首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Biological activity of a nanofibrous barrier membrane containing bone morphogenetic protein formed by core-shell electrospinning as a sustained delivery vehicle.
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Biological activity of a nanofibrous barrier membrane containing bone morphogenetic protein formed by core-shell electrospinning as a sustained delivery vehicle.

机译:包含骨形态发生蛋白的纳米纤维屏障膜的生物活性,该蛋白质是由核壳电纺丝形成的,作为持续递送的载体。

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This study reports the in vitro and in vivo biological activities of recombinant human bone morphogenetic protein 2 (rhBMP-2) released from the core-shell structure of a nanofibrous barrier membrane as a sustained delivery model for bone regeneration. RhBMP-2 incorporating poly(ethylene glycol) was used as the core, and poly(caprolactone) was used as the shell surrounding the core. To determine its release profiles, the release solution was collected and the amount of rhBMP-2 was measured by ELlSA at different time points. In vitro rhBMP-2, released from the delivery system over at least 24 days, reached a stable rate of 500 pg per day and guided bone marrow mesenchymal stem cells (BMMSCs) to express osteogenic genes. The distribution and proliferation of BMMSCs in the nanofibrous barrier membrane was measured by laser confocal scanning microscopy (LCSM) and scanning electron microscopy (SEM). The biological activity of rhBMP-2 was tested in BMMSC/membrane culture in vitro and in a rabbit calvarium defect model in vivo. Osteogenic genes osteonectin (ON) and core binding factor-α1 (Cbf-α1) expression of the BMMSCs cultured on the BMP-2-PEG/PCL membrane were significantly higher than those of cells on the PEG/PCL membrane at the late time points using real-time PCR (p < 0.05). The membranes containing the rhBMP-2 group exhibited the fastest and most bone formation compared to others in rabbit cranial defect models (p < 0.05). This study revealed that rhBMP-2 could be incorporated into a core-shell electrospun membrane, and preserve sustained release capability and biological activity.
机译:这项研究报告了从人类纳米纤维屏障膜的核壳结构释放的重组人骨形态发生蛋白2(rhBMP-2)的体外和体内生物学活性,作为骨再生的持续递送模型。以掺有聚乙二醇的RhBMP-2为核,以聚己内酯为核的壳。为了确定其释放曲线,收集释放溶液,并通过ELlSA在不同时间点测量rhBMP-2的量。从递送系统释放至少24天的体外rhBMP-2达到每天500 pg的稳定速率,并指导骨髓间充质干细胞(BMMSC)表达成骨基因。通过激光共聚焦扫描显微镜(LCSM)和扫描电子显微镜(SEM)测量了BMMSC在纳米纤维屏障膜中的分布和增殖。 rhBMP-2的生物学活性在体外BMMSC /膜培养中和体内兔颅骨缺损模型中进行了测试。 BMP-2-PEG / PCL膜上培养的BMMSC的成骨基因骨连接蛋白(ON)和核心结合因子-α1(Cbf-α1)表达在后期明显高于PEG / PCL膜上的细胞使用实时PCR(p <0.05)。与兔颅骨缺损模型中的膜相比,含有rhBMP-2组的膜显示出最快和最多的骨形成(p <0.05)。这项研究表明,rhBMP-2可以掺入核-壳电纺膜中,并保持缓释能力和生物活性。

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