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一种来源于statherin的肽促进人工釉质龋的羟基磷灰石结晶和再矿化。

A statherin-derived peptide promotes hydroxyapatite crystallization and remineralization of artificial enamel caries.

作者信息

Wang Kun, Wang Xiuqing, Li Haoran, Zheng Sainan, Ren Qian, Wang Yufei, Niu Yumei, Li Wei, Zhou Xuedong, Zhang Linglin

机构信息

State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, Dept. of Cariology and Endodontics, West China Hospital of Stomatology, Sichuan University Chengdu Sichuan China

出版信息

RSC Adv. 2018 Jan 5;8(3):1647-1655. doi: 10.1039/c7ra12032j. eCollection 2018 Jan 2.

Abstract

remineralization of hydroxyapatite on a human tooth enamel surface induced by anti-caries bioactive components is an alternative restorative strategy against dental caries. In this study, a novel biomimetic peptide DE-11, inspired by the salivary phosphoprotein statherin, was developed, and it showed beneficial potentials for the restoration of demineralized tooth enamel . The peptide DE-11 contained the initial six-peptide sequence of N-terminus of statherin extended by a mineralization hydrophilic tail composed of consecutive acidic amino acids capable of adsorbing calcium and phosphate ions. A strong adsorption capacity of DE-11 to hydroxyapatite was confirmed through Langmuir adsorption isotherm experiment and confocal laser scanning microscopy. Then, the nucleation and crystallization of hydroxyapatite due to DE-11 was characterized by scanning and transmission electron microscopy and selected-area electron diffraction. Moreover, the ability of DE-11 to promote the remineralization of initial enamel caries lesions was further evaluated. Initial lesions were created in bovine enamel blocks, which were then exposed to the peptide solution and finally immersed in artificial saliva. After 7 days, a higher percentage of surface microhardness recovery, a lower mineral loss, a shallower lesion depth, and a higher mineral content were found on the surface of the lesion body in the DE-11 group as compared to that in the negative group using surface microhardness testing, polarized light microscopy, and transverse microradiography; this indicated that DE-11 could induce remineralization of hydroxyapatite on the demineralized enamel surface. Overall, these findings suggest that DE-11 is highly promising as a restorative biomaterial for enamel remineralization in the anti-caries applications.

摘要

抗龋生物活性成分诱导人牙釉质表面羟基磷灰石再矿化是一种治疗龋齿的替代修复策略。在本研究中,受唾液磷蛋白statherin启发,开发了一种新型仿生肽DE-11,它在修复脱矿牙釉质方面显示出有益的潜力。肽DE-11包含statherin N端的初始六肽序列,并由能够吸附钙和磷酸根离子的连续酸性氨基酸组成的矿化亲水尾延伸。通过Langmuir吸附等温线实验和共聚焦激光扫描显微镜证实了DE-11对羟基磷灰石具有很强的吸附能力。然后,通过扫描和透射电子显微镜以及选区电子衍射对DE-11诱导的羟基磷灰石的成核和结晶进行了表征。此外,进一步评估了DE-11促进初始釉质龋损再矿化的能力。在牛牙釉质块中形成初始龋损,然后将其暴露于肽溶液中,最后浸入人工唾液中。7天后,与阴性组相比,使用表面显微硬度测试、偏光显微镜和横向显微放射照相法发现,DE-11组病变体表面的表面显微硬度恢复百分比更高、矿物质损失更低、病变深度更浅且矿物质含量更高;这表明DE-11可以诱导脱矿釉质表面的羟基磷灰石再矿化。总体而言,这些发现表明,DE-11作为一种用于抗龋应用中釉质再矿化的修复性生物材料具有很大的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f8a/9077281/9cb551306e9e/c7ra12032j-f1.jpg

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