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Novel sintering-free scaffolds obtained by additive manufacturing for concurrent bone regeneration and drug delivery: Proof of concept

机译:通过增材制造获得的新型无烧结支架,可同时进行骨再生和药物输送:概念验证

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Advances on the fabrication of sintering-free biphasic calcium phosphate (BCP)atural polymer composite scaffolds using robocasting as additive manufacturing technique are presented in the present work. Inks with high amounts of BCP powders (45 vol%) containing different HA/beta-TCP ratios, in presence of crosslinked polymer, were successfully fine-tuned for extrusion by robocasting. The non-existence of sintering step opened the possibility to obtain drug loaded scaffolds by adding levofloxacin to the extrudable inks. The drug presence induced slightly changes on the rheological behaviour of the inks, more emphasized for the BCP compositions with higher amounts of beta-TCP, and consequently, on the microstructure and on the mechanical properties of the final scaffolds. The strong interaction of beta-TCP with chitosan difficult the preparation of suitable theological inks for printing. Drug delivery studies revealed a fast release of levofloxacin with a high burst of drug within the first 30 min. Levofloxacin loaded samples also presented bacteria growth inhibition ability, proving that antibiotic was not degraded during the fabrication process and its bactericidal efficacy was preserved. From the results obtained, the composite scaffolds containing higher amounts of HA (around 80% HA/20% beta-TCP) constitute a promising bi-functional synthetic bone substitute for simultaneous local bone regeneration and infection treatments.
机译:本工作介绍了使用机器人浇铸作为增材制造技术制造无烧结双相磷酸钙(BCP)/天然聚合物复合支架的进展。在交联聚合物存在的情况下,已成功微调了含有大量具有不同HA /β-TCP比率的BCP粉末(45%(体积))的油墨,以通过机械浇铸法进行挤出。烧结步骤的不存在打开了通过将左氧氟沙星添加到可挤出油墨中来获得载有药物的支架的可能性。药物的存在对油墨的流变行为产生了轻微的变化,对于具有更高含量的β-TCP的BCP组合物,因此在最终支架的微观结构和机械性能上引起了轻微的变化。 β-TCP与壳聚糖的强相互作用难以制备适合印刷的神学油墨。药物递送研究显示左氧氟沙星在头30分钟内快速释放,并大量释放药物。载有左氧氟沙星的样品还具有抑制细菌生长的能力,证明抗生素在制备过程中未降解,并保留了其杀菌功效。从获得的结果来看,包含更高量的HA(约80%HA / 20%beta-TCP)的复合支架构成了一种有前途的双功能合成骨替代品,可以同时进行局部骨再生和感染治疗。

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