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Hybrid gelatin/oxidized chondroitin sulfate hydrogels incorporating bioactive glass nanoparticles with enhanced mechanical properties, mineralization, and osteogenic differentiation

机译:杂交明胶/氧化软骨素硫酸盐水凝胶掺入生物活性玻璃纳米粒子,具有增强的机械性能,矿化和骨质发生分化

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Biopolymer based hydrogels are characteristic of their biocompatibility and capability of mimicking extracellular matrix structure to support cellular behavior. However, these hydrogels suffer from low mechanical properties, uncontrolled degradation, and insufficient osteogenic activity, which limits their applications in bone regeneration. In this study, we developed hybrid gelatin (Gel)/oxidized chondroitin sulfate (OCS) hydrogels that incorporated mesoporous bioactive glass nanoparticles (MBGNs) as bioactive fillers for bone regeneration. Gel-OCS hydrogels could be self-crosslinked in situ under physiological conditions in the presence of borax. The incorporation of MBGNs enhanced the crosslinking and accelerated the gelation. The gelation time decreased with increasing the concentration of MBGNs added. Incorporation of MBGNs in the hydrogels significantly improved the mechanical properties in terms of enhanced storage modulus and compressive strength. The injectability of the hydrogels was not significantly affected by the MBGN incorporation. Also, the proliferation and osteogenic differentiation of rat bone marrow mesenchymal stem cells in vitro and rat cranial defect restoration in vivo were significantly promoted by the hydrogels in the presence of MBGNs. The hybrid Gel-OCS/MBGN hydrogels show promising potential as injectable biomaterials or scaffolds for bone regeneration/repair applications given their tunable degradation and gelation behavior as well as favorable mechanical behavior and osteogenic activities.
机译:基于生物聚合物的水凝胶是它们的生物相容性的特征和模仿细胞外基质结构以支持细胞行为的能力。然而,这些水凝胶患有低机械性能,不受控制的降解和骨质原性不足,这限制了它们在骨再生中的应用。在该研究中,我们开发了掺入介孔生物活性玻璃纳米粒子(MBGNS)作为骨再生的生物活性填料的杂种明胶(OCS)水凝胶。在硼砂存在下,凝胶-OCS水凝胶可以在生理条件下在生理条件下自交联。 MBGN的掺入增强了交联并加速了凝胶化。随着添加的MBGN的浓度,凝胶化时间降低。在增强的储存模量和抗压强度方面,在水凝胶中的MBGN掺入显着改善了机械性能。水凝胶的可注射性不会受到MBGN掺入的显着影响。此外,在MBGNS存在下,水凝胶在体内体外大鼠骨髓间充质干细胞的增殖和骨质发生分化在体外和大鼠颅缺陷恢复中显着促进了MBGNS存在的显着促进。杂交凝胶-OCS / MBGN水凝胶表明,赋予骨再生/修复应用的可注射生物材料或支架具有可观的潜力,因为它们可调节降解和凝胶化行为以及有利的机械行为和骨质发生活性。

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