). Remaining samples ( = 8 per group) were subjected to pH-cycling for 28 days. After pH-cycling, lesion depth and micro-mechanical properties at the sample-bonding interface were investigated using micro-computed tomography (micro-CT) and nano-indentation, respectively. The SBS for groups 1 to 3 were 4.6 ± 1.5 MPa, 4.2 ± 1.1 MPa, and 5.9 ± 1.9 MPa, respectively ( = 0.007; group 1, group 2 < group 3). Lesion depths determined by micro-CT for groups 1 to 3 were 186 ± 8 µm, 149 ± 14 µm, and 178 ± 8 µm, respectively ( < 0.001; group 2 < group 1, group 3). The mean (±SD, standard deviation) nano-hardness values for groups 1 to 3 were 0.85 ± 0.22 GPa, 1.14 ± 0.21 GPa, and 0.81 ± 0.09 GPa, respectively ( = 0.003; group 1, group 3 < group 2). The mean (±SD) elastic moduli for groups 1 to 3 were 1.70 ± 0.33 GPa, 2.35 ± 0.44 GPa, and 1.59 ± 0.13 GPa, respectively ( < 0.001; group 1, group 3 < group 2). The results suggest that the incorporation of CPP-ACP into GIC does not adversely affect the adhesion to artificial caries-affected dentine. Furthermore, CPP-ACP-modified GIC is superior to conventional GIC in promoting dentine remineralisation.

摘要

本研究调查了酪蛋白磷酸肽 - 无定形磷酸钙(CPP - ACP)改性玻璃离子水门汀(GIC)对人工“龋损”牙本质的剪切粘结强度(SBS)和再矿化的影响。将人牙本质切片脱矿后分为三组:第1组,传统GIC;第2组,CPP - ACP改性GIC;第3组,树脂改性GIC。使用万能试验机测量SBS(每组n = 16)。其余样本(每组n = 8)进行28天的pH循环。pH循环后,分别使用微型计算机断层扫描(micro - CT)和纳米压痕技术研究样本粘结界面处的病变深度和微观力学性能。第1至3组的SBS分别为4.6±1.5 MPa、4.2±1.1 MPa和5.9±1.9 MPa(P = 0.007;第1组、第2组 < 第3组)。micro - CT测定的第1至3组的病变深度分别为186±8 µm、149±14 µm和178±8 µm(P < 0.001;第2组 < 第1组、第3组)。第1至3组的平均(±标准差)纳米硬度值分别为0.85±0.22 GPa、1.14±0.21 GPa和0.81±0.09 GPa(P = 0.003;第1组、第3组 < 第2组)。第1至3组的平均(±标准差)弹性模量分别为1.70±0.33 GPa、2.35±0.44 GPa和1.59±0.13 GPa(P < 0.001;第1组、第3组 < 第2组)。结果表明,在GIC中加入CPP - ACP不会对其与人工龋损牙本质的粘结产生不利影响。此外,CPP - ACP改性GIC在促进牙本质再矿化方面优于传统GIC。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ee5/5578113/4fb1807c7856/ijms-18-01723-g001.jpg

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