首页> 外文会议>Society for Biomaterials annual meeting and exposition >Self-assembled nanocomposite hydrogels driven by bisphosphonate-Mg~(2+) coordination regulate the differentiation of encapsulated stem cells and promote in-situ bone regeneration
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Self-assembled nanocomposite hydrogels driven by bisphosphonate-Mg~(2+) coordination regulate the differentiation of encapsulated stem cells and promote in-situ bone regeneration

机译:由双膦酸酯-Mg〜(2+)配位驱动的自组装纳米复合水凝胶调节封装的干细胞的分化并促进原位骨再生

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Collectively, we demonstrate a self-assembled nanocomposite hydrogel driven by the bisphosphonate-Mg~(2+) coordination. The in situ self-assembled Ac-BP-Mg nanoparticles formed by this dynamic coordination function as effective multivalent crosslinkers, and the obtained hydrogels exhibit enhanced mechanical properties as well as excellent injectability and self-healing characteristics. Such hydrogels can be further crosslinked via the photopolymerization of acrylate groups on the surface of the embedded Ac-BP-Mg NPs, resulting in increased stiffness and crosslinking density. Furthermore, we investigate the response of encapsulated hMSCs to the dynamic stiffening of hydrogels, and we find that the early introduction of this secondary crosslinking inhibits cell spreading and osteogenesis. Finally, such hydrogels can promote the osteogenic differentiation of hMSCs as well as in situ bone regeneration.
机译:集体,我们展示了由双膦酸酯-Mg〜(2+)配位驱动的自组装纳米复合水凝胶。通过这种动态配位形成的原位自组装Ac-BP-Mg纳米颗粒起着有效的多价交联剂的作用,并且所获得的水凝胶显示出增强的机械性能以及出色的可注射性和自愈特性。这种水凝胶可以通过嵌入的Ac-BP-Mg NPs表面上的丙烯酸酯基团进行光聚合进一步交联,从而提高刚度和交联密度。此外,我们研究了封装的hMSC对水凝胶动态变硬的响应,并且我们发现这种二次交联的早期引入抑制了细胞扩散和成骨作用。最后,此类水凝胶可促进hMSC的成骨分化以及原位骨再生。

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