首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Enhanced bone cell functions on poly(ε-caprolactone) triacrylate networks grafted with polyhedral oligomeric silsesquioxane nanocages
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Enhanced bone cell functions on poly(ε-caprolactone) triacrylate networks grafted with polyhedral oligomeric silsesquioxane nanocages

机译:多面体低聚倍半硅氧烷纳米笼接枝的聚(ε-己内酯)三丙烯酸酯网络上的骨细胞功能增强

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摘要

Poly(ε-caprolactone) triacrylate (PCLTA) developed in our laboratory is a photo-crosslinkable, injectable, and biodegradable polymeric biomaterial for diverse tissue engineering applications. To engineer its physical properties for bone regeneration, we incorporated PCLTA networks with a photo-reactive methacryl isobutyl polyhedral oligomeric silsesquioxane (POSS), which is a silicon-based monomer with a nano-sized cage. Homogeneous nanohybrid networks were prepared by photo-crosslinking POSS with two PCLTAs having molecular weights of ~7000 and ~20,000 g/mol at the POSS weight compositions (?_(POSS)) of 0-20%. The lower-molecular-weight PCLTA resulted in amorphous networks while the higher one resulted in semi-crystalline networks. POSS nanocages tethered in the PCLTA networks greatly enhanced the mechanical and rheological properties, but did not significantly alter the surface wettability and the capability of adsorbing serum proteins from cell culture media. Better mouse preosteoblastic MC3T3-E1 cell attachment, spreading, and proliferation were found on the stiffer PCLTA20k networks than on the PCLTA7k ones, and on the networks with ?_(POSS) of 10-20% than the networks containing no POSS. Mineralization of MC3T3-E1 cell cultured for two weeks showed a significantly higher alkaline phosphatase activity and more mineralized nodules on the PCLTA20k networks with ?_(POSS) of 10-20%, in correlation with their enhanced mechanical properties. The present results indicated that this series of nanohybrid PCLTA/POSS networks with improved mechanical properties and osteoconductivity has great potential as scaffolding materials for bone repair and regeneration.
机译:我们实验室开发的聚(ε-己内酯)三丙烯酸酯(PCLTA)是一种可光交联,可注射和可生物降解的聚合物生物材料,适用于多种组织工程应用。为了设计其用于骨骼再生的物理特性,我们将PCLTA网络与光反应性甲基丙烯酸异丁酯多面体低聚倍半硅氧烷(POSS)结合在一起,后者是一种具有纳米尺寸笼子的硅基单体。均质的纳米杂化网络是通过将POSS与两种PCLTA光交联来制备的,两种PCLTA的POSS重量组成(η_(POSS))为0-20%,分子量分别约为7000和20,000 g / mol。较低分子量的PCLTA导致非晶网络,而较高的PCLTA导致半晶体网络。拴在PCLTA网络中的POSS纳米笼极大地增强了机械和流变性能,但并未显着改变表面润湿性和从细胞培养基吸附血清蛋白的能力。在较坚硬的PCLTA20k网络上,与在PCLTA7k网络上相比,在更坚硬的PCLTA20k网络上发现了更好的小鼠前成骨细胞MC3T3-E1细胞附着,扩散和增殖,在与不包含POSS的网络相比,Φ_(POSS)为10-20%的网络上发现了更好的小鼠。培养两周的MC3T3-E1细胞的矿化作用在PCLTA20k网络上具有明显更高的碱性磷酸酶活性和更多的矿化结节,δ_(POSS)为10-20%,与其增强的机械性能相关。目前的结果表明,具有改善的机械性能和骨传导性的该系列纳米杂化PCLTA / POSS网络具有巨大的潜力,可作为骨修复和再生的支架材料。

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