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Design of oligolactone-based scaffolds for bone tissue engineering.

机译:用于骨组织工程的寡内酯支架设计。

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摘要

Novel difunctional oligolactone macromers have been synthesized by ring-opening oligomerization of various lactones (L-lactide, glycolide, p-dioxanone) in the presence of suitable diols (propane-1,2-diol, dianhydro-D-glucitol) and subsequent endcapping of the formed oligolactones with methacrylate moieties. Based on these macromers, two fabrication procedures were developed to fabricate highly porous scaffolds and the material properties including in vitro biodegradation behaviour of the resulting polymeric scaffolds were investigated. Preliminary in vitro studies on the cytocompatibility of the fabricated scaffolds and on osteoblast cultivation on the optimized polymeric materials demonstrated that the oligolactide based polymer networks possess an excellent biocompatibility and that they are promising candidates as scaffolds in bone tissue engineering.
机译:在合适的二醇(丙烷-1,2-二醇、二氢-D-山梨糖醇)存在下,通过各种内酯(L-丙交酯、乙交酯、对二氧六环酮)的开环寡聚化,以及随后用甲基丙烯酸酯部分对形成的寡内酯进行端盖,合成了新型双官能寡内酯大分子。基于这些大分子分子,开发了两种制造工艺来制造高孔支架,并研究了所得聚合物支架的材料特性,包括体外生物降解行为。对所制备支架的细胞相容性和优化聚合物材料上成骨细胞培养的初步体外研究表明,基于寡丙肽的聚合物网络具有优异的生物相容性,并且它们是骨组织工程中很有前途的支架候选者。

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