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Variations in collagen fibrils network structure and surface dehydration of acid demineralized intertubular dentin: Effect of dentin depth and air-exposure time

机译:酸性矿物质小管间牙本质的胶原纤维网络结构和表面脱水的变化:牙本质深度和暴露时间的影响

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摘要

Objective. The aim was to characterize the variations in the structure and surface dehydration of acid demineralized intertubular dentin collagen network with the variations in dentin depth and time of air-exposure (3, 6, 9 and 12min). In addition, to study the effect of these variations on the tensile bond strength (TBS) to dentin.rnMethods. Phosphoric acid demineralized superficial and deep dentin specimens were prepared. The structure of the dentin collagen network was characterized by AFM. The surface dehydration was characterized by probing the nano-scale adhesion force (F_(ad)) between AFM tip and intertubular dentin surface as a new experimental approach. The TBS to dentin was evaluated using an alcohol-based dentin self-priming adhesive.rnResults. AFM images revealed a demineralized open collagen network structure in both of superficial and deep dentin at 3 and 6 min of air-exposure. However, at 9 min, superficial dentin showed more collapsed network structure compared to deep dentin that partially preserved the open network structure. Total collapsed structure was found at 12 min for both of superficial and deep dentin. The value of the F_(ad) is decreased with increasing the time of air-exposure and is increased with dentin depth at the same time of air-exposure. The TBS was higher for superficial dentin at 3 and 6 min, however, no difference was found at 9 and 12 min.rnSignificance. The ability of the demineralized dentin collagen network to resist air-dehydration and to preserve the integrity of open network structure with the increase in air-exposure time is increased with dentin depth. Although superficial dentin achieves higher bond strength values, the difference in the bond strength is decreased by increasing the time of air-exposure. The AFM probed F_(ad) showed to be sensitive approach to characterize surface dehydration, however, further researches are recommended regarding the validity of such approach.
机译:目的。目的在于表征酸性脱矿的小管间牙本质胶原蛋白网络的结构和表面脱水的变化,以及牙本质深度和暴露时间(3、6、9和12min)的变化。此外,研究这些变化对牙本质的拉伸粘合强度(TBS)的影响。准备了磷酸去矿质的浅层和深层牙本质标本。牙本质胶原网络的结构由原子力显微镜表征。作为一种新的实验方法,通过探查AFM尖端与小管间牙本质表面之间的纳米级粘附力(F_(ad))来表征表面脱水。使用基于醇的牙本质自吸粘合剂评估牙本质的TBS。 AFM图像显示,在空气暴露3分钟和6分钟时,浅表和深层牙本质均存在脱矿质的开放性胶原网络结构。但是,在9分钟时,与深层的牙本质保留了开放的网络结构相比,浅层的牙本质显示出更多的塌陷的网络结构。表皮和深部牙本质均在12分钟时发现完全塌陷的结构。随着空气暴露时间的增加,F_(ad)的值减小,同时空气暴露时间的F_(ad)的值随着牙本质深度的增加而增加。浅表牙本质的TBS在第3和6分钟时较高,但在第9和12分钟时没有发现差异。随着空气接触时间的增加,脱矿质牙本质胶原蛋白网络抵抗空气脱水并保持开放网络结构完整性的能力随牙本质深度的增加而增加。尽管表面牙本质获得更高的粘合强度值,但粘合强度的差异通过增加空气暴露时间而减小。原子力显微镜探测的F_(ad)被证明是表征表面脱水的灵敏方法,但是,建议进一步研究这种方法的有效性。

著录项

  • 来源
    《Dental materials》 |2010年第1期|35-43|共9页
  • 作者

    Amr S. Fawzy;

  • 作者单位

    Dental Biomaterials Department, Faculty of Dentistry, Ain Shams Uniuersity, Cairo, Egypt;

  • 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

    intertubular dentin; collagen fibrils network; dehydration; AFM; adhesion force;

    机译:肾小管间牙本质胶原纤维网络脱水原子力显微镜附着力;
  • 入库时间 2022-08-18 03:47:24

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