首页> 美国卫生研究院文献>International Journal of Nanomedicine >Mesoporous calcium–silicon xerogels with mesopore size and pore volume influence hMSC behaviors by load and sustained release of rhBMP-2
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Mesoporous calcium–silicon xerogels with mesopore size and pore volume influence hMSC behaviors by load and sustained release of rhBMP-2

机译:具有中孔尺寸和孔体积的介孔钙硅干凝胶通过rhBMP-2的负载和持续释放影响hMSC行为

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摘要

Mesoporous calcium–silicon xerogels with a pore size of 15 nm (MCS-15) and pore volume of 1.43 cm3/g were synthesized by using 1,3,5-mesitylene (TMB) as the pore-expanding agent. The MCS-15 exhibited good degradability with the weight loss of 50 wt% after soaking in Tris-HCl solution for 56 days, which was higher than the 30 wt% loss shown by mesoporous calcium–silicon xerogels with a pore size of 4 nm (MCS-4). The pore size and pore volume of MCS-15 had significant influences on load and release of recombinant human bone morphogenetic protein-2 (rhBMP-2). The MCS-15 had a higher capacity to encapsulate a large amount of rhBMP-2; it could adsorb 45 mg/g of rhBMP-2 in phosphate-buffered saline after 24 hours, which was more than twice that with MCS-4 (20 mg/g). Moreover, the MCS-15 system exhibited sustained release of rhBMP-2 as compared with MCS-4 system (showing a burst release). The MCS-15/rhBMP-2 system could promote the proliferation and differentiation of human mesenchymal stem cells, showing good cytocompatibility and bioactivity. The results indicated that MCS-15, with larger mesopore size and higher pore volume, might be a promising carrier for loading and sustained release of rhBMP-2, which could be used as bone repair material with built-in osteoinduction function in bone reconstruction.
机译:以1,3,5-均三甲苯(TMB)为孔,合成孔径为15 nm(MCS-15),孔体积为1.43 cm 3 / g的介孔钙硅干凝胶-膨胀剂。在Tris-HCl溶液中浸泡56天后,MCS-15表现出良好的降解性,重量损失为50 wt%,高于孔径为4 nm的介孔钙硅干凝胶所显示的30 wt%的损失( MCS-4)。 MCS-15的孔径和孔体积对重组人骨形态发生蛋白2(rhBMP-2)的负载和释放有显着影响。 MCS-15具有更高的封装大量rhBMP-2的能力; 24小时后,它可以在磷酸盐缓冲液中吸附45 mg / g rhBMP-2,是MCS-4(20 mg / g)的两倍多。而且,与MCS-4系统相比,MCS-15系统展现出rhBMP-2的持续释放(显示出突发释放)。 MCS-15 / rhBMP-2系统可以促进人间充质干细胞的增殖和分化,显示出良好的细胞相容性和生物活性。结果表明,MCS-15具有较大的中孔尺寸和较大的孔体积,可能是rhBMP-2负载和持续释放的有前途的载体,可以用作具有内置骨诱导功能的骨修复材料。

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