首页> 外文期刊>Biomedical materials >Nanocomposite scaffolds with tunable mechanical and degradation capabilities: co-delivery of bioactive agents for bone tissue engineering
【24h】

Nanocomposite scaffolds with tunable mechanical and degradation capabilities: co-delivery of bioactive agents for bone tissue engineering

机译:具有可调谐机械和降解能力的纳米复合支架:共同递送骨组织工程的生物活性剂

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Novel multifunctional nanocomposite scaffolds made of nanobioactive glass and alginate crosslinked with therapeutic ions such as calcium and copper were developed for delivering therapeutic agents, in a highly controlled and sustainable manner, for bone tissue engineering. Alendronate, a well-known antiresorptive agent, was formulated into microspheres under optimized conditions and effectively loaded within the novel multifunctional scaffolds with a high encapsulation percentage. The size of the cation used for the alginate crosslinking impacted directly on porosity and viscoelastic properties, and thus, on the degradation rate and the release profile of copper, calcium and alendronate. According to this, even though highly porous structures were created with suitable pore sizes for cell ingrowth and vascularization in both cases, copper-crosslinked scaffolds showed higher values of porosity, elastic modulus, degradation rate and the amount of copper and alendronate released, when compared with calcium-crosslinked scaffolds. In addition, in all cases, the scaffolds showed bioactivity and mechanical properties close to the endogenous trabecular bone tissue in terms of viscoelasticity. Furthermore, the scaffolds showed osteogenic and angiogenic properties on bone and endothelial cells, respectively, and the extracts of the biomaterials used promoted the formation of blood vessels in an ex vivo model. These new bioactive nanocomposite scaffolds represent an exciting new class of therapeutic cell delivery carrier with tunable mechanical and degradation properties; potentially useful in the controlled and sustainable delivery of therapeutic agents with active roles in bone formation and angiogenesis, as well as in the support of cell proliferation and osteogenesis for bone tissue engineering.
机译:开发由纳米偶体玻璃制成的新型多功能纳米复合二手支架和用治疗离子如钙和铜交联,以以高度控制和可持续的方式递送治疗剂,用于骨组织工程。在优化的条件下,Alendronate是一种众所周知的抗透镜,在微球中配制成微球,并有效地装载在新的多功能支架中,具有高封装百分比。用于藻酸盐交联的阳离子的尺寸直接影响孔隙率和粘弹性性质,因此铜,钙和醛酸盐的降解速率和释放曲线上。根据这一点,即使在两种情况下用适合细胞的孔径和血管化产生高度多孔结构,铜交联支架的孔隙率,弹性模量,降解速率和释放的铜和阿仑膦酸盐的量较高,而且用钙交联的支架。另外,在所有情况下,支架在粘弹性方面显示出靠近内源性小梁骨组织的生物活性和机械性能。此外,支架分别在骨和内皮细胞上显示出骨质发生和血管生成性质,并且使用的生物材料的提取物促进了前体内模型中血管的形成。这些新的生物活性纳米复合材料支架代表了一种激动的新类治疗细胞输送载体,具有可调谐机械和降解性能;潜在可用于治疗剂的可持续递送治疗剂,其具有骨形成和血管生成的活性作用,以及对骨组织工程的细胞增殖和骨质发生的支持。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号