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A comparative study of zwitterionic ligands-mediated mineralization and the potential of mineralized zwitterionic matrices for bone tissue engineering

机译:两性离子配体介导的矿化作用和矿化的两性离子基质在骨组织工程中的潜力的比较研究

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Cationic and anionic residues of the extracellular matrices (ECM) of bone play synergistic roles in recruiting precursor ions and templating the nucleation, growth and crystalline transformations of calcium apatite in natural biomineralization. We previously reported that zwitterionic sulfobetaine ligands can template extensive 3-dimensional (3-D) hydroxyapatite (HA)-mineralization of photo-crosslinked polymethacrylate hydrogels. Here, we compared the potency of two other major zwitterionic ligands, phosphobetaine and carboxybetaine, with that of the sulfobetaine in mediating 3-D mineralization using a crosslinked polymethacrylate hydrogel platform. We confirmed that all three zwitterionic hydrogels were able to effectively template 3-D mineralization, supporting the general ability of zwitterions to mediate templated mineralization. Among them, however, sulfobetaine and phosphobetaine hydrogels templated denser 3-D mineralization than the carboxybetaine hydrogel, likely due to their higher free water fractions and better maintenance of zwitterionic nature throughout the pH-changes during the in vitro mineralization process. We further demonstrated that the extensively mineralized zwitterionic hydrogels could be exploited for efficient retention (e.g. 99% retention after 24 h incubation in PBS) of osteogenic growth factor recombinant bone morphogenetic protein-2 (rhBMP-2) and subsequent sustained local release with retained bioactivity. Combined with the excellent cytocompatibility of all three zwitterionic hydrogels and the significantly improved cell adhesive properties of their mineralized matrices, these materials could find promising applications in bone tissue engineering.
机译:骨骼的细胞外基质(ECM)的阳离子和阴离子残留物在天然生物矿化过程中,在募集前体离子和模板化磷灰石钙的成核,生长和晶体转变中起协同作用。我们以前报道两性离子磺基甜菜碱配体可以模板化光交联的聚甲基丙烯酸酯水凝胶的广泛的3维(3-D)羟基磷灰石(HA)-矿化。在这里,我们比较了使用交联的聚甲基丙烯酸酯水凝胶平台介导的3-D矿化作用的其他两个主要两性离子配体(磷酸甜菜碱和羧基甜菜碱)与磺基甜菜碱的效力。我们证实,所有三种两性离子水凝胶均能够有效地模板化3-D矿化,从而支持两性离子介导模板化矿化的一般能力。然而,其中有磺基甜菜碱和磷酸甜菜碱水凝胶比羧基甜菜碱水凝胶具有更强的3D矿化模板性,这可能是由于它们的游离水含量更高,并且在体外矿化过程中,在整个pH值变化过程中两性离子特性得到了更好的维持。我们进一步证明,广泛矿化的两性离子水凝胶可用于成骨生长因子重组骨形态发生蛋白2(rhBMP-2)的有效保留(例如,在PBS中孵育24 h后99%保留),并随后保持生物活性而持续局部释放。结合所有三种两性离子水凝胶的优异细胞相容性以及其矿化基质的明显改善的细胞粘附特性,这些材料可以在骨组织工程中找到有希望的应用。

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