首页> 外文期刊>Journal of the Royal Society Interface >In vitro degradability, bioactivity and primary cell responses to bone cements containing mesoporous magnesium-calcium silicate and calcium sulfate for bone regeneration
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In vitro degradability, bioactivity and primary cell responses to bone cements containing mesoporous magnesium-calcium silicate and calcium sulfate for bone regeneration

机译:对含有介孔硅酸镁钙和硫酸钙的骨水泥的体外降解性,生物活性和原代细胞反应,用于骨再生

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Mesoporous calcium sulfate-based bone cements (m-CSBC) were prepared by introducing mesoporous magnesium-calcium silicate (m-MCS) with specific surface area (410.9 m(2) g(-1)) and pore volume (0.8 cm(3) g(-1)) into calcium sulfate hemihydrate (CSH). The setting time of the m-CSBC was longer with the increase of m-MCS content while compressive strength decreased. The degradation ratio of m-CSBC increased from 48.6 w% to 63.5 w% with an increase of m-MCS content after soaking in Tris-HCl solution for 84 days. Moreover, the m-CSBC containing m-MCS showed the ability to neutralize the acidic degradation products of calcium sulfate and prevent the pH from dropping. The apatite could be induced on m-CSBC surfaces after soaking in SBF for 7 days, indicating good bioactivity. The effects of the m-CSBC on vitamin D-3 sustained release behaviours were investigated. It was found that the cumulative release ratio of vitamin D-3 from the m-CSBC significantly increased with the increase of m-MCS content after soaking in PBS (pH = 7.4) for 25 days. The m-CSBC markedly improved the cell-positive responses, including the attachment, proliferation and differentiation of MC3T3-E1 cells, suggesting good cytocompatibility. Briefly, m-CSBC with good bioactivity, degradability and cytocompatibility might be an excellent biocement for bone regeneration.
机译:中孔硫酸钙基骨水泥(m-CSBC)是通过引入具有比表面积(410.9 m(2)g(-1))和孔体积(0.8 cm(3)的中孔硅酸镁钙(m-MCS)制备的)g(-1))变成半水合硫酸钙(CSH)。随着m-MCS含量的增加,m-CSBC的凝固时间变长,而抗压强度下降。在Tris-HCl溶液中浸泡84天后,随着m-MCS含量的增加,m-CSBC的降解率从48.6 w%增加到63.5 w%。而且,含有m-MCS的m-CSBC显示出中和硫酸钙的酸性降解产物并防止pH下降的能力。在SBF中浸泡7天后,可以在m-CSBC表面诱导磷灰石,表明具有良好的生物活性。研究了m-CSBC对维生素D-3持续释放行为的影响。发现在PBS中浸泡25天后,m-CSBC中维生素D-3的累积释放率随m-MCS含量的增加而显着增加。 m-CSBC明显改善了细胞阳性反应,包括MC3T3-E1细胞的附着,增殖和分化,表明具有良好的细胞相容性。简而言之,具有良好生物活性,可降解性和细胞相容性的m-CSBC可能是骨骼再生的优秀生物水泥。

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