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Degradability bioactivity and osteogenesis of biocomposite scaffolds of lithium-containing mesoporous bioglass and mPEG-PLGA-b-PLL copolymer

机译:含锂介孔生物玻璃和mPEG-PLGA-b-PLL共聚物的生物复合支架的降解性生物活性和成骨性

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摘要

Biocomposite scaffolds of lithium (Li)-containing mesoporous bioglass and monomethoxy poly(ethylene glycol)-poly(D,L-lactide-co-glycolide)-poly(L-lysine) (mPEG-PLGA-b-PLL) copolymer were fabricated in this study. The results showed that the water absorption and degradability of Li-containing mesoporous bioglass/mPEG-PLGA-b-PLL composite (l-MBPC) scaffolds were obviously higher than Li-containing bioglass/mPEG-PLGA-b-PLL composite (l-BPC) scaffolds. Moreover, the apatite-formation ability of l-MBPC scaffolds was markedly enhanced as compared with l-BPC scaffolds, indicating that l-MBPC scaffolds containing mesoporous bioglass exhibited good bioactivity. The cell experimental results showed that cell attachment, proliferation, and alkaline phosphatase activity of MC3T3-E1 cells on l-MBPC scaffolds were remarkably improved as compared to l-BPC scaffolds. In animal experiments, the histological elevation results revealed that l-MBPC scaffolds significantly promoted new bone formation, indicating good osteogenesis. l-MBPC scaffolds with improved properties would be an excellent candidate for bone tissue repair.
机译:制备了含锂(Li)的介孔生物玻璃和单甲氧基聚(乙二醇)-聚(D,L-丙交酯-乙交酯)-聚(L-赖氨酸)(mPEG-PLGA-b-PLL)共聚物的生物复合支架。在这个研究中。结果表明,含Li的介孔生物玻璃/ mPEG-PLGA-b-PLL复合材料(l-MBPC)支架的吸水率和降解性明显高于含Li的生物玻璃/ mPEG-PLGA-b-PLL复合材料(l-MBPC)支架。 BPC)支架。此外,与1-BPC支架相比,1-MBPC支架的磷灰石形成能力显着增强,表明含有中孔生物玻璃的1-MBPC支架表现出良好的生物活性。细胞实验结果表明,与1-BPC支架相比,MC3-T3-E1细胞在1-MBPC支架上的细胞附着,增殖和碱性磷酸酶活性显着提高。在动物实验中,组织学升高结果显示,l-MBPC支架显着促进了新的骨形成,表明良好的成骨作用。具有改进性质的1-MBPC支架将是骨组织修复的极好的候选者。

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