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Experimental etch-and-rinse adhesives doped with bioactive calcium silicate-based micro-fillers to generate therapeutic resin-dentin interfaces

机译:掺有生物活性硅酸钙基微填充剂的实验性蚀刻和冲洗粘合剂,可产生治疗性的树脂-牙本质界面

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摘要

Objectives. This study aimed at evaluating the therapeutic bioactive effects on the bond strength of three experimental bonding agents containing modified Portland cement-based micro-fillers applied to acid-etched dentin and submitted to aging in simulated body fluid solution (SBS). Confocal laser (CLSM) and scanning electron microscopy (SEM) were also performed. Methods. A type-I ordinary Portland cement was tailored using different compounds such as sodium-calcium-aluminum-magnesium silicate hydroxide (HOPC), aluminum-magnesium-carbonate hydroxide hydrates (HCPMM) and titanium oxide (HPCTO) to create three bioactive micro-fillers. A resin blend mainly constituted by Bis-GMA, PMDM and HEMA was used as control (RES-Ctr) or mixed with each micro-filler to create three experimental bonding agents: (i) Res-HOPC, (ii) Res-HCPMM and (iii) Res-HPCTO. The bonding agents were applied onto 37% H3PO4-etched dentin and light-cured for 30 s. After build-ups, they were prepared for micro-tensile bond strength (μTBS) and tested after 24h or 6 months of SBS storage. SEM analysis was performed after de-bonding, while CLSM was used to evaluate the ultra-morphologyanoleakage and the mineral deposition at the resin-dentin interface. Results. High μTBS values were achieved in all groups after 24 h. Only Res-HOPC and Res-HCPMM showed stable μTBS after SBS storage (6 months). All the resin-dentin interfaces created using the bonding agents containing the bioactive micro-fillers tested in this study showed an evident reduction of nanoleakage and mineral deposition after SBS storage. Conclusion. Resin bonding systems containing specifically tailored Portland cement micro-fillers may promote a therapeutic mineral deposition within the hybrid layer and increase the durability of the resin-dentin bond.
机译:目标。这项研究旨在评估对三种实验粘合剂的治疗生物活性作用,这些粘合剂包含改性硅酸盐水泥基微填充剂,应用于酸性酸蚀牙本质,并在模拟体液溶液(SBS)中老化。还进行了共聚焦激光(CLSM)和扫描电子显微镜(SEM)。方法。使用不同的化合物(例如氢氧化钠钙铝镁硅酸盐氢氧化物(HOPC),碳酸铝镁碳酸氢盐水合物(HCPMM)和氧化钛(HPCTO))来量身定制I型普通波特兰水泥,以创建三种具有生物活性的微填料。使用主要由Bis-GMA,PMDM和HEMA组成的树脂共混物作为对照(RES-Ctr),或与每种微填充剂混合以创建三种实验粘合剂:(i)Res-HOPC,(ii)Res-HCPMM和(iii)Res-HPCTO。将粘合剂施加到37%H3PO4蚀刻的牙本质上,并光固化30秒钟。积聚后,将其准备好进行微拉伸粘合强度(μTBS),并在SBS储存24小时或6个月后进行测试。脱胶后进行SEM分析,而CLSM用于评估树脂-牙本质界面的超形貌/纳米漏失和矿物沉积。结果。 24小时后所有组均达到高μTBS值。 SBS储存后(6个月),只有Res-HOPC和Res-HCPMM表现出稳定的μTBS。使用含有本研究中测试的生物活性微填料的粘合剂制成的所有树脂-牙本质界面均显示出SBS储存后纳米渗漏和矿物沉积的明显减少。结论。包含专门定制的波特兰水泥微填料的树脂粘结体系可以促进混合层内矿物质的沉积,并提高树脂-牙本质粘结的耐久性。

著录项

  • 来源
    《Dental materials》 |2013年第7期|729-741|共13页
  • 作者单位

    Biomaterials, Biomimetics and Biophotonics, King's College London Dental Institute, Guy's, King's College and St. Thomas' Hospital,London SE1 9RT, UK;

    Department of Conservative Dentistry, King's College London Dental Institute, London, UK;

    Department of Conservative Dentistry, King's College London Dental Institute, London, UK;

    Biomaterials, Biomimetics and Biophotonics, King's College London Dental Institute, Guy's, King's College and St. Thomas' Hospital,London SE1 9RT, UK;

    Biomaterials, Biomimetics and Biophotonics, King's College London Dental Institute, Guy's, King's College and St. Thomas' Hospital,London SE1 9RT, UK,Department of Restorative Dentistry, Dental Materials Division, Piracicaba Dental School, State University of Campinas, Limeira Av.901,13414-903 Piracicaba, Brazil;

    Department of Scienze della Terra e Geologico-Ambientali, University of Bologna, Bologna, Italy;

    Department of Scienze della Terra e Geologico-Ambientali, University of Bologna, Bologna, Italy;

    Department of Scienze della Terra e Geologico-Ambientali, University of Bologna, Bologna, Italy;

    Biomaterials, Biomimetics and Biophotonics, King's College London Dental Institute, Guy's, King's College and St. Thomas' Hospital,London SE1 9RT, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bioactive micro-fillers; Resin-dentin interface; Bond strength; Durability; Dentin remineralization;

    机译:生物活性微填料;树脂-牙本质界面;粘结强度;耐用性牙本质再矿化;
  • 入库时间 2022-08-18 03:47:03

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