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Bone Substitute Effect on Vascularization and Bone Remodeling after Application of phVEGF165 Transfected BMSC

机译:应用phVEGF165转染的BMSC后骨骼替代对血管化和骨骼重塑的影响

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摘要

VEGF (vascular endothelial growth factor) promotes vascularization and remodeling of bone substitutes. The aim of this study was to examine the effect of distinct resorbable ceramic carriers on bone forming capacities of VEGF transfected bone marrow stromal cells (BMSC). A critical size defect of the radius in rabbits was filled either by a low surface scaffold called beta-TCP (tricalciumphsphate) or the high surface scaffold CDHA (calcium deficient hydroxy-apatite) loaded with autologous BMSC, which were either transfected with a control plasmid or a plasmid coding for phVEGF165. They were compared to unloaded scaffolds. Thus, six treatment groups (n = 6 in each group) were followed by X-ray over 16 weeks. After probe retrieval, the volume of new bone was measured by micro-CT scans and vascularization was assessed in histology. While only minor bone formation was found in both carriers when implanted alone, BMSC led to increased osteogenesis in both carriers. VEGF promoted vascularization of the scaffolds significantly in contrast to BMSC alone. Bone formation was increased in the beta-TCP group, whereas it was inhibited in the CDHA group that showed faster scaffold degradation. The results indicate that the interaction of VEGF transfected BMSC with resorbable ceramic carrier influences the ability to promote bone healing.
机译:VEGF(血管内皮生长因子)促进骨骼替代物的血管生成和重塑。这项研究的目的是检查不同的可吸收陶瓷载体对VEGF转染的骨髓基质细胞(BMSC)的骨形成能力的影响。兔the骨的一个关键大小缺陷是用称为β-TCP(磷酸三钙)的低表面支架或装有自体BMSC的高表面支架CDHA(钙缺乏的羟基磷灰石)填充,后者用对照质粒转染或编码phVEGF165的质粒。将它们与卸载的脚手架进行了比较。因此,六个治疗组(每组n = 6)在16周内接受X线检查。取回探针后,通过micro-CT扫描测量新骨的体积,并在组织学中评估血管形成。当单独植入两种载体时,仅发现较小的骨形成,而BMSC导致两种载体中成骨的增加。与单独的BMSC相比,VEGF显着促进了支架的血管化。 β-TCP组的骨形成增加,而CDHA组则抑制骨生长,骨架降解更快。结果表明,VEGF转染的BMSC与可吸收的陶瓷载体的相互作用影响了促进骨愈合的能力。

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