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Evaluation of an artificial vertebral body fabricated by a tantalum-coated porous titanium scaffold for lumbar vertebral defect repair in rabbits

机译:钽包覆多孔钛支架制作的人工椎体对兔腰椎缺损修复的评估

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摘要

Tantalum (Ta)-coated porous Ti-6A1-4V scaffolds have better bioactivity than Ti-6A1-4V scaffolds; however, their bioperformance as an artificial vertebral body (AVB) is unknown. In the present study, we combined a Ta-coated Ti-6A1-4V scaffold with rabbit bone marrow stromal cells (BMSCs) for tissue-engineered AVB (TEAVB) construction and evaluated the healing and fusion efficacy of this scaffold in lumbar vertebral defects after corpectomy in rabbits. The results showed that BMSCs on the surface of the Ta-coated Ti scaffolds proliferated better than BMSCs on Ti scaffolds. Histomorphometry showed better bone formation when using Ta-coated TEAVBs than that with Ti TEAVBs at both 8 and 12 weeks after implantation. In addition, the vertical and rotational stiffness results showed that, compared with uncoated TEAVBs, Ta-coated TEAVBs enhanced rabbit lumbar vertebral defect repair. Our findings demonstrate that Ta-coated TEAVBs have better healing and fusion efficacy than Ti TEAVBs in rabbit lumbar vertebral defects, which indicates their good prospects for clinical application.
机译:涂覆钽(Ta)的多孔Ti-6A1-4V支架比Ti-6A1-4V支架具有更好的生物活性。但是,它们作为人工椎体(AVB)的生物性能尚不清楚。在本研究中,我们将Ta涂层的Ti-6A1-4V支架与兔骨髓基质细胞(BMSCs)结合用于组织工程性AVB(TEAVB)的构建,并评估了该支架在术后腰椎缺损中的愈合和融合功效。兔体切除术。结果表明,在Ta包被的Ti支架表面上的BMSCs增殖比在Ti支架上的BMSCs更好。在植入后的8周和12周,使用Ta包被的TEAVB的组织形态测量显示出比Ti TEAVB更好的骨形成。此外,垂直和旋转刚度结果表明,与未涂覆的TEAVB相比,Ta涂覆的TEAVB增强了兔腰椎缺损的修复。我们的发现表明,在兔腰椎缺损中,Ta包被的TEAVB比Ti TEAVB具有更好的愈合和融合功效,这表明它们在临床上具有良好的应用前景。

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