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首页> 外文期刊>Bone >New insights into BMP-7 mediated osteoblastic differentiation of primary human mesenchymal stem cells.
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New insights into BMP-7 mediated osteoblastic differentiation of primary human mesenchymal stem cells.

机译:新洞察BMP-7介导的原发性人间充质干细胞的骨细胞分化。

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摘要

Bone Morphogenetic Proteins (BMPs) are members of the TGF-beta superfamily of growth factors. Several BMPs exhibit osteoinductive bioactivities, and are critical for bone formation in both developing and mature skeletal systems. BMP-7 (OP-1) is currently used clinically in revision of posterolateral spine fusions and long bone non-unions. The current study characterizes BMP-7 induced gene expression during early osteoblastic differentiation of human mesenchymal stem cells (hMSC). Primary hMSC were treated with BMP-7 for 24 or 120 h and gene expression across the entire human genome was evaluated using Affymetrix HG-U133 Plus 2.0 Arrays. 955 probe sets representing 655 genes and 95 ESTs were identified as differentially expressed and were organized into three major expression profiles (Profiles A, B and C) by hierarchical clustering. Genes from each profile were classified according to biochemical pathway analyses. Profile A, representing genes upregulated by BMP-7, revealed strong enrichment for established osteogenic marker genes, as well as several genes with undefined roles in osteoblast function, including MFI2, HAS3, ADAMTS9, HEY1, DIO2 and FGFR3. A functional screen using siRNA suggested roles for MFI2, HEY1 and DIO2 in osteoblastic differentiation of hMSC. Profile B contained genes transiently downregulated by BMP-7, including numerous genes associated with cell cycle regulation. Follow-up studies confirmed that BMP-7 attenuates cell cycle progression and cell proliferation during early osteoblastic differentiation. Profile C, comprised of genes continuously downregulated by BMP-7, exhibited strong enrichment for genes associated with chemokine/cytokine activity. Inhibitory effects of BMP-7 on cytokine secretion were verified by analysis of enriched culture media. Potent downregulation of CHI3L1, a potential biomarker for numerous joint diseases, was also observed in Profile C. A focused evaluation of BMP, GDF and BMP inhibitor expression elucidated feedback loops modulating BMP-7 bioactivity. BMP-7 was found to induce BMP-2 and downregulate GDF5 expression. Transient knockdown of BMP-2 using siRNA demonstrated that osteoinductive properties associated with BMP-7 are independent of endogenous BMP-2 expression. Noggin was identified as the predominant inhibitor induced by BMP-7 treatment. Overall, this study provides new insight into key bioactivities characterizing early BMP-7 mediated osteoblastic differentiation.
机译:骨形态发生蛋白(BMP)是TGF-β超家族的生长因子的成员。几种BMP表现出骨诱导性生物活性,并且对于开发和成熟的骨骼系统中的骨形成至关重要。 BMP-7(OP-1)目前在临床上进行临床使用,修订后侧脊柱融合和长骨非工会。目前的研究表征了人间充质干细胞(HMSC)的早期骨细胞分化期间BMP-7诱导基因表达。用BMP-7处理原发性HMSC 24或120小时,并使用Affymetrix HG-U133加2.0阵列评估整个人类基因组的基因表达。将表示655基因和95个EST的探针组被鉴定为差异表达,并通过分级聚类组织成三个主要表达谱(分布A,B和C)。根据生物化学途径分析对每个型材的基因进行分类。代表BMP-7上调的基因的概况A显示出对已建立的骨质原基因基因的强烈富集,以及在成骨细胞功能中具有未定义的作用的几个基因,包括MFI2,HAS3,AdamTS9,HEY1,DIO2和FGFR3。使用siRNA的功能筛网表明MFI2,Hey1和DIO2在HMSC的骨细胞分化中的作用。概况B通过BMP-7瞬时下调的基因,包括与细胞周期调节相关的许多基因。后续研究证实,BMP-7在早期骨细胞分化期间衰减细胞周期进展和细胞增殖。由BMP-7连续下调的基因组成的概况C表现出与趋化因子/细胞因子活性相关的基因的强烈富集。通过富集的培养基分析验证了BMP-7对细胞因子分泌的抑制作用。在CHI3L1的效率下调,在概况C中也观察到许多关节疾病的潜在生物标志物。概况C.对BMP,GDF和BMP抑制剂表达的重点评估阐明了调节BMP-7生物活性的反馈回路。发现BMP-7诱导BMP-2并下调GDF5表达。使用siRNA的BMP-2的瞬态敲低证明与BMP-7相关的骨诱导性质与内源性BMP-2表达无关。 Noggin被鉴定为BMP-7处理诱导的主要抑制剂。总体而言,本研究提供了对特征早期BMP-7介导的骨细胞分化的关键生物活性的新洞察力。

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