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The combination of mesenchymal stem cells and a bone scaffold in the treatment of vertebral body defects

机译:间充质干细胞与骨支架相结合治疗椎体缺损

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PurposeVertebral body defects represent one of the most common orthopedic challenges. In order to advance the transfer of stem cell therapies into orthopedic clinical practice, we performed this study to evaluate the safety and efficacy of a composite bioartificial graft based on a hydroxyapatite bone scaffold (CEM-OSTETIC?) combined with human mesenchymal stem cells (MSCs) in a rat model of vertebral body defects.MethodsUnder general isoflurane anesthesia, a defect in the body of the L2 vertebra was prepared and left to heal spontaneously (group 1), implanted with scaffold material alone (group 2), or implanted with a scaffold together with 0.5 million MSCs (group 3) or 5 million MSCs (group 4). The rats were killed 8?weeks after surgery. Histological and histomorphometrical evaluation of the implant as well as micro-CT imaging of the vertebrae were performed.ResultsWe observed a significant effect on the formation of new bone tissue in the defect in group 4 when compared to the other groups and a reduced inflammatory reaction in both groups receiving a scaffold and MSCs. We did not detect any substantial pathological changes or tumor formation after graft implantation.ConclusionsMSCs in combination with a hydroxyapatite scaffold improved the repair of a model bone defect and might represent a safe and effective alternative in the treatment of vertebral bone defects...
机译:目的椎体缺陷代表了最常见的骨科挑战之一。为了促进干细胞疗法向骨科临床实践的转移,我们进行了这项研究,以评估基于羟基磷灰石骨支架(CEM-OSTETIC?)结合人间充质干细胞(MSC)的复合生物人工移植物的安全性和有效性方法:在异氟烷全身麻醉下,准备L2椎体的身体缺损,并使其自愈(第1组),单独植入支架材料(第2组),或植入第2组椎体。支架与50万个MSC(第3组)或500万个MSC(第4组)一起使用。手术后8周将大鼠处死。结果我们观察到与其他组相比,第4组中的缺陷对第4组缺损中新骨组织形成有显着影响,并且炎症反应减少。两组均接受支架和MSC。我们没有发现移植物植入后的任何实质性病理变化或肿瘤形成。结论MSC与羟基磷灰石支架相结合可改善模型骨缺损的修复,可能是治疗椎骨缺损的安全有效替代方案。

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