首页> 外文期刊>Journal of tissue engineering and regenerative medicine >The use of a novel bone allograft wash process to generate a biocompatible, mechanically stable and osteoinductive biological scaffold for use in bone tissue engineering
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The use of a novel bone allograft wash process to generate a biocompatible, mechanically stable and osteoinductive biological scaffold for use in bone tissue engineering

机译:使用新型同种异体骨冲洗过程产生生物相容性,机械稳定性和骨诱导性的生物支架,用于骨骼组织工程

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Fresh-frozen biological allograft remains the most effective substitute for the gold standard' autograft, sharing many of its osteogenic properties but, conversely, lacking viable osteogenic cells. Tissue engineering offers the opportunity to improve the osseointegration of this material through the addition of mesenchymal stem cells (MSCs). However, the presence of dead, immunogenic and potentially harmful bone marrow could hinder cell adhesion and differentiation, graft augmentation and incorporation, and wash procedures are therefore being utilized to remove the marrow, thereby improving the material's safety. To this end, we assessed the efficiency of a novel wash technique to produce a biocompatible, biological scaffold void of cellular material that was mechanically stable and had osteoinductive potential. The outcomes of our investigations demonstrated the efficient removal of marrow components (similar to 99.6%), resulting in a biocompatible material with conserved biomechanical stability. Additionally, the scaffold was able to induce osteogenic differentiation of MSCs, with increases in osteogenic gene expression observed following extended culture. This study demonstrates the efficiency of the novel wash process and the potential of the resultant biological material to serve as a scaffold in bone allograft tissue engineering. (c) 2014 The Authors. Journal of Tissue Engineering and Regenerative Medicine published by John Wiley & Sons Ltd.
机译:新鲜冷冻的生物同种异体移植物仍然是金标准自体移植物的最有效替代物,具有许多成骨特性,但相反,缺少存活的成骨细胞。组织工程学提供了通过添加间充质干细胞(MSC)来改善这种材料的骨整合的机会。但是,死的,具有免疫原性和潜在危害性的骨髓的存在可能会阻碍细胞的粘附和分化,移植物的增加和掺入,因此采用了清洗程序来去除骨髓,从而提高了材料的安全性。为此,我们评估了新型洗涤技术生产生物相容性,生物支架材料的细胞材料的效率,该材料在机械上是稳定的并且具有骨诱导潜力。我们的研究结果表明,可以有效去除骨髓成分(约占99.6%),从而获得具有生物力学稳定性的生物相容性材料。另外,该支架能够诱导MSC的成骨分化,并且在延长培养后观察到成骨基因表达的增加。这项研究证明了新型清洗工艺的效率以及所产生的生物材料在同种异体骨组织工程中用作支架的潜力。 (c)2014作者。 John Wiley&Sons Ltd.出版的《组织工程与再生医学杂志》。

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