首页> 外文期刊>Veterinary and Comparative Orthopaedics and Traumatology >The efficacy of allogeneic mesenchymal precursor cells for the repair of an ovine tibial segmental defect.
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The efficacy of allogeneic mesenchymal precursor cells for the repair of an ovine tibial segmental defect.

机译:同种异体间充质前体细胞修复羊胫节节段缺损的功效。

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摘要

INTRODUCTION: Synthetic void-fillers offer an alternative to autograft or allograft bone in the repair of segmental defects. However, the reparative process is delayed as only osteoconductive elements are present. The inclusion of pluripotential cells may resolve this limitation, and the use of allogeneic tissue provides the opportunity for an off-the-shelf remedy. The current study evaluated the utilisation of mesenchymal precursor cells (MPC) for the repair of an ovine critical-size tibial segmental defect. METHODS: Twenty-four, mature female sheep underwent surgery for the creation of a 3 cm tibial diaphyseal defect. In one group of 12 sheep the scaffold was used alone, and in the second group the scaffold was seeded with MPC. The defect was stabilised using a locking intramedullary nail and allowed to heal over a nine-month-period. Outcome assessments of healing included radiology of callus formation, computed tomography, assessment of new-bone volume, mechanical attributes, and histological evaluation of linear bone apposition rate and tissue response. RESULTS: The MPC-treated group displayed a significantly greater level of callus formation and rate of bone apposition in the defect. DISCUSSION: The incorporation of allogeneic MPC to a synthetic void filler stimulated early repair of critical-size diaphyseal segmental defects and holds potential as an off-the-shelf therapy for augmenting bone regeneration.
机译:简介:人造空隙填充剂可替代自体或同种异体骨修复节段性缺损。然而,由于仅存在骨传导元素,修复过程被延迟。包含多能细胞可以解决这一局限性,同种异体组织的使用为现成的治疗方法提供了机会。目前的研究评估了间充质前体细胞(MPC)在修复绵羊临界大小的胫骨节段性缺损中的利用。方法:24只成年雌性绵羊接受了手术治疗,造成了3厘米的胫骨干phy端缺损。在一组12只绵羊中,该支架被单独使用,而在第二组中,该支架被接种了MPC。使用锁定的髓内钉使缺损稳定,并在9个月的时间内治愈。愈合的评估包括愈伤组织形成的放射学,计算机断层扫描,新骨量评估,力学特性以及线性骨并置率和组织反应的组织学评估。结果:MPC治疗组在缺损处表现出明显更高的愈伤组织形成水平和骨并置率。讨论:将异基因MPC掺入到合成的空隙填充物中可促进早期修复关键尺寸的骨干节段性缺损,并具有作为增强骨再生的现成疗法的潜力。

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