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首页> 外文期刊>Journal of periodontal research >Distribution pattern of versican, link protein and hyaluronic acid in the rat periodontal ligament during experimental tooth movement.
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Distribution pattern of versican, link protein and hyaluronic acid in the rat periodontal ligament during experimental tooth movement.

机译:实验性牙齿移动过程中,鼠牙膜,连接蛋白和透明质酸在大鼠牙周膜中的分布规律。

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The ability of the periodontal ligament (PDL) to rapidly remodel is the basis of orthodontic tooth movement. During the tooth movement, matrix proteoglycans (PGs) may play important roles in spatial, mechanical and biological aspects for the maintenance and repair of the PDL. The aim of this study was to characterize the distribution of a large hyaluronic acid (HA)-binding proteoglycan, versican, link protein (LP) and HA in the rat molar PDL during experimental tooth movement by histochemical and immunohistochemical methods. Experimental tooth movement was performed according to Waldo's method. Histologically, regressive changes, such as decrease of fibroblasts and collagen fibers and exudative change of edema were observed in the compressive side and progressive changes, such as proliferation of fibroblasts and collagen fibers, in the strain side one day after treatment. By 3 days after tooth movement, regressive or progressive changes were not observed in either side. Using monoclonal antibodies specific to versican core protein or LP, the positive immunoreactivity for both molecules was constantly observed throughout the PDL. After the experimental force was applied to the tooth, however, the immunostainings of versican and LP became significantly intense only in the compressive side but decreased in the strain side. The intensity in the compressive side was strongest one day after the force was applied and gradually diminished thereafter. HA of both sides did not change during experimental tooth movement. Since HA is present in the PDL, large amounts of versican and LP expressed in the compressive side may create large hydrated aggregates via their association with HA that dissipates the compressive force applied to this tissue.
机译:牙周膜(PDL)快速重塑的能力是正畸牙齿运动的基础。在牙齿运动期间,基质蛋白聚糖(PGs)可能在空间,机械和生物学方面对PDL的维持和修复起重要作用。这项研究的目的是通过组织化学和免疫组织化学方法表征实验性牙齿移动过程中大鼠透明质酸(HA)结合蛋白透明质酸,versican,链接蛋白(LP)和HA的分布。实验牙齿移动是根据Waldo的方法进行的。在组织学上,在治疗后一天,在受压侧观察到了退化性变化,例如成纤维细胞和胶原纤维的减少以及水肿的渗出性变化,而在应变侧观察到了渐进性变化,例如成纤维细胞和胶原纤维的增殖。牙齿移动后三天,在任一侧均未观察到退化或进行性变化。使用特异于versican核心蛋白或LP的单克隆抗体,在整个PDL中不断观察到两个分子的阳性免疫反应性。但是,在对牙齿施加实验力后,versican和LP的免疫染色仅在压缩侧显着增强,而在应变侧则降低。施加力的一天后,压缩侧的强度最强,此后逐渐减小。实验牙齿移动过程中,双方的HA均未改变。由于HA存在于PDL中,因此在压迫侧表达的大量versican和LP可能通过与HA缔合而产生大量水合聚集体,从而消散了施加在该组织上的压缩力。

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