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首页> 外文期刊>Journal of Materials Science >Fabrication of mesoporous calcium silicate/calcium phosphate cement scaffolds with high mechanical strength by freeform fabrication system with micro-droplet jetting
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Fabrication of mesoporous calcium silicate/calcium phosphate cement scaffolds with high mechanical strength by freeform fabrication system with micro-droplet jetting

机译:利用微滴喷射的自由形式制造系统制备具有高机械强度的介孔硅酸钙/磷酸钙水泥支架

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In this study, we explored the feasibility of fabrication bioactive mesoporous calcium silicate/calcium phosphate cements (MCS/CPC) scaffolds with high mechanical strength by Freeform Fabrication System with Micro-Droplet Jetting. After preparation of ordered mesoporous calcium silicate (MCS) powder, ready-to-use MCS/CPC paste was formed by mixing calcium phosphate cement (CPC) powder and MCS powder with the binder polyvinyl alcohol (PVA) aqueous solution at a certain ratio of powder to liquid. MCS/CPC scaffolds with various architectures, pore sizes, and interconnectivity were then directly printed at room temperature using MCS/CPC paste. The mechanical strength, apatite formation, degradation rate, and cytocompatibility of the composite scaffolds were systematically investigated. The results showed that MCS/CPC paste exhibited outstanding printability to form MCS/CPC scaffolds. The hybrid MCS/CPC scaffolds with predefined pore size of 350 mu m showed fast degradation rate, high mechanical strength, and good cytocompatibility. It was indicated that the hybrid MCS/CPC scaffolds might be a promising candidate for critical bone defect repair.
机译:在这项研究中,我们探索了通过微液滴喷射自由成型制造系统制造具有高机械强度的生物活性介孔硅酸钙/磷酸钙水泥(MCS / CPC)支架的可行性。制备有序介孔硅酸钙(MCS)粉末后,将磷酸钙水泥(CPC)粉末和MCS粉末与粘合剂聚乙烯醇(PVA)水溶液按一定比例混合,即可制成现成的MCS / CPC糊剂。粉末变成液体。然后使用MCS / CPC糊剂在室温下直接印刷具有各种结构,孔径和互连性的MCS / CPC支架。系统地研究了复合支架的机械强度,磷灰石形成,降解速率和细胞相容性。结果表明,MCS / CPC糊剂显示出出色的可印刷性,从而形成了MCS / CPC支架。预定孔径为350μm的混合MCS / CPC支架显示出快速的降解速率,高的机械强度和良好的细胞相容性。研究表明,MCS / CPC混合支架可能是关键骨缺损修复的有希望的候选者。

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