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首页> 外文期刊>RSC Advances >Fabrication and characterization of polymer–ceramic nanocomposites containing pluronic F127 immobilized on hydroxyapatite nanoparticles
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Fabrication and characterization of polymer–ceramic nanocomposites containing pluronic F127 immobilized on hydroxyapatite nanoparticles

机译:固定在羟基磷灰石纳米粒子上固定的Pluronic F127的聚合物 - 陶瓷纳米复合材料的制备与表征

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Functionalized hydroxyapatite nanoparticles (HA-F127) were synthesized by immobilizing pluronic F127 onto hydroxyapatite nanoparticles (HA). Successful grafting of F127 was evaluated by FTIR, TGA and TEM. XRD was used to study the crystalline structure of neat and functionalized nanoparticles. Grafted F127 chains on the surface of HA formed a core–shell structure. Furthermore, immobilization of F127 chains on the HA surface decreased the agglomeration of modified nanoparticles and improved their dispersion. In the next step, the HA-F127 and unmodified HA were introduced into a PCL/P123 electrospun substrate, and nanocomposites containing 4 wt% nano-filler were obtained. The corresponding properties of these polymer/ceramic nanocomposites, including morphology, thermodynamics, mechanics and biocompatibility, were evaluated. HA-F127/PCL/P123 showed superior mechanical performance, crystallinity percentage and thermal stability. The aforementioned improvements were primarily ascribed to a uniform dispersion of HA-F127 and strong interfacial adhesion between filler and matrix, which resulted from superior chain entanglements and interfacial crystallization of modified HA in the polymer substrate. Nanocomposites containing modified HA organized into a reliable platform for adhesion and proliferation of mouse L929 fibroblast cells. Finally, to analyze the interfacial interactions between phases, molecular dynamics simulation was applied. It was found that strong interfacial interactions exist between HA-F127 and PCL/P123. Consequently, HA-F127/PCL/P123 nanofibrous scaffolds can be considered as a promising candidate for tissue engineering applications.
机译:通过将Pluronic F127固定到羟基磷灰石纳米颗粒(HA)上来合成官能化羟基磷灰石纳米颗粒(HA-F127)。通过FTIR,TGA和TEM评估F127的成功接枝。 XRD用于研究整齐官能化纳米颗粒的结晶结构。 HA表面上的接枝F127链形成了核心壳结构。此外,对HA表面上的F127链的固定下降降低了改性纳米颗粒的附聚并改善了它们的分散体。在下一步中,将HA-F127和未改性的HA引入PCL / P123电纺基底中,得到含有4wt%纳米填料的纳米复合材料。评估这些聚合物/陶瓷纳米复合材料的相应性质,包括形态,热力学,力学和生物相容性。 HA-F127 / PCL / P123显示出优异的机械性能,结晶百分比和热稳定性。上述改进主要归因于HA-F127的均匀分散,填充剂和基质之间的强界面粘附,这是由聚合物基材中的改性HA的优异链缠结和界面结晶产生的。纳米复合材料含有改性的HA组织成可靠性平台,用于小鼠L929成纤维细胞的粘附和增殖。最后,为了分析相之间的界面相互作用,施加分子动力学模拟。发现HA-F127和PCL / P123之间存在强的界面相互作用。因此,HA-F127 / PCL / P123纳米纤维支架可被认为是组织工程应用的有希望的候选者。

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