首页> 外文期刊>Journal of biomaterials science >Polycarboxylated microfillers incorporated into light-curable resin-based dental adhesives evoke remineralization at the mineral-depleted dentin
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Polycarboxylated microfillers incorporated into light-curable resin-based dental adhesives evoke remineralization at the mineral-depleted dentin

机译:掺入光固化树脂基牙科胶粘剂中的聚羧化微填料在贫矿牙本质中引起矿化

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摘要

This study aimed at evaluating the remineralizing properties of three experimental light-curable resin-based dental adhesives containing tailored polycarboxylated microfillers. A co-monomers blend was firstly formulated and then mixed with each of the following microfillers: polycarboxylated bioactive glass (PBAG),, polycarboxylated calcium silicates (PCS), and polycarboxylated calcium silicates-doped brushite (PDP). The three experimental and a filler-free control resins were applied onto 10% orthophosphoric acid treated dentin discs and light cured. The specimens, were soaked in artificial saliva (AS) for 3, 7, and 14 days. Dentin mineral variation was monitored using attenuated total reflection-Fourier transform infrared (ATR-FTIR) and Raman spectroscopy. Confocal laser scanning microscopy (CLSM) was employed to observe the ultra-morphologyanoleakage along the resin-dentin interface. The bonding ability and the durability of the resin-dentin bonds were investigated through microtensile bond strength (μTBS) test. ATR-FTIR and Raman showed a significant increase of the mineral matrix area ratio and phosphate peak intensity in specimens treated with the experimental resins within 14 days (p<0.05). No significant increment of minerals was found in untreated specimens or specimens treated using the control filler-free resin (p>0.05). Dentin treated using PBAG or PCS exhibited higher level of remineralization than the specimens in PDP group. CLSM showed reduction in nanoleakage, although the remineralization of the hybrid layer induced a significant drop in the μTBS after 3-month storage (p < 0.05). The experimental resin-based dental adhesives containing bioactive microfillers remineralize the resin-dentin interfaces when in intimate contact with biological fluids.
机译:这项研究旨在评估三种含有定制的聚羧化微填料的光固化树脂基实验性牙科粘合剂的再矿化性能。首先配制共聚单体共混物,然后与以下每种微填料混合:聚羧化生物活性玻璃(PBAG),聚羧化硅酸钙(PCS)和掺杂聚羧化硅酸钙的透钙磷石(PDP)。将三种实验性和无填料的对照树脂施加到10%正磷酸处理的牙本质牙盘上并进行光固化。将标本浸泡在人工唾液(AS)中3、7和14天。使用衰减全反射-傅立叶变换红外光谱(ATR-FTIR)和拉曼光谱法监测牙本质矿物的变化。共聚焦激光扫描显微镜(CLSM)用于观察沿树脂-牙本质界面的超形貌/纳米泄漏。通过微拉伸粘合强度(μTBS)测试,研究了树脂-牙本质粘合的粘合能力和耐久性。 ATR-FTIR和拉曼光谱显示在14天内用实验树脂处理过的样品中的矿物基质面积比和磷酸盐峰强度显着增加(p <0.05)。在未处理的样品或使用对照无填料树脂处理的样品中,未发现矿物质显着增加(p> 0.05)。 PBAG或PCS处理的牙本质比PDP组的标本具有更高的再矿化水平。 CLSM显示出纳米泄漏的减少,尽管杂化层的再矿化在3个月的储存后导致μTBS显着下降(p <0.05)。当与生物流体紧密接触时,含有生物活性微填料的实验性树脂基牙科粘合剂可重新矿化树脂-牙本质界面。

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