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首页> 外文期刊>Tissue engineering, Part A >Human Osteoblast-Derived Extracellular Matrix with High Homology to Bone Proteome Is Osteopromotive
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Human Osteoblast-Derived Extracellular Matrix with High Homology to Bone Proteome Is Osteopromotive

机译:具有高同源性与骨蛋白质的人骨骨细胞衍生的细胞外基质是骨存调节

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Efficient osteogenic differentiation of mesenchymal stromal cells (MSCs) is crucial to accelerate bone formation. In this context, the use of extracellular matrix (ECM) as natural 3D framework mimicking in vivo tissue architecture is of interest. The aim of this study was to generate a devitalized human osteogenic MSC-derived ECM and to investigate its impact on MSC osteogenic differentiation to improve MSC properties in bone regeneration. The devitalized ECM significantly enhanced MSC adhesion and proliferation. Osteogenic differentiation and mineralization of MSCs on the ECM were quicker than in standard conditions. The presence of ECM promoted in vivo bone formation by MSCs in a mouse model of ectopic calcification. We analyzed the ECM composition by mass spectrometry, detecting 846 proteins. Of these, 473 proteins were shared with the human bone proteome we previously described, demonstrating high homology to an in vivo microenvironment. Bioinformatic analysis of the 846 proteins showed involvement in adhesion and osteogenic differentiation, confirming the ECM composition as key modulator of MSC behavior. In addition to known ECM components, proteomic analysis revealed novel ECM functions, which could improve culture conditions. In summary, this study provides a simplified method to obtain an in vitro MSC-derived ECM that enhances osteogenic differentiation and could be applied as natural biomaterial to accelerate bone regeneration.
机译:间充质基质细胞(MSCs)的高效骨质化分化是加速骨形成至关重要。在这种情况下,使用细胞外基质(ECM)作为模仿体内组织架构中的自然3D框架的感兴趣。本研究的目的是产生一种可生长的人骨型MSC衍生的ECM,并研究其对MSC骨质发生分化的影响,以改善骨再生中的MSC性质。活力的ECM显着提高了MSC粘附和增殖。 ECM上MSCs的成骨分化和矿化比标准条件更快。在异位钙化小鼠模型中,MSC促进ECM的存在促进了体内骨形成。通过质谱法分析了ECM组合物,检测846蛋白。其中,与我们之前描述的人骨蛋白质共享473个蛋白质,证明了在体内微环境的高同源性。 846蛋白的生物信息分析显示出粘附和骨质发生分化,确认ECM组合为MSC行为的关键调节剂。除了已知的ECM组分外,蛋白质组学分析还揭示了新型ECM功能,可以改善培养条件。总之,本研究提供了一种简化的方法,以获得体外MSC衍生的ECM,其增强成骨分化,并且可以应用于天然生物材料以加速骨再生。

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