Membrane Formed Around Liquid Nitrogen-treated Bone Promotes Osteogenesis and Revitalization in a Rat Model

化学 软骨内骨化 松质骨 骨形态发生蛋白 血管内皮生长因子 骨钙素 骨形态发生蛋白2 解剖 软骨 内科学 生物 医学 碱性磷酸酶 血管内皮生长因子受体 生物化学 基因 体外
作者
Yohei Asano,Norio Yamamoto,Katsuhiro Hayashi,Shinji Miwa,Takashi Higuchi,YUTA TANIGUCHI,T Nojima,Satoru Demura,Hiroyuki Tsuchiya
出处
期刊:Anticancer Research [Anticancer Research USA Inc.]
卷期号:44 (7): 2887-2897
标识
DOI:10.21873/anticanres.17101
摘要

Background/Aim: This study aimed to investigate the structure and functions of the membrane formed around liquid nitrogen-treated bones in the osteogenesis and revitalization of frozen bone using a rat model. Materials and Methods: Segmental defects were created in femurs of rats, and resected bones treated with liquid nitrogen [frozen bone (FB) group, n=20] or polymethylmethacrylate (PMMA group; n=20) were implanted as spacers. Histological analysis and quantitative real-time reverse transcription-polymerase chain reaction (qRT-PCR) of the membrane around each spacer were performed for bone morphogenetic protein 2 (BMP2), transforming growth factor (TGF)-β1, and vascular endothelial growth factor (VEGF). Furthermore, in week 2, spacers were removed from both groups (n=5 each), and autologous cancellous bone (ACB) harvested from the ilium was grafted into the defect. Radiological analysis was performed until bone union was observed. Results: In week 2, similar two-layered membrane structures were observed in both groups; these matured into fibrous tissues over time. At each evaluation point, qRT-PCR showed higher expression of all factors in the FB than in the PMMA group. In the ACB graft model, the mean period to bone union and new bone volume were significantly shorter and greater, respectively, in the FB. Chondrocytes invaded the osteotomy site from the membrane in the FB, suggesting that endochondral ossification may occur and be related to osteogenesis. Additionally, fibroblasts and capillaries in the membrane invaded the surface of treated bone in week 2, and osteocytes were observed around them in weeks 6 and 8. Conclusion: Fibrous membranous tissue formed around liquid nitrogen-treated bones may be vital for osteogenesis and revitalization of frozen bones.

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