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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Bioactivity and Mechanical Stability of 45S5 Bioactive Glass Scaffolds Based on Natural Marine Sponges
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Bioactivity and Mechanical Stability of 45S5 Bioactive Glass Scaffolds Based on Natural Marine Sponges

机译:基于天然海洋海绵的45S5生物活性玻璃支架的生物活性和机械稳定性

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摘要

Bioactive glass (BG) based scaffolds (45S5 BG composition) were developed by the replica technique using natural marine sponges as sacrificial templates. The resulting scaffolds were characterized by superior mechanical properties (compression strength up to 4 MPa) compared to conventional BG scaffolds prepared using polyurethane (PU) packaging foam as a template. This result was ascribed to a reduction of the total scaffold porosity without affecting the pore interconnectivity (> 99%). It was demonstrated that the reduction of total porosity did not affect the bioactivity of the BG-based scaffolds, tested by immersion of scaffolds in simulated body fluid (SBF). After 1 day of immersion in SBF, a homogeneous CaP deposit on the surface of the scaffolds was formed, which evolved over time into carbonate hydroxyapatite (HCA). Moreover, the enhanced mechanical properties of these scaffolds were constant over time in SBF; after an initial reduction of the maximum compressive strength upon 7 days of immersion in SBF (to 1.2 +/- 0.2 MPa), the strength values remained almost constant and higher than those of BG-based scaffolds prepared using PU foam (< 0.05 MPa). Preliminary cell culture tests with Saos-2 osteoblast cell line, namely direct and indirect tests, demonstrated that no toxic residues remained from the natural marine sponge templates and that cells were able to proliferate on the scaffold surfaces.
机译:通过使用天然海洋海绵作为牺牲模板的仿制技术开发了基于生物活性玻璃(BG)的支架(45S5 BG组合物)。与使用聚氨酯(PU)包装泡沫塑料作为模板制备的常规BG支架相比,所得支架的特点是具有优异的机械性能(压缩强度高达4 MPa)。该结果归因于总支架孔隙率的降低而不影响孔的互连性(> 99%)。已经证明,通过将支架浸入模拟体液(SBF)中进行测试,总孔隙率的降低不会影响基于BG的支架的生物活性。在SBF中浸泡1天后,在支架表面上形成了均匀的CaP沉积物,该沉积物随时间演变为碳酸盐羟基磷灰石(HCA)。此外,这些支架的增强的机械性能在SBF中随着时间的推移是恒定的。在SBF中浸泡7天后最大抗压强度开始降低(至1.2 +/- 0.2 MPa)后,强度值几乎保持不变,高于使用PU泡沫(<0.05 MPa)制备的BG基支架的强度值。 。使用Saos-2成骨细胞系进行的初步细胞培养测试(即直接测试和间接测试)表明,天然海洋海绵模板没有残留任何有毒残留物,并且细胞能够在支架表面上增殖。

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