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In Vitro evaluation of silicon-containing apatite fiber scaffolds for bone tissue engineering

机译:用于骨组织工程的含硅磷灰石纤维支架的体外评价

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The aim of the present investigation was to examine Si release from the silicon-containing apatite fiber scaffold (Si-AFS) and the biocompatibility of the Si-AFS. We have successfully synthesized silicon-containing apatite fibers (Si-AF) by a homogenous precipitation method. Three-dimcnsional Si-AFS were fabricated using these Si-AFs. The concentrations of Si in the starting solution were 0 (AF) and 0.8 (0.8Si-AF) mass%. The 0.8Si-AFS1000 were fabricated by firing Si-AF slurry compacts (carbon/Si-AF [w/w] ratio: 10/1) at 1300 °C for 5 h. Solubility experiments were carried out in 0.05 mol/dm~3 Tris-HCl buffer solutions at pH 7.30 using 0.8Si-AFS1000 (porosity: ~98%), together with Si-free AFS1000 (~98%) for 21 days. The Ca~(2+), PO_4~(3-) and SiO_4~(4-) concentrations in the solution were determined by inductively-coupled plasma atomic emission spectrometry (ICP-AES). The biocompatibility of the Si-AFS was examined in vitro using osteoblastic cell, MC3T3-E1 for 21 days. The results of the ICP-AES analysis indicated that the amount of SiO_4~(4-) ions released from 0.8Si-AFS1000 rapidly increased at 1 day, and then the released SiO_4~(4-) ions remained constant over a period for 21 days. The cells seeded on/in the 0.8Si-AFS1000 well-proliferated as compared to those on/in the AFS1000. Consequently, we can conedlude that the 0.8Si-AFS offers as a potential novel scaffold material, creating a three-dimensional eell culture environment.
机译:本发明研究的目的是从含硅磷灰石纤维支架(Si-AF)和Si-AFS的生物相容性来检查Si释放。我们通过均匀的沉淀法成功地合成了含硅磷灰石纤维(Si-AF)。使用这些Si-AFS制造三倍二十次SI-AF。起始溶液中Si的浓度为0(AF)和0.8(0.8Si-AF)质量%。 0.8SI-AFS1000通过在1300℃下烧制Si-AF浆料块(碳/ Si-AF [W / W]比率:10/1)5小时来制造。使用0.8Si-AFS1000(孔隙率:〜98%)在pH 7.30的0.05mol / dm〜3 Tris-HCl缓冲溶液中在0.05mol / dm〜3 Tris-HCl缓冲溶液中进行溶解度实验,与Si-AFS1000(〜98%)一起进行21天。通过电感耦合等离子体原子发射光谱法(ICP-AES)测定溶液中的Ca〜(2+),Po_4〜(3-)和SiO_4〜(4-)浓度。使用成骨细胞,MC3T3-E1在体外检查Si-AFS的生物相容性21天。 ICP-AES分析的结果表明,从0.8SI-AFS1000释放的SiO_4〜(4-)离子的量在1天迅速增加,然后释放的SiO_4〜(4-)离子在一段时间内保持恒定天。与AFS1000上的/在/ IN / IN / IN / IN / IN / IN / IN / IN IN IN IN IN井中加剧的细胞接种/在0.8SI-AFS1000中。因此,我们可以表明0.8SI-AFS作为潜在的新型支架材料,产生三维EELL培养环境。

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