首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Supplementation with 45S5 Bioactive Glass Reduces In Vivo Resorption of the β-Tricalcium-Phosphate-Based Bone Substitute Material Vitoss
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Supplementation with 45S5 Bioactive Glass Reduces In Vivo Resorption of the β-Tricalcium-Phosphate-Based Bone Substitute Material Vitoss

机译:补充45S5生物活性玻璃可减少基于β-磷酸三钙的骨替代材料Vitos的体内吸收

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摘要

Compared to other materials such as 45S5 bioactive glass (BG), β-tricalcium phosphate (β-TCP)-based bone substitutes such as Vitoss show limited material-driven stimulation of osteogenesis and/or angiogenesis. The unfavorable degradation kinetics of β-TCP-based bone substitutes may result in an imbalance between resorption and osseous regeneration. Composite materials like Vitoss BA (Vitoss supplemented with 20 wt % 45S5-BG particles) might help to overcome these limitations. However, the influence of BG particles in Vitoss BA compared to unsupplemented Vitoss on osteogenesis, resorption behavior, and angiogenesis is not yet described. In this study, Vitoss and Vitoss BA scaffolds were seeded with human mesenchymal stromal cells before subcutaneous implantation in immunodeficient mice for 10 weeks. Scaffold resorption was monitored by micro-computed tomography, while osteoid formation and vascularization were assessed by histomorphometry and gene expression analysis. Whilst slightly more osteoid and improved angiogenesis were found in Vitoss BA, maturation of the osteoid was more advanced in Vitoss scaffolds. The volume of Vitoss implants decreased significantly, combined with a significantly increased presence of resorbing cells, whilst the volume remained stable in Vitoss BA scaffolds. Future studies should evaluate the interaction of 45S5-BG with resorbing cells and bone precursor cells in greater detail to improve the understanding and application of β-TCP/45S5-BG composite bone substitute materials.
机译:与其他材料(例如45S5生物活性玻璃(BG))相比,基于β-磷酸三钙(β-TCP)的骨骼替代物(例如Vitoss)显示出有限的材料驱动的成骨和/或血管生成刺激。基于β-TCP的骨替代物的不良降解动力学可能导致吸收与骨再生之间的不平衡。诸如Vitoss BA(Vitoss补充有20 wt%的45S5-BG颗粒)的复合材料可能有助于克服这些限制。但是,尚未描述Vitoss BA中的BG颗粒与未补充Vitoss相比对成骨,吸收行为和血管生成的影响。在这项研究中,将Vitoss和Vitoss BA支架植入人间充质基质细胞,然后在免疫缺陷小鼠中皮下植入10周。支架吸收通过微型计算机断层扫描监测,而类骨质形成和血管形成则通过组织形态学和基因表达分析进行评估。尽管在Vitoss BA中发现了更多的类骨质和改善的血管生成,但在Vitoss支架中类骨质的成熟更为先进。 Vitos植入物的体积显着减少,再吸收细胞的存在显着增加,而在Vitoss BA支架中体积保持稳定。未来的研究应更详细地评估45S5-BG与吸收细胞和骨前体细胞的相互作用,以增进对β-TCP/ 45S5-BG复合骨替代材料的理解和应用。

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