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Biological and Mechanical Factors Promote the Osteogenesis of Rabbit Artificial Vertebral Laminae: A Comparison Study

机译:生物和机械因素促进兔人工椎体薄膜的骨质发生:比较研究

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摘要

Reconstruction of vertebral laminae without epidural scar formation has been challenging. The success of bone formation depends on the biological and mechanical conditions of the surrounding tissues. In this study, we aimed to investigate the roles of biological and mechanical factors in the osteogenesis of artificial laminae. Mesenchymal stem cells derived from rabbit umbilical cord Wharton's jelly were induced for osteogenic differentiation for 3 weeks before seeding on the hydroxyapatite-collagen I scaffolds to construct the tissue-engineered laminae (TEL). TEL were then implanted into the fifth rabbit lumbar vertebrae in both orthotopic lamina (n=30) and ectopic lamina (n=30) groups. De novo laminae were examined through histological and radiographic analysis in the 2nd, 4th, 8th, 12th, and 16th weeks postimplantation. Our results showed that de novo laminae formed effectively in both groups, and the osteogenic gene expression levels and cancellous microstructure parameters of de novo laminae in the orthotopic lamina group were significantly higher than those in the ectopic lamina group. In conclusion, the biological stimulation of bone defect initiated the early onset osteogenesis, and the mechanical stimulation of cerebrospinal fluid pulsation stress promoted the osteogenesis of de novo laminae.
机译:没有硬膜外瘢痕形成的椎体薄层的重建一直在具有挑战性。骨形成的成功取决于周围组织的生物和机械条件。在这项研究中,我们旨在调查生物学和机械因素在人造薄膜骨内发生的作用。在播种羟基磷灰石 - 胶原蛋白I支架之前3周诱导衍生自兔脐带涡轮果冻的间充质干细胞,以构建组织工程薄膜(Tel)。然后将TEL植入二滴落性薄层(n = 30)和异位晶片(n = 30)基团中的第五兔腰椎。通过在第二次,第4,第8,12和第16周的后期的组织学和射线照相分析检查De Novo Laminae。我们的研究结果表明,在代理薄层组中,在两组中有效地形成的德诺薄层,以及De Novo Laminae的骨薄层薄膜的骨质基因表达水平和消泡微观结构参数显着高于异位薄层基团中的薄膜基团。总之,骨缺损的生物学刺激引发了早期发作骨质发生,脑脊液脉动应力的机械刺激促进了De Novo Lominae的骨开发。

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