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Growth plate extracellular matrix-derived scaffolds for large bone defect healing

机译:生长板细胞外基质衍生支架,用于大骨缺损愈合

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Limitations associated with demineralised bone matrix and other grafting materials have motivated the development of alternative strategies to enhance the repair of large bone defects. The growth plate (GP) of developing limbs contain a plethora of growth factors and matrix cues which contribute to long bone growth, suggesting that biomaterials derived from its extracellular matrix (ECM) may be uniquely suited to promoting bone regeneration. The goal of this study was to generate porous scaffolds from decellularised GP ECM and to evaluate their ability to enhance host mediated bone regeneration following their implantation into critically-sized rat cranial defects. The scaffolds were first assessed by culturing with primary human macrophages, which demonstrated that decellularisation resulted in reduced IL-1β and IL-8 production. In vitro, GP derived scaffolds were found capable of supporting osteogenesis of mesenchymal stem cells via either an intramembranous or an endochondral pathway, demonstrating the intrinsic osteoinductivity of the biomaterial. Furthermore, upon implantation into cranial defects, GP derived scaffolds were observed to accelerate vessel in-growth, mineralisation and de novo bone formation. These results support the use of decellularised GP ECM as a scaffold for large bone defect regeneration.
机译:与软化的骨基质和其他移植材料相关的局限性促使人们开发出替代策略,以增强大骨缺损的修复。发育中的肢体的生长板(GP)包含大量有助于长骨生长的生长因子和基质信号,这表明源自其细胞外基质(ECM)的生物材料可能特别适合促进骨再生。这项研究的目的是从脱细胞的GP ECM产生多孔支架,并评估其在植入临界大小的大鼠颅骨缺损后增强宿主介导的骨再生的能力。首先通过与原代人巨噬细胞一起培养评估支架,这表明脱细胞导致IL-1β和IL-8产生减少。在体外,发现GP衍生的支架能够通过膜内或软骨内途径支持间充质干细胞的成骨,证明了该生物材料的固有骨诱导性。此外,在植入颅骨缺损时,观察到GP衍生的支架可促进血管向内生长,矿化和从头形成骨骼。这些结果支持使用脱细胞的GP ECM作为支架进行大骨缺损再生。

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