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Electron microscopy evaluation of mineralization on peritubular dentin with amorphous calcium magnesium phosphate microspheres

机译:无定形钙镁磷酸盐微球对胚芽牙本质矿化的电子显微镜评价

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摘要

Dentin hypersensitivity can be reduced by the use of a remineralization agent to hinder movement of fluids within the dentin tubules. Penetration of particles into the tubules and a continuous release of Ca2+ and phosphate ions can induce the mineralization of a material mimicking the mineral component of dentin, sealing the tubules. In this work, we have used complementary electron microscopy techniques to investigate the ultrastructure of dentin and crystallization and occlusion effects when using amorphous calcium magnesium phosphate (ACMP) microspheres on extracted human molars. Application of the particles in a gel intended for athome use resulted in intra-tubular mineralization of a carbonate substituted hydroxyapatite (HA). Transmission electron microscopy (TEM) and scanning electron microscopy (SEM) showed that crystallization was initiated on the peritubular dentin (PTD) with undirected crystal growth leading to the formation of a porous material. We additionally investigated the effects from using a fluoride toothpaste to potentially improve the remineralization and anti-cariogenic properties of the ACMP microspheres. Energy dispersive x-ray spectroscopy (EDX) using TEM in scanning mode (STEM) showed that fluoride incorporation resulted in an increase in aspect ratio of the crystals, crystal growth directed towards the center of the tubule lumen and densification of the mineralized material. Thus, ACMP microspheres are promising alternatives as occluding agents and the efficacy of the particles could be further improved with the complementary use of a fluoride toothpaste.
机译:通过使用剩余剂来阻碍牙本质小管内的流体的运动,可以减少牙本质蛋白的超敏反应。将颗粒渗透到小管中和Ca 2+和磷酸盐离子的连续释放可以诱导模仿牙本质矿物成分的材料的矿化,密封小管。在这项工作中,我们使用了互补的电子显微镜技术来研究牙本质和结晶和闭塞效应的超微结构,当在提取的人臼上使用无定形磷酸钙(ACMP)微球时。将颗粒在用于Athome使用的凝胶中的施用导致碳酸酯的管内矿化羟基磷灰石(HA)。透射电子显微镜(TEM)和扫描电子显微镜(SEM)显示,在具有无向晶体生长的扰动牙本质(PTD)上引发结晶,所述晶体生长导致形成多孔材料。我们还研究了使用氟化物牙膏来潜在地改善ACMP微球的再矿化和抗致龋性性质的影响。在扫描模式(茎)中使用TEM的能量分散X射线光谱(EDX)显示氟化物掺入导致晶体的纵横比的增加,晶体生长朝向小管内腔的中心和矿化材料的致密化。因此,ACMP微球是有前途的替代品,作为闭塞剂,可以通过氟化物牙膏的互补使用进一步改善颗粒的功效。

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