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Biomimetic Coating of Hydroxyapatite on Glycerol Phosphate-ConjugatedPolyurethane via Mineralization

机译:磷酸甘油共轭仿生羟基磷灰石涂层聚氨酯矿化

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摘要

In this study, glycerol phosphate was introduced into polyurethane (PU) to promote the coating stability of hydroxyapatite (HA) during its mineralization on the PU surface. Glycerol phosphate was successfully conjugated with the PU chain during polymerization. Phosphate groups in glycerol phosphate accelerated the nucleation of HA under calcium phosphate ion-rich conditions (concentrated simulated body fluid), resulting in the enhancement of structural stability. The robust interface between HA and PU also improved mechanical properties. Hydrophilic phosphate groups and bioactive HA improved in vitro cellular responses in terms of the attachment and proliferation of L929 fibroblasts and MC3T3-E1 preosteoblasts. Thus, the highly elastic and bioactive PU-gp-HA could be a promising candidate for tissue engineering applications that experience frequent deformation, including diverse cartilage replacements.
机译:在这项研究中,将磷酸甘油引入聚氨酯(PU)中,以提高羟基磷灰石(HA)在PU表面矿化过程中的涂层稳定性。聚合过程中,磷酸甘油成功地与PU链结合。磷酸甘油酯中的磷酸根在富含磷酸钙离子的条件下(浓缩的模拟体液)加速了HA的成核,从而增强了结构稳定性。 HA和PU之间的牢固接口还改善了机械性能。亲水性磷酸基团和具有生物活性的HA在L929成纤维细胞和MC3T3-E1前成骨细胞的附着和增殖方面改善了体外细胞反应。因此,具有高弹性和生物活性的PU-gp-HA可能是组织工程应用中有希望的候选者,这些组织工程应用经常发生变形,包括各种软骨置换。

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