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首页> 外文期刊>Acta biomaterialia >An injectable scaffold: rhBMP-2-loaded poly(lactide-co-glycolide)/hydroxyapatite composite microspheres.
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An injectable scaffold: rhBMP-2-loaded poly(lactide-co-glycolide)/hydroxyapatite composite microspheres.

机译:可注射支架:rhBMP-2负载的聚(丙交酯-乙交酯)/羟基磷灰石复合微球。

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Poly(lactide-co-glycolide)/hydroxyapatite(50/50) (PLGA/HA(50/50)) composite microspheres were fabricated and treated with a mixture of 0.25M NaOH aqueous solution and ethanol (v/v=1/1) at 37 degrees C. The properties of untreated and treated PLGA/HA(50/50) composite microspheres were determined and compared. The results showed that the surface roughness, HA content and hydrophilicity of the treated PLGA/HA(50/50) composite microspheres increased with treatment time. However, the treatment time should be kept within 2h in order to maintain the shape of the PLGA/HA(50/50) microspheres. At the same time, a degradation study showed that both the untreated and treated microspheres degraded gradually with time, with the treated microspheres degrading faster in the first 4 weeks. The rhBMP-2-loaded PLGA/HA(50/50) composite microspheres were prepared by solution dipping treated PLGA/HA(50/50) composite microspheres. Mouse OCT-1 osteoblast-like cells were cultured on the untreated, treated and rhBMP-2-loaded PLGA/HA(50/50) composite microspheres and the cell affinity of the various microspheres was assessed and compared. It was found that the surface-treated PLGA/HA(50/50) composite microspheres clearly promoted osteoblast attachment, proliferation and alkaline phosphatase activity. It was considered that the hydrophilicity, osteoconductivity and surface roughness were increased by the increase in the HA component, which facilitated cell growth. Moreover, the rhBMP-2 loaded on the treated PLGA/HA(50/50) composite microspheres could be slowly released and further enhanced osteoblast differentiation. The good cell affinity and enhanced osteogenic potential of the rhBMP-2-loaded PLGA/HA composite microspheres indicate that they could be used as an injectable scaffold.
机译:制备聚丙交酯-乙交酯/羟基磷灰石(50/50)(PLGA / HA(50/50))复合微球并用0.25M NaOH水溶液和乙醇(v / v = 1/1的混合物)处理)在37摄氏度下进行测定和比较未处理和处理过的PLGA / HA(50/50)复合微球的性能。结果表明,处理后的PLGA / HA(50/50)复合微球的表面粗糙度,HA含量和亲水性均随处理时间的增加而增加。但是,处理时间应保持在2h以内,以保持PLGA / HA(50/50)微球的形状。同时,降解研究表明,未处理和处理过的微球都随时间逐渐降解,处理后的微球在头4周内降解得更快。通过溶液浸渍处理过的PLGA / HA(50/50)复合微球,制备了rhBMP-2负载的PLGA / HA(50/50)复合微球。将小鼠OCT-1成骨细胞样细胞培养在未经处理,经处理和负载rhBMP-2的PLGA / HA(50/50)复合微球上,并评估和比较各种微球的细胞亲和力。发现表面处理过的PLGA / HA(50/50)复合微球明显促进成骨细胞附着,增殖和碱性磷酸酶活性。认为通过HA成分的增加,亲水性,骨传导性和表面粗糙度增加,这促进了细胞生长。此外,装在处理过的PLGA / HA(50/50)复合微球上的rhBMP-2可以缓慢释放并进一步增强成骨细胞分化。载有rhBMP-2的PLGA / HA复合微球具有良好的细胞亲和力和增强的成骨潜能,表明它们可用作注射支架。

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