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Aromatic thermosetting copolyester bionanocomposites as reconfigurable bone substitute materials: Interfacial interactions between reinforcement particles and polymer network

机译:芳香热固性共聚脑膜聚算胶作为可重构的骨替代材料:加固颗粒和聚合物网络之间的界面相互作用

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Development of porous materials consisting of polymer host matrix enriched with bioactive ceramic particles that can initiate the reproduction of cellular organisms while maintaining in vivo mechanical reliability is a long-standing challenge for synthetic bone substitutes. We present hydroxyapatite (HA) reinforced aromatic thermosetting copolyester (ATSP) matrix bionanocomposite as a potential reconfigurable bone replacement material. The nanocomposite is fabricated by solid-state mixing a matching set of precursor oligomers with biocompatible pristine HA particles. During endothermic condensation polymerization reaction, the constituent oligomers form a mechanochemically robust crosslinked aromatic backbone while incorporating the HAs into a self-generated cellular structure. The morphological analysis demonstrates near-homogenous distributions of the pristine HAs within the matrix. The HAs behave as a crack-arrester which promotes a more deformation-tolerant formation with relatively enhanced material toughness. Chain relaxation dynamics of the nanocomposite matrix during glass transition is modified via HA-induced segmental immobilization. Chemical characterization of the polymer backbone composition reveals the presence of a hydrogen-advanced covalent interfacial coupling mechanism between the HAs and ATSP matrix. This report lays the groundwork for further studies on aromatic thermosetting copolyester matrix bionanocomposites which may find applications in various artificial bone needs.
机译:由富含生物活性陶瓷颗粒组成的多孔材料的研制,其可以引发细胞生物的再现,同时保持体内机械可靠性是合成骨代替的长期挑战。我们将羟基磷灰石(HA)加固芳香热固性共聚酯(ATSP)基质脱硫复合材料作为潜在的可重新配置骨更换材料。纳米复合材料通过固态混合匹配的一体的前体低聚物,其具有生物相容性原始HA颗粒。在吸热缩聚聚合反应期间,组分低聚物在将机械化学上稳健的交联芳族骨架形成,同时将掺入自生成的细胞结构中。形态学分析表明了原始在基质内的近均匀分布。该表现为裂缝避雷器,其促进具有相对增强的材料韧性的更易变形的形成。通过HA诱导的节段固定改性玻璃化转变期间纳米复合材料基质的链弛豫动力学。聚合物骨干组合物的化学表征揭示了具有和ATSP基质之间的氢气高级共价互流耦合机制的存在。本报告为进一步研究芳香热固性共聚物脱硫复合材料奠定了奠基,其可以在各种人工骨骼中找到应用。

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