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首页> 外文期刊>Epigenetics: official journal of the DNA Methylation Society >Differential analysis of genome-wide methylation and gene expression in mesenchymal stem cells of patients with fractures and osteoarthritis
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Differential analysis of genome-wide methylation and gene expression in mesenchymal stem cells of patients with fractures and osteoarthritis

机译:骨折和骨关节炎患者间充质干细胞基因组甲基化和基因表达的差异分析

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摘要

Insufficient activity of the bone-forming osteoblasts leads to low bone mass and predisposes to fragility fractures. The functional capacity of human mesenchymal stem cells (hMSCs), the precursors of osteoblasts, may be compromised in elderly individuals, in relation with the epigenetic changes associated with aging. However, the role of hMSCs in the pathogenesis of osteoporosis is still unclear. Therefore, we aimed to characterize the genome-wide methylation and gene expression signatures and the differentiation capacity of hMSCs from patients with hip fractures. We obtained hMSCs from the femoral heads of women undergoing hip replacement due to hip fractures and controls with hip osteoarthritis. DNA methylation was explored with the Infinium 450K bead array. Transcriptome analysis was done by RNA sequencing. The genomic analyses revealed that most differentially methylated loci were situated in genomic regions with enhancer activity, distant from gene bodies and promoters. These regions were associated with differentially expressed genes enriched in pathways related to hMSC growth and osteoblast differentiation. hMSCs from patients with fractures showed enhanced proliferation and upregulation of the osteogenic drivers RUNX2/OSX. Also, they showed some signs of accelerated methylation aging. When cultured in osteogenic medium, hMSCs from patients with fractures showed an impaired differentiation capacity, with reduced alkaline phosphatase activity and poor accumulation of a mineralized matrix. Our results point to 2 areas of potential interest for discovering new therapeutic targets for low bone mass disorders and bone regeneration: the mechanisms stimulating MSCs proliferation after fracture and those impairing their terminal differentiation.
机译:骨形成的成骨细胞的活性不足导致低骨质量和易脆性裂缝的易感性。人间充质干细胞(HMSCs)的功能能力,成骨细胞的前体可能在老年人中受到与老化相关的表观遗传变化相关的。然而,HMSCs在骨质疏松症发病机制中的作用仍然尚不清楚。因此,我们旨在表征髋部骨折患者的基因组甲基化和基因表达鉴定和HMSCs的分化能力。我们从髋关节骨折和髋关节骨关节炎的髋关节骨折和对照组的髋关节替代品中获得HMSCs。使用Infinium 450K珠阵列探索DNA甲基化。通过RNA测序完成转录组分析。基因组分析显示,大多数差异甲基化基因座位于具有增强子活性的基因组区域中,远离基因体和启动子。这些区域与富含抗HMSC生长和成骨细胞分化有关的途径中富含途径的差异表达基因有关。来自骨折患者的HMSCs显示出骨质原鼻部runx2 / osx的增殖和上调。此外,它们显示出一些加速甲基化老化的迹象。当在成骨培养基中培养时,来自骨折患者的HMSCs显示出分化能力受损,具有降低的碱性磷酸酶活性和矿化基质的差的积累。我们的结果指出了发现低骨质疾病和骨再生的新治疗靶标的2个潜在兴趣的领域:抗骨折后刺激MSCs增殖的机制以及损害其末端分化的机制。

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