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Osteogenic Matrix Cell Sheets Facilitate Osteogenesis in Irradiated Rat Bone

机译:成骨基质细胞片促进辐照大鼠骨的成骨

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摘要

Reconstruction of large bone defects after resection of malignant musculoskeletal tumors is a significant challenge in orthopedic surgery. Extracorporeal autogenous irradiated bone grafting is a treatment option for bone reconstruction. However, nonunion often occurs because the osteogenic capacity is lost by irradiation. In the present study, we established an autogenous irradiated bone graft model in the rat femur to assess whether osteogenic matrix cell sheets improve osteogenesis of the irradiated bone. Osteogenic matrix cell sheets were prepared from bone marrow-derived stromal cells and co-transplanted with irradiated bone. X-ray images at 4 weeks after transplantation showed bridging callus formation around the irradiated bone. Micro-computed tomography images at 12 weeks postoperatively showed abundant callus formation in the whole circumference of the irradiated bone. Histology showed bone union between the irradiated bone and host femur. Mechanical testing showed that the failure force at the irradiated bone site was significantly higher than in the control group. Our study indicates that osteogenic matrix cell sheet transplantation might be a powerful method to facilitate osteogenesis in irradiated bones, which may become a treatment option for reconstruction of bone defects after resection of malignant musculoskeletal tumors.
机译:恶性肌肉骨骼肿瘤切除术后大骨缺损的重建是整形外科的重大挑战。体外自体照射骨移植是骨重建的治疗选择。但是,经常会发生骨不连,因为照射会导致成骨能力丧失。在本研究中,我们在大鼠股骨中建立了自体辐照的骨移植模型,以评估成骨基质细胞片是否可以改善辐照骨的成骨性。从骨髓基质细胞制备成骨基质细胞片,并与经辐照的骨共移植。移植后第4周的X射线图像显示受辐照的骨头周围形成桥接愈伤组织。术后12周的显微计算机断层扫描图像显示,在受辐照的骨头的整个圆周上都有大量的愈伤组织形成。组织学显示受辐照的骨与股骨之间存在骨结合。力学测试表明,受辐照的骨骼部位的破坏力明显高于对照组。我们的研究表明,成骨基质细胞片移植可能是促进受辐照骨中成骨的有效方法,这可能成为恶性肌肉骨骼肿瘤切除术后重建骨缺损的治疗选择。

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