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On modeling and nano-analysis of caries-affected dentin surfaces restored with Zn-containing amalgam and in vitro oral function

机译:含锌汞齐修复龋齿牙本质表面的建模和纳米分析及体外口腔功能

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摘要

The aim of this research was to assess the influence of mechanical loading on the ability of Zn-free vs Zn-containing amalgams to promote remineralization at the dentin\udinterface. Sound (SD) and caries-affected dentin surfaces (CAD) were restored using\udZn-free or Zn-containing dental amalgams. Mid-coronal dentin surfaces were studied by\ud1) Atomic Force Microscopy (AFM) analysis (including plot and phase imaging, nanoindentation test (modulus of Young (Ei), nano-roughness measurements, and fibril\uddiameter assessment), 2) Raman spectroscopy/cluster analysis, 3) X-ray diffraction (??XRD2), 4) field emission electron microscope (FESEM) and energy-dispersive analysis (EDX), for morphological, mechanical, and physico-chemical characterization.\udAnalyses were performed before amalgam placement and after amalgam removal, at 24\udhours and 3 weeks of load cycling. Zn-free and Zn-containing amalgams restorations\udpromoted an increase in the modulus of Young of CAD surfaces, after three weeks of\udload cycling; at this time, Zn-containing amalgams attained higher Ei than Zn-free\udrestorations. Zn-containing amalgams induced tubular occlusion after load cycling, in\udboth sound and CAD. Zn free-amalgams promoted remineralization of both intertubular and peritubular dentin in CAD substrata. These minerals were identified as calciumphosphate deposits, and crystals as hydroxyl-apatite with augmented crystallographic maturity but with some components of lattice distortion. Crosslinking of collagen diminished and secondary structure of collagen increased in CAD substrate restored with Zn-containing amalgam after 3 w of load cycling, indicating an advanced preservation, molecular organization and orientation of collagen fibrils after load cycling. Plot and phase images permitted to observe the topographical changes which were promoted by the mineral deposits; in general, the indexes related to higher remineralization gave rise to a decrease of nano-roughness and an augmentation of the bandwidth of the collagen fibrils. Zn-containing amalgam restorations submitted to mechanical stimuli promote remineralization of the partially mineral-depleted subjacent substrate at the caries-affected dentin.
机译:这项研究的目的是评估机械负荷对无锌vs.含锌汞齐促进牙本质/ ud界面再矿化的能力的影响。使用无udZn或含Zn的牙科汞合金可恢复声音(SD)和患龋的牙本质表面(CAD)。通过\ ud1)原子力显微镜(AFM)分析(包括图和相成像,纳米压痕测试(杨氏模量(Ei),纳米粗糙度测量和原纤维\直径直径评估),2)拉曼来研究冠状膜中部表面。光谱/聚类分析,3)X射线衍射(ΔXRD2),4)场发射电子显微镜(FESEM)和能量分散分析(EDX),用于形态,机械和物理化学表征。在放置汞合金之前和去除汞合金之后,在24小时/小时和负载循环的3周内。在无负荷循环三周后,无锌和含锌的汞合金修复体促进了CAD表面的杨氏模量的增加。此时,含锌汞合金的Ei高于无锌还原。负荷循环,声音和CAD后,含锌的汞合金会引起肾小管阻塞。锌游离汞齐可促进CAD基质中小管间和小管周围牙本质的再矿化。这些矿物被鉴定为磷酸钙沉积物,晶体被鉴定为具有增强的晶体学成熟度但具有某些晶格畸变成分的羟基磷灰石。负荷循环3 w后,含锌的汞合金恢复的CAD基质中胶原的交联减少,胶原的二级结构增加,这表明负荷循环后胶原原纤维的高级保存,分子组织和取向。允许观察矿藏促进的地形变化的曲线图和相图;通常,与更高的再矿化有关的指数导致纳米粗糙度的降低和胶原原纤维的带宽的增加。受到机械刺激的含锌汞合金修复物可促进龋齿影响的牙本质中部分矿物质耗尽的下层基质的再矿化。

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