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首页> 外文期刊>Lasers in surgery and medicine >The effect of chemical and/or mechanical conditioning on the Er:YAG laser-treated root cementum: Analysis of surface morphology and periodontal ligament fibroblast attachment.
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The effect of chemical and/or mechanical conditioning on the Er:YAG laser-treated root cementum: Analysis of surface morphology and periodontal ligament fibroblast attachment.

机译:化学和/或机械的影响调节Er:掺钕钇铝石榴石laser-treated根牙骨质:表面形态和分析牙周韧带成纤维细胞附件。

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BACKGROUND AND OBJECTIVES: This study compared the surface morphology as well as the biocompatibility of dental root cementum treated with Er:YAG laser irradiation alone and with the laser irradiation followed by chemical and/or mechanical conditioning. STUDY DESIGN/MATERIALS AND METHODS: Healthy cementum plates were randomly assigned to the following control and treatment groups: (1) untreated control (C), (2) Er:YAG laser irradiation (L), (3) laser plus tetracycline HCl (TC) placement (L+TP), (4) laser plus TC burnishing (L+TB), (5) laser plus EDTA gel placement (L+EP), (6) laser plus EDTA gel burnishing (L+EB), (7) laser plus saline solution burnishing (L+SB), and (8) laser plus minocycline-HCl paste placement (L+MP). Specimens were subjected to scanning electron microscopy (SEM), histological observation and attachment assay using periodontal ligament (PDL) fibroblasts. RESULTS: The laser irradiation produced a thin affected layer (5.7 microm thickness) with a superficial microstructure on the cementum surface. The characteristic microstructures of the lased surface were fragile and could be removed by chemical and/or mechanical conditioning treatments. The L+TB group exhibited marked exposure of collagen fibers after removal of the microstructures on the lased surface. The L+EP group presented a peculiar, smooth surface without exposure of collagen fibers and a uniform arrangement of spherical microparticles on the ultra-high magnification of SEM. In cell attachment assay, the L+TB group exhibited the greatest number of attached cells among all the groups, followed by the L+EP, L+SB and control group. The laser alone group exhibited the lowest number of cells. CONCLUSIONS: The characteristic microstructure of the root cementum surface after Er:YAG laser irradiation has a tendency to hinder the early attachment of PDL cells. However, chemical and/or mechanical root conditioning treatment may improve and increase the biocompatibility of the Er:YAG laser-treated root cementum by removing the microstructures of the surface and/or further exposing the collagen fibers. Laser Surg. Med. 40:211-222, 2008. (c) 2008 Wiley-Liss, Inc.
机译:背景和目的:本研究比较了表面形态以及生物相容性的牙科根水门汀治疗呃:掺钕钇铝石榴石激光器辐照和激光辐照的化学和/或紧随其后机械调节。和方法:健康的牙骨质的盘子随机分配到下面的控制治疗组:(1)未经处理的控制(C), (2)呃:掺钕钇铝石榴石激光器照射(L),(3)激光+盐酸四环素(TC)放置(L + TP),(4)激光加上TC抛光(L +结核病),(5)激光+ EDTA凝胶放置(L + EP),(6)激光+ EDTA凝胶抛光(L + EB),(7)激光+生理盐水抛光(L +某人)和(8)激光+minocycline-HCl粘贴位置(L + MP)。受到扫描电子显微镜吗(SEM),组织学观察和附件分析使用牙周韧带(PDL)成纤维细胞。产生了影响薄层(5.7 microm厚度)和表面微观结构牙骨质表面。拉斯维加斯表面的微观结构是脆弱的,可以通过化学和/或删除机械调节治疗。组表现出明显暴露的胶原蛋白后纤维的微观结构拉斯维加斯的表面。没有曝光的奇特,表面光滑胶原纤维和统一安排球形微粒在超高扫描电镜的放大。L +结核病组表现出最大数量的连接细胞在所有组,紧随其后L + EP, L +某人和对照组。集团展出的最低数量的细胞。结论:微观结构的特征Er后根牙骨质表面:掺钕钇铝石榴石激光器辐照初期往往会阻碍附件的PDL细胞。机械根调节治疗改善和提高的生物相容性呃:掺钕钇铝石榴石laser-treated根去除牙骨质表面的微观结构和/或进一步暴露的胶原纤维。40:211 - 222, 2008。

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