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Interaction of Age and Mechanical Stability on Bone Defect Healing: An Early Transcriptional Analysis of Fracture Hematoma in Rat

机译:年龄和机械稳定性对骨缺损愈合的相互作用:大鼠骨折血肿的早期转录分析

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摘要

Among other stressors, age and mechanical constraints significantly influence regeneration cascades in bone healing. Here, our aim was to identify genes and, through their functional annotation, related biological processes that are influenced by an interaction between the effects of mechanical fixation stability and age. Therefore, at day three post-osteotomy, chip-based whole-genome gene expression analyses of fracture hematoma tissue were performed for four groups of Sprague-Dawley rats with a 1.5-mm osteotomy gap in the femora with varying age (12 vs. 52 weeks - biologically challenging) and external fixator stiffness (mechanically challenging). From 31099 analysed genes, 1103 genes were differentially expressed between the six possible combinations of the four groups and from those 144 genes were identified as statistically significantly influenced by the interaction between age and fixation stability. Functional annotation of these differentially expressed genes revealed an association with extracellular space, cell migration or vasculature development. The chip-based whole-genome gene expression data was validated by q-RT-PCR at days three and seven post-osteotomy for MMP-9 and MMP-13, members of the mechanosensitive matrix metalloproteinase family and key players in cell migration and angiogenesis. Furthermore, we observed an interaction of age and mechanical stimuli in vitro on cell migration of mesenchymal stromal cells. These cells are a subpopulation of the fracture hematoma and are known to be key players in bone regeneration. In summary, these data correspond to and might explain our previously described biomechanical healing outcome after six weeks in response to fixation stiffness variation. In conclusion, our data highlight the importance of analysing the influence of risk factors of fracture healing (e.g. advanced age, suboptimal fixator stability) in combination rather than alone.
机译:在其他压力源中,年龄和机械限制因素显着影响骨骼愈合中的再生级联。在这里,我们的目标是识别基因,并通过其功能注释来识别受机械固定稳定性和年龄之间的相互作用影响的相关生物学过程。因此,在切骨手术后的第三天,对四组在年龄不同的股骨中有1.5mm截骨间隙的Sprague-Dawley大鼠进行了骨折血肿组织基于芯片的全基因组基因表达分析(12比52)周-生物学上的挑战)和外固定架的刚度(力学上的挑战)。从31099个分析的基因中,在四个组的六个可能组合之间差异表达了1103个基因,从这144个基因中鉴定出,年龄和固定稳定性之间的相互作用在统计学上具有显着影响。这些差异表达基因的功能注释揭示了与细胞外空间,细胞迁移或脉管系统发育的关联。基于芯片的全基因组基因表达数据已通过q-RT-PCR在MOT-9和MMP-13骨切开术后的第三天和第七天,机械敏感基质金属蛋白酶家族成员以及细胞迁移和血管生成的关键因素中得到验证。此外,我们观察到年龄和体外机械刺激对间充质基质细胞迁移的相互作用。这些细胞是骨折血肿的一个亚群,已知是骨再生的关键因素。总而言之,这些数据对应并可能解释了我们先前描述的六周后响应于固定刚度变化的生物力学愈合结果。总之,我们的数据强调了结合而不是单独分析骨折愈合的危险因素(例如,高龄,次优固定器稳定性)的影响的重要性。

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