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Riboflavin-ultraviolet-A-induced collagen cross-linking treatments in improving dentin bonding

机译:核黄素-紫外线-A诱导的胶原蛋白交联治疗改善牙本质粘合

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摘要

Objectives. To evaluate the collagen cross-linkers, riboflavin-ultraviolet-A (RF/UVA) and glutaraldehyde, with regard to their efficacy in cross-linking the dentinal collagen and improving dentin bonding. Methods. Glutaraldehyde and different RF/UVA protocols (0.1%RF/1-minUV, 0.1%RF/2-minUV, and 1%RF/1-minUV) were first evaluated by gel electrophoresis to determine their abilities of collagen cross-linking. The mechanical properties of acid-etched dentin receiving these cross-linking treatments were examined in either dry or wet condition by a nanoindenta-tion test. Fifteen teeth with exposed occlusal dentin received the microtensile bond strength (μTBS) test. The teeth were primed either with RF/UVA or glutaraldehyde, followed by adhesive treatment and composite restorations, and then cut into resin-dentin microbeams. Half of the microbeams received the pTBS test after 24 h, and the other half received test after 5000 thermocycles. Nanoleakage at the bond interface was examined under TEM. The alignments of collagen fibrils in the hybrid layers were also defined by an image analysis. Results. Gel electrophoresis showed that glutaraldehyde induced strong collagen gelation, while RF/UVA generated milder collagen cross-linking. Glutaraldehyde, 0.1%RF/2-min-UVA, and 1%RF/1-minUV showed higher stiffness compared to untreated and 0.1%RF/1-minUV in wet condition. All the crosslinking treatments improved early (μTBS, but 0.1%RF/2-minUVA treatment maintained high μTBS after theromocycles. Under TEM, glutaraldehyde-treated dentin showed dense and enclosed collagen network on the adhesive interface. 0.1%RF/2-minUVA showed the least nanoleakage, and this could be associated with the suspended collagen fibrils in the hybrid layer. Significance. 0.1%RF/2-minUVA treatment enhanced resin-dentin bond possibly through enhancing the stiffness and maintaining the expanding collagen matrix in the hybrid layer.
机译:目标。为了评估胶原蛋白交联剂,核黄素-紫外线-A(RF / UVA)和戊二醛在交联牙本质胶原蛋白和改善牙本质粘合方面的功效。方法。首先通过凝胶电泳评估戊二醛和不同的RF / UVA方案(0.1%RF / 1-minUV,0.1%RF / 2-minUV和1%RF / 1-minUV),以确定它们的胶原交联能力。通过纳米标记试验,在干或湿条件下检查了接受这些交联处理的酸蚀型牙本质的机械性能。 15颗牙合牙本质暴露的牙齿接受了微拉伸粘合强度(μTBS)测试。用RF / UVA或戊二醛为牙齿打底,然后进行粘合处理和复合修复,然后切成树脂-牙本质微束。 24小时后,一半的微束接受了pTBS测试,另一半在5000个热循环后接受了测试。在TEM下检查了键界面的纳米泄漏。杂合层中胶原原纤维的排列也通过图像分析确定。结果。凝胶电泳显示戊二醛可诱导强烈的胶原蛋白胶凝,而RF / UVA可产生较温和的胶原蛋白交联。戊二醛,0.1%RF / 2-minUVA和1%RF / 1-minUV与潮湿状态下未处理和0.1%RF / 1-minUV相比显示出更高的刚度。所有交联处理均较早改善(μTBS,但热循环后0.1%RF / 2-minUVA处理保持较高的μTBS。在TEM下,戊二醛处理过的牙本质在胶粘剂界面上显示出致密且密闭的胶原网络。0.1%RF / 2-minUVA显示意义:0.1%RF / 2-minUVA处理可能通过增强刚度并维持杂化层中不断扩展的胶原基质,从而增强了树脂-牙本质的结合,这可能与杂化层中悬浮的胶原蛋白原纤维有关。

著录项

  • 来源
    《Dental materials》 |2013年第6期|682-692|共11页
  • 作者单位

    Institute of Oral Medicine, National Cheng Kung Uniuersity, Taiwan,Department of Dentistry, Tainan Municipal Hospital, Taiwan;

    Institute of Oral Medicine, National Cheng Kung Uniuersity, Taiwan;

    Institute of Oral Medicine, National Cheng Kung Uniuersity, Taiwan,Department of Stomatology, National Cheng Kung Uniuersity Hospital, Taiwan,Center for Micro/Nano Science and Technology, National Cheng Kung Uniuersity, Tainan, Taiwan;

    Department of Cell Biology and Anatomy, National Cheng Kung Uniuersity, Taiwan;

    Department of Mechanical Engineering, National Cheng Kung Uniuersity, Taiwan;

    Department of Mechanical Engineering, National Cheng Kung Uniuersity, Taiwan;

    Department of Chemical Engineering, National Cheng Kung Uniuersity, Taiwan;

    Institute of Oral Medicine, National Cheng Kung Uniuersity, Taiwan;

  • 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

    Collagen; Cross-linking; Dentin bonding; Riboflavin; UVA;

    机译:胶原;交联;牙本质粘合;核黄素;紫外线;
  • 入库时间 2022-08-18 03:47:03

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