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Bone regeneration with osteogenically enhanced mesenchymal stem cells and their extracellular matrix proteins

机译:成骨增强的间充质干细胞及其细胞外基质蛋白的骨再生

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摘要

Although bone has remarkable regenerative capacity, about 10% of long bone fractures and 25–40% of vertebral fusion procedures fail to heal. In such instances, a scaffold is employed to bridge the lesion and accommodate osteoprogenitors. Although synthetic bone scaffolds mimic some of the characteristics of bone matrix, their effectiveness can vary due to biological incompatibility. Herein, we demonstrate that a composite prepared with osteogenically enhanced mesenchymal stem cells (OEhMSCs) and their extracellular matrix (ECM) has an unprecedented capacity for the repair of critical-sized defects of murine femora. Furthermore, OEhMSCs do not cause lymphocyte activation and ECM/OEhMSC composites retain their in vivo efficacy after cryopreservation. We finally show that attachment to the ECM by OEhMSCs stimulates the production of osteogenic and angiogenic factors. These data demonstrate that composites of OEhMSCs and their ECM could be utilized in the place of autologous bone graft for complex orthopedic reconstructions.
机译:尽管骨骼具有显着的再生能力,但大约10%的长骨骨折和25-40%的椎骨融合手术无法愈合。在这种情况下,使用支架桥接病变并容纳骨祖细胞。尽管合成骨支架模仿了骨基质的某些特征,但是它们的有效性可能由于生物学上的不相容性而变化。在这里,我们证明了用骨原性增强的间充质干细胞(OEhMSCs)及其细胞外基质(ECM)制备的复合材料具有修复鼠股骨临界大小缺陷的空前能力。此外,OEhMSCs不会引起淋巴细胞活化,ECM / OEhMSC复合材料在冷冻保存后仍保持其体内功效。我们最终表明,OEhMSCs对ECM的附着会刺激成骨和血管生成因子的产生。这些数据表明OEhMSCs及其ECM的复合材料可用于代替自体骨移植物进行复杂的骨科重建。

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