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Human Bone Marrow Mesenchymal Stromal Cells Promote Bone Regeneration in a Xenogeneic Rabbit Model: A Preclinical Study

机译:人骨髓间质基质细胞在异种兔模型中促进骨再生:临床前研究

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摘要

Significant research efforts have been undertaken during the last decades to treat musculoskeletal disorders and improve patient's mobility and quality of life. The goal is the return of function as quickly and completely as possible. Cellular therapy has been increasingly employed in this setting. The design of this study was focused on cell-based alternatives. The present study aimed at investigating the bone regeneration capacity of xenogeneic human bone marrow-derived mesenchymal stromal cell (hMSC) implantation with tricalcium phosphate (TCP) granules in an immunocompetent rabbit model of critical-size bone defects at the femoral condyles. Two experimental groups, TCP and hMSC + TCP, were compared. Combination of TCP and hMSC did not affect cell viability or osteogenic differentiation. We also observed significantly higher bone regeneration in vivo in the hMSC + TCP group, which also displayed better TCP osteointegration. Also, evidence of hMSC contribution to a better TCP osteointegration was noticed. Finally, no inflammatory reaction was detected, besides the xenotransplantation of human cells into an immunocompetent recipient. In summary, hMSC combined with TCP granules is a potential combination for bone regeneration purposes that provides better preclinical results compared to TCP alone.
机译:在过去的几十年中,已经进行了重要的研究工作,以治疗肌肉骨骼疾病并改善患者的活动能力和生活质量。目标是尽快,完全地返回功能。在这种情况下,越来越多地采用细胞疗法。这项研究的设计侧重于基于单元的替代方案。本研究的目的是研究在具有免疫功能的兔股骨dy骨临界大小缺损模型中,异种人源骨髓间充质基质细胞(hMSC)植入磷酸三钙(TCP)颗粒的骨再生能力。比较了两个实验组,TCP和hMSC + TCP。 TCP和hMSC的组合不影响细胞生存力或成骨分化。我们还观察到hMSC + TCP组的体内骨再生明显更高,这也显示出更好的TCP骨整合。另外,还发现了hMSC有助于改善TCP骨整合的证据。最后,除了将人细胞异种移植到具有免疫能力的受体中外,没有检测到炎症反应。总之,与单独的TCP相比,hMSC与TCP颗粒相结合是用于骨再生的潜在组合,可提供更好的临床前结果。

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