首页> 外文期刊>Journal of periodontal research >Stretching stimulates fibulin-5 expression and controls microfibril bundles in human periodontal ligament cells.
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Stretching stimulates fibulin-5 expression and controls microfibril bundles in human periodontal ligament cells.

机译:拉伸刺激了fibulin-5的表达并控制人牙周膜细胞中的微纤维束。

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BACKGROUND AND OBJECTIVE: The elastic fiber system comprises oxytalan, elaunin and elastic fibers, differing in their relative microfibril and elastin contents. Human periodontal ligaments contain oxytalan fibers (pure microfibrils). Periodontal ligaments are continuously exposed to various functional forces, such as tooth movement and occlusal loading. We have reported that bundles of microfibrils coalesce in response to mechanical strain in cultured periodontal ligament fibroblasts, as assessed in terms of their positivity for fibrillin-1 (the major component of microfibrils). However, the mechanism of microfibril coalescence is unclear. We hypothesized that the fibrillin-1-binding molecule, fibulin-5, contributes to oxytalan fiber formation under mechanical strain. MATERIAL AND METHODS: We subjected periodontal ligament fibroblasts to stretching in order to examine the effects of fibulin-5 on the formation of oxytalan fibers in cell/matrix layers. We transfected periodontal ligament cells with small interference RNA for fibulin-5, then examined oxytalan fibers using immunofluorescence and electron microscopy. RESULTS: Immunofluorescence showed that fibrillin-1-positive microfibrils coalesced as a result of stretching, compared with cells that were not subjected to stretching. Fibulin-5 colocalized on fibrillin-1-positive microfibrils. Stretching increased fibulin-5 gene expression and protein deposition. Immunofluorescence and immunogold electron microscopy analysis revealed that fibulin-5 suppression inhibited the coalescence of microfibrils under stretching conditions. CONCLUSION: These results suggest that fibulin-5 up-regulated in response to tension strain may control the formation of microfibril bundles in periodontal ligament.
机译:背景与目的:弹性纤维体系由氧化金属纤维,弹性蛋白和弹性纤维组成,它们的相对微纤维和弹性蛋白含量不同。人的牙周膜含有羟talan纤维(纯微纤维)。牙周膜持续承受各种功能力,例如牙齿移动和咬合负荷。我们已经报道,在对牙周膜成纤维细胞的机械应变中,微纤维束会聚在一起,这是根据它们对原纤维蛋白-1(微纤维的主要成分)的阳性率进行评估的。但是,微纤维合并的机制尚不清楚。我们假设,在机械应变下,原纤维蛋白1结合分子fibulin-5有助于氧化金属纤维的形成。材料和方法:我们对牙周膜成纤维细胞进行拉伸,以检查fibulin-5对细胞/基质层中的oxytalan纤维形成的影响。我们用小干扰RNA转染了牙周膜细胞中的fibulin-5,然后使用免疫荧光和电子显微镜检查了氧化金属纤维。结果:免疫荧光显示,与未进行拉伸的细胞相比,通过拉伸可以产生Fibrillin-1阳性微纤维。在Fibrillin-1阳性微纤维上共定位Fibulin-5。伸展增加fibulin-5基因表达和蛋白质沉积。免疫荧光和免疫金电子显微镜分析表明,在拉伸条件下抑制丝蛋白5抑制了微纤维的聚结。结论:这些结果表明,在张力应变中上调的fibulin-5可能控制了牙周膜中微纤维束的形成。

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