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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Development of silica grafted poly(1,8-octanediol-co-citrates) hybrid elastomers with highly tunable mechanical properties and biocompatibility
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Development of silica grafted poly(1,8-octanediol-co-citrates) hybrid elastomers with highly tunable mechanical properties and biocompatibility

机译:具有高度可调的机械性能和生物相容性的二氧化硅接枝的聚(1,8-辛二醇-柠檬酸酯-共柠檬酸酯)杂化弹性体的开发

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摘要

Biodegradable elastomers are attractive in soft tissue regeneration due to their biomimetic viscoelastic properties and biocompatibility. However, conventional elastomers are inherently weak and lack the bioactivity required for highly efficient tissue regeneration. Silica-based biomaterials have shown high mechanical stiffness and special bioactivities including stimulating osteogenesis and angiogenesis by enhancing corresponding gene expressions. Here, by a facile polymerization, we synthesized a series of silica grafted poly (1,8-octanediol-co-citrate) (SPOC) hybrid elastomers with highly tunable physicochemical properties and bioactivities. The silica phase was successfully grafted to the side chain of POC. The silica phase incorporation significantly endowed POC elastomers with highly controlled thermal stability, mechanical properties, hydrophilicity, biodegradation and biocompatibility. The tensile strength, initial modulus and elongation of SPOC hybrid elastomers were highly tunable and range from 2-15 MPa, 4-25 MPa and 50-140% respectively, which is almost a four-fold enhancement compared with pure POC elastomers. In addition, SPOC elastomers significantly enhanced the proliferation and metabolic activities of multiple cell lines including the adipose-derived stem cells, fibroblasts, myoblasts and osteoblasts, indicating their high biocompatibility. These optimized structures and properties of the silica-grafted hybrid elastomers make them promising for soft and hard tissue regeneration applications.
机译:由于可生物降解的弹性体具有仿生的粘弹性和生物相容性,因此在软组织再生中具有吸引力。然而,常规的弹性体固有地较弱并且缺乏高效组织再生所需的生物活性。二氧化硅基生物材料显示出较高的机械刚度和特殊的生物活性,包括通过增强相应的基因表达来刺激成骨和血管生成。在这里,通过简便的聚合反应,我们合成了一系列具有高度可调节的理化性质和生物活性的二氧化硅接枝的聚(1,8-辛二醇-柠檬酸酯)(SPOC)杂化弹性体。硅胶相已成功接枝到POC的侧链上。二氧化硅相的加入显着赋予了POC弹性体高度可控的热稳定性,机械性能,亲水性,生物降解性和生物相容性。 SPOC杂化弹性体的拉伸强度,初始模量和伸长率高度可调,范围分别为2-15 MPa,4-25 MPa和50-140%,与纯POC弹性体相比几乎提高了四倍。此外,SPOC弹性体显着增强了多种细胞系的增殖和代谢活性,包括脂肪干细胞,成纤维细胞,成肌细胞和成骨细胞,表明它们具有高度的生物相容性。二氧化硅接枝的混合弹性体的这些优化的结构和性能使它们在软组织和硬组织再生应用中很有希望。

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