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首页> 外文期刊>Spine >Fusion performance of low-dose recombinant human bone morphogenetic protein 2 and bone marrow-derived multipotent stromal cells in biodegradable scaffolds: a comparative study in a large animal model of anterior lumbar interbody fusion.
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Fusion performance of low-dose recombinant human bone morphogenetic protein 2 and bone marrow-derived multipotent stromal cells in biodegradable scaffolds: a comparative study in a large animal model of anterior lumbar interbody fusion.

机译:低剂量重组人骨形态发生蛋白2与骨髓来源的多能基质细胞在可生物降解支架中的融合性能:在前腰椎椎间融合的大型动物模型中的比较研究。

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STUDY DESIGN: A large animal study comparing interbody fusion of a bioresorbable scaffold loaded with either low-dose recombinant human bone morphogenetic protein 2 (rhBMP-2) or bone marrow-derived multipotent stromal cells (BMSCs). OBJECTIVE: To compare the quality of fusion resulting from implantation of medical grade poly (epsilon-caprolactone)-20% tricalcium phosphate (mPCL/TCP) scaffolds and two different bone growth stimulating agents. SUMMARY OF BACKGROUND DATA: Nondegradable cages have been used for interbody fusion with good results. However, the overall advantage of lifelong implantation of a nondegradable device remains a subject of ongoing debate. The use of bioresorbable scaffolds might offer superior alternatives. In this study, we evaluated the quality of fusion obtained with two potential bone graft substitutes. METHODS: Eleven Yorkshire pigs underwent a bisegmental (L2/L3; L4/L5) anterior lumbar interbody fusion (ALIF) in four groups, namely: (1) mPCL/TCP + 0.6 mg rhBMP-2; (2) mPCL/TCP + BMSCs; (3) mPCL/TCP (negative control); and (4) autologous bone grafts (positive control). RESULTS. The mean radiographic scores at 9 months were 3.0, 1.7, 1.0, and 1.8 for groups 1 to 4, respectively. The bone volume fraction of group 1 was two-folds higher than group 2. Histology, micro-computed tomographic scanning and biomechanical evaluation demonstrated solid and comparable fusion between groups 1 and 4. However, group 2 showed inferior quality of fusion when compared with groups 1 and 4 while group 3 showed no fusion even at 9 months. In addition, there was no evidence of implant rejection, chronic inflammation or any other complications. CONCLUSION: mPCL/TCP scaffolds loaded with low-dose rhBMP-2 is comparable to autograft bone as a bone graft substitute in this large animal ALIF model. Although BMSCs lagged behind autograft bone and rhBMP-2, evidence of bone ingrowth in this group warrants further investigation. Our results suggest that mPCL/TCP scaffolds loaded with rhBMP-2 or BMSCs may be a viable alternative to conventional cages and autograft bone.
机译:研究设计:一项大型动物研究,比较了负载有低剂量重组人骨形态发生蛋白2(rhBMP-2)或骨髓源性多能基质细胞(BMSC)的生物可吸收支架的体内融合。目的:比较植入医用级聚(ε-己内酯)-20%磷酸三钙(mPCL / TCP)支架和两种不同骨生长刺激剂的融合质量。背景数据概述:不可降解的笼子已用于椎间融合,效果良好。然而,终生植入不可降解装置的整体优势仍然是不断争论的主题。使用可生物吸收的支架可能会提供更好的选择。在这项研究中,我们评估了两种潜在的骨移植替代物获得的融合质量。方法:11只约克郡猪在四组中接受了双节段(L2 / L3; L4 / L5)前腰椎椎间融合术(ALIF),即:(1)mPCL / TCP + 0.6 mg rhBMP-2; (2)mPCL / TCP + BMSC; (3)mPCL / TCP(负控制); (4)自体骨移植(阳性对照)。结果。第1至4组在9个月时的平均影像学评分分别为3.0、1.7、1.0和1.8。第1组的骨体积分数比第2组高两倍。组织学,显微计算机断层扫描和生物力学评估表明,第1组和第4组之间的融合牢固且相当。但是,与第2组相比,第2组的融合质量较差1和4,而第3组甚至在9个月时也没有融合。此外,没有证据表明植入物被排斥,慢性炎症或任何其他并发症。结论:在这种大型动物ALIF模型中,低剂量rhBMP-2负载的mPCL / TCP支架与自体移植骨相比具有可比性。尽管骨髓间充质干细胞落后于自体骨和rhBMP-2,但该组骨向内生长的证据值得进一步研究。我们的结果表明,装有rhBMP-2或BMSC的mPCL / TCP支架可能是常规笼和自体骨的可行替代品。

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