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Application of multiple forms of mechanical loading to human osteoblasts reveals increased ATP release in response to fluid flow in 3D cultures and differential regulation of immediate early genes

机译:对人类成骨细胞施加多种形式的机械负荷显示随着3D培养物中的流体流动以及对早期早期基因的差异调节ATP释放增加

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摘要

ATP is actively released into the extracellular environment from a variety of cell types in response to mechanical stimuli. This is particularly true in bone where mechanically induced ATP release leads to immediate early gene activation to regulate bone remodelling; however there is no consensus as to which mechanical stimuli stimulate osteoblasts the most. To elucidate which specific type(s) of mechanical stimuli induce ATP release and gene activation in human osteoblasts, we performed an array of experiments using different mechanical stimuli applied to both monolayer and 3D cultures of the same osteoblast cell type, SaOS-2. ATP release from osteoblasts cultured in monolayer significantly increased in response to turbulent fluid flow, laminar fluid flow and substrate strain. No significant change in ATP release could be detected in 3D osteoblast cultures in response to cyclic or static compressive loading of osteoblast-seeded scaffolds, whilst turbulent fluid flow increased ATP release from 3D cultures of osteoblasts to a greater degree than observed in monolayer cultures. Cox-2 expression quantified using real time PCR was significantly lower in cells subjected to turbulent fluid flow whereas c-fos expression was significantly higher in cells subjected to strain. Load-induced signalling via c-fos was further investigated using a SaOS-2 c-fos luciferase reporter cell line and increased in response to substrate strain and turbulent fluid flow in both monolayer and 3D, with no significant change in response to laminar fluid flow or 3D compressive loading. The results of this study demonstrate for the first time strain-induced ATP release from osteoblasts and that turbulent fluid flow in 3D up regulates the signals required for bone remodelling.
机译:响应于机械刺激,ATP从多种细胞类型主动释放到细胞外环境中。在骨骼中尤其如此,因为机械诱导的ATP释放会导致早期的早期基因激活,从而调节骨骼的重塑。然而,关于哪种机械刺激最能刺激成骨细胞尚无共识。为了阐明哪种特定类型的机械刺激在人类成骨细胞中诱导ATP释放和基因激活,我们使用了应用于相同成骨细胞类型SaOS-2的单层和3D培养物的不同机械刺激,进行了一系列实验。响应于湍流,层流和基质应变,单层培养的成骨细胞释放的ATP显着增加。响应于成骨细胞接种支架的循环或静态压缩负载,在3D成骨细胞培养物中未检测到ATP释放的显着变化,而湍流流动增加了成骨细胞3D培养物中ATP释放的程度大于单层培养物中观察到的程度。使用实时PCR定量的Cox-2表达在遭受湍流的细胞中显着降低,而c-fos表达在经受应变的细胞中显着更高。使用SaOS-2 c-fos荧光素酶报告细胞进一步研究了通过c-fos诱导的信号转导,并在单层和3D中响应底物应变和湍流而增加,而对层流的响应没有明显变化或3D压缩加载。这项研究的结果首次证明了应变诱导的ATP从成骨细胞释放,并且3D中的湍流向上调节了骨骼重塑所需的信号。

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