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Early-stage bone regeneration of hyaluronic acid supplemented with porous 45s5 bioglass-derived granules: an injectable system

机译:透明质酸早期骨再生补充有多孔45s5生物胶衍生的颗粒:注射系统

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摘要

In the present study, an injectable bone substitute system which utilized porous bioglass (BG)-derived granules supplemented with hyaluronic acid (Hya), was evaluated. Hya plays ultimate role in wound healing, promoting cell motility. The BG were synthesized by a simple and low sintering temperature process without any foreign phase incorporation. Furthermore, the physical properties in the porous scaffold were optimized to investigate the in vitro and in vivo performance. The porous BG60 scaffolds system showed excellent bioactivity in an in vitro simulated body fluid test in which the ions dissolved from the composite materials influenced apatite growth, countered the acidic pH, and increased material degradation. In an in vitro study with pre-osteoblasts cells (MC3T3-E1), the porous scaffold supported cell adhesion and proliferation. A post-implantation study conducted in femoral defects showed implant degradation and surprisingly fast bone formation just after 2 weeks of implantation. Initial in vivo degradation of Hya promotes releasing ions which regulates the bone forming cells, clues to tissue repair, and regeneration. On the other hand it also prevent the scattering of BG granule after grafting at implant site. The faster dissolution of the porous BG scaffold increased the resorption of the composite material and hence, facilitated bone tissue regeneration. Our findings suggest that the porous BG scaffold could potentially be used as an injectable bone substitute for fast, early bone regeneration applications.
机译:在本研究中,评估使用透明质酸(HYA)补充有透明质酸(HYA)的多孔生物胶(BG)颗粒的可注射骨替代系统。 HYA在伤口愈合中发挥终极作用,促进细胞运动。通过简单而低的烧结温度工艺合成BG而没有任何异相掺入。此外,优化多孔支架中的物理性质以研究体外和体内性能。多孔BG60支架系统在体外模拟体液试验中显示出优异的生物活性,其中从复合材料溶解的离子影响磷灰石生长,反驳酸性pH,并增加了更高的物质降解。在具有预成骨细胞(MC3T3-E1)的体外研究中,多孔支架支持细胞粘附和增殖。在股骨缺陷中进行的植入后研究表明植入物降解和令人惊讶的植入后2周后的快速骨形成。 HYA的初始降解促进调节骨形成细胞,组织修复和再生的释放离子。另一方面,它还防止在植入部位接枝后BG颗粒的散射。多孔BG支架的溶解率较快地增加了复合材料的吸收,从而增加了促进的骨组织再生。我们的研究结果表明,多孔BG支架可能用作快速,早期骨再生应用的可注射骨骼替代品。

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