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Agarose Hydrogel Biomimetic Mineralization Model for the Regeneration of Enamel Prismlike Tissue

机译:搪瓷棱镜样组织再生的琼脂糖水凝胶仿生矿化模型

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Laboratory studies have demonstrated that enamel-like mineralized tissue can be regenerated and used to repair enamel loss. This has implications for the management of noncarious tooth loss resulting from dental erosion, attrition, and abrasion. In this study, we designed a hydrogel biomimetic mineralization model for the regeneration of enamel-like mineralized tissue with a prismatic structure. The mineralized tissue, which was generated by the model on an etched enamel surface in the presence of 500 ppm fluoride, was analyzed with scanning electron microscopy, X-ray diffraction, Fourier transform infrared spectroscopy, and the nanoindentation hardness test. The generated tissue had enamel prismlike layers containing well-defined hexagonal hydroxyapatite crystals. The modulus of elasticity and the nanohardness of the regenerated enamel prismlike tissue were similar to those of natural enamel. Thus, the regeneration of enamel using this hydrogel biomimetic mineralization model is a promising approach for the management of enamel loss.
机译:实验室研究表明,牙釉质样矿化组织可以再生并用于修复牙釉质流失。这对处理因牙齿侵蚀,磨损和磨损而引起的非龋齿损失具有影响。在这项研究中,我们设计了一种水凝胶仿生矿化模型,用于再生具有棱柱形结构的牙釉质矿化组织。通过扫描电子显微镜,X射线衍射,傅立叶变换红外光谱和纳米压痕硬度测试,分析了模型在500 ppm氟化物存在下在搪瓷蚀刻表面上生成的矿化组织。产生的组织具有包含明确定义的六边形羟基磷灰石晶体的搪瓷棱柱状层。再生牙釉质棱柱状组织的弹性模量和纳米硬度与天然牙釉质相似。因此,使用这种水凝胶仿生矿化模型再生牙釉质是管理牙釉质流失的一种有前途的方法。

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