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Release of Tensile Strain on Engineered Human Tendon Tissue Disturbs Cell Adhesions Changes Matrix Architecture and Induces an Inflammatory Phenotype

机译:在工程化的人肌腱组织上释放张力菌株会干扰细胞粘附改变基质结构并诱导炎性表型

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摘要

Mechanical loading of tendon cells results in an upregulation of mechanotransduction signaling pathways, cell-matrix adhesion and collagen synthesis, but whether unloading removes these responses is unclear. We investigated the response to tension release, with regard to matrix proteins, pro-inflammatory mediators and tendon phenotypic specific molecules, in an in vitro model where tendon-like tissue was engineered from human tendon cells. Tissue sampling was performed 1, 2, 4 and 6 days after surgical de-tensioning of the tendon construct. When tensile stimulus was removed, integrin type collagen receptors showed a contrasting response with a clear drop in integrin subunit α11 mRNA and protein expression, and an increase in α2 integrin mRNA and protein levels. Further, specific markers for tendon cell differentiation declined and normal tendon architecture was disturbed, whereas pro-inflammatory molecules were upregulated. Stimulation with the cytokine TGF-β1 had distinct effects on some tendon-related genes in both tensioned and de-tensioned tissue. These findings indicate an important role of mechanical loading for cellular and matrix responses in tendon, including that loss of tension leads to a decrease in phenotypical markers for tendon, while expression of pro-inflammatory mediators is induced.
机译:肌腱细胞的机械负荷导致机械转导信号通路,细胞基质粘附和胶原蛋白合成的上调,但尚不清楚卸载是否能消除这些反应。我们在体外模型中,从人肌腱细胞工程化了肌腱样组织,研究了对基质蛋白,促炎介质和肌腱表型特异性分子对张力释放的反应。在对肌腱结构进行外科手术张拉后的第1、2、4和6天进行组织采样。去除拉伸刺激后,整联蛋白型胶原受体显示出相反的响应,整联蛋白亚基α11mRNA和蛋白表达明显下降,而整联蛋白亚基α2mRNA和蛋白水平明显升高。此外,用于肌腱细胞分化的特异性标志物下降并且正常的肌腱结构被破坏,而促炎分子被上调。用细胞因子TGF-β1刺激对张紧和张紧的组织中的一些肌腱相关基因有明显的影响。这些发现表明机械负荷对于肌腱中细胞和基质反应的重要作用,包括张力的降低导致肌腱表型标志物的减少,同时诱导促炎性介质的表达。

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