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Non-Collagenous Dentin Protein Binding Sites Control Mineral Formation during the Biomineralisation Process in Radicular Dentin

机译:非胶原牙本质蛋白结合位点控制根部牙本质生物矿化过程中的矿物质形成

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摘要

The biomineralisation of radicular dentin involves complex molecular signalling. Providing evidence of protein binding sites for calcium ions and mineral precipitation is essential for a better understanding of the remineralisation process. This study aimed to evaluate the functional relationship of metalloproteinases (MMPs) and non-collagenous proteins (NCPs) with mineral initiation and maturation during the biomineralisation of radicular dentin. A standardized demineralisation procedure was performed to radicular dentin slices. Samples were remineralised in a PBS-bioactive material system for different periods of time. Assessments of ion exchange, Raman analysis, and energy dispersive X-ray analysis (EDAX) with a scanning electron microscope (SEM) were used to evaluate the remineralisation process. Immunohistochemistry and zymography were performed to analyse NCPs and MMPs expression. SEM evaluation showed that the mineral nucleation and growth occurs, exclusively, on the demineralised radicular dentin surface. Raman analysis of remineralised dentin showed intense peaks at 955 and 1063 cm , which can be attributed to carbonate apatite formation. Immunohistochemistry of demineralised samples revealed the presence of DMP1-CT, mainly in intratubular dentin, whereas DSPP in intratubular and intertubular dentin. DMP1-CT and DSPP binding sites control carbonate apatite nucleation and maturation guiding the remineralisation of radicular dentin.
机译:放射性牙本质的生物矿化涉及复杂的分子信号传导。提供钙离子和矿物质沉淀的蛋白质结合位点的证据对于更好地了解再矿化过程至关重要。这项研究的目的是评估放射性牙本质的生物矿化过程中金属蛋白酶(MMP)和非胶原蛋白(NCP)与矿物质引发和成熟的功能关系。对放射状牙本质切片执行标准化的脱矿物质程序。将样品在PBS生物活性材料系统中再矿化不同的时间。使用扫描电子显微镜(SEM)对离子交换,拉曼分析和能量色散X射线分析(EDAX)进行评估,以评估再矿化过程。进行了免疫组织化学和酶谱分析以分析NCP和MMP的表达。 SEM评估表明,矿物质的形核和生长仅发生在脱矿质的放射状牙本质表面。再矿化牙本质的拉曼分析显示在955和1063 cm处出现强烈峰,这可能归因于碳酸盐磷灰石的形成。脱矿物质样品的免疫组织化学分析显示,DMP1-CT的存在,主要存在于肾小管内的牙本质中,而DSPP存在于肾小管内和肾小管间的牙本质中。 DMP1-CT和DSPP结合位点控制碳酸盐磷灰石的成核和成熟,指导放射性牙本质的再矿化。

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