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用于骨再生的生物活性玻璃复合支架的制备及体外性能评价。

Fabrication and in vitro characterization of bioactive glass composite scaffolds for bone regeneration.

机构信息

Institute of Health and Biomedical Innovation, Queensland University of Technology, 60 Musk Avenue, Kelvin Grove, 4059 Brisbane, Australia.

出版信息

Biofabrication. 2013 Dec;5(4):045005. doi: 10.1088/1758-5082/5/4/045005. Epub 2013 Nov 6.

Abstract

Here we fabricate and characterize bioactive composite scaffolds for bone tissue engineering applications. 45S5 Bioglass® (45S5) or strontium-substituted bioactive glass (SrBG) were incorporated into polycaprolactone (PCL) and fabricated into 3D bioactive composite scaffolds utilizing additive manufacturing technology. We show that composite scaffolds (PCL/45S5 and PCL/SrBG) can be reproducibly manufactured with a scaffold morphology highly resembling that of PCL scaffolds. Additionally, micro-CT analysis reveals BG particles were homogeneously distributed throughout the scaffolds. Mechanical data suggested that PCL/45S5 and PCL/SrBG composite scaffolds have higher compressive Young's modulus compared to PCL scaffolds at similar porosity (∼75%). After 1 day in accelerated degradation conditions using 5M NaOH, PCL/SrBG, PCL/45S5 and PCL lost 48.6 ± 3.8%, 12.1 ± 1% and 1.6 ± 1% of the original mass, respectively. In vitro studies were conducted using MC3T3 cells under normal and osteogenic conditions. All scaffolds were shown to be non-cytotoxic, and supported cell attachment and proliferation. Our results also indicate that the inclusion of bioactive glass (BG) promotes precipitation of calcium phosphate on the scaffold surfaces which leads to earlier cell differentiation and matrix mineralization when compared to PCL scaffolds. However, as indicated by alkaline phosphatase activity, no significant difference in osteoblast differentiation was found between PCL/45S5 and PCL/SrBG scaffolds. These results suggest that PCL/45S5 and PCL/SrBG composite scaffolds show potential as next generation bone scaffolds.

摘要

我们在此制造和表征用于骨组织工程应用的生物活性复合支架。将 45S5 生物玻璃(45S5)或锶取代的生物活性玻璃(SrBG)掺入聚己内酯(PCL)中,并利用增材制造技术将其制成 3D 生物活性复合支架。我们表明,复合支架(PCL/45S5 和 PCL/SrBG)可以可重复地制造,其支架形态与 PCL 支架非常相似。此外,微 CT 分析表明 BG 颗粒均匀分布在支架中。力学数据表明,与具有相似孔隙率(约 75%)的 PCL 支架相比,PCL/45S5 和 PCL/SrBG 复合支架具有更高的压缩杨氏模量。在使用 5M NaOH 的加速降解条件下 1 天后,PCL/SrBG、PCL/45S5 和 PCL 分别损失了原始质量的 48.6±3.8%、12.1±1%和 1.6±1%。在正常和成骨条件下,使用 MC3T3 细胞进行了体外研究。所有支架均无细胞毒性,并支持细胞附着和增殖。我们的结果还表明,生物活性玻璃(BG)的加入促进了支架表面磷酸钙的沉淀,与 PCL 支架相比,这导致细胞更早分化和基质矿化。然而,如碱性磷酸酶活性所示,在成骨细胞分化方面,PCL/45S5 和 PCL/SrBG 支架之间没有发现明显差异。这些结果表明,PCL/45S5 和 PCL/SrBG 复合支架具有作为下一代骨支架的潜力。

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