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Dynamic culture of osteogenic cells in biomimetically coated poly(caprolactone) nanofibre mesh constructs

机译:仿生包覆的聚己内酯纳米纤维网状结构中成骨细胞的动态培养

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摘要

In our previous work, biomimetic calcium phosphate-coated poly(caprolactone) nanofibre meshes (BCP-NMs) were demonstrated to be more effective for supporting cell attachment and proliferation under static conditions, when compared with poly(caprolactone) nanofibre meshes (PCL-NMs). In many applications, in vitro cultivation of constructs using bioreactors that support efficient nutrition of cells has appeared as an important step toward the development of functional grafts. This work aimed at studying the effects of dynamic culture conditions and biomimetic coating on bone cells grown on the nanofibre meshes. BCP-NM and PCL-NM were seeded with osteoblast-like cells (MG63--human osteosarcoma-derived cell line). The cell-seeded constructs were cultured within a rotating bioreactor that simulated microgravity, at a fixed rotating speed, for different time periods, and then characterized. Cell morphology, viability, and phenotype were assessed. PCL-NM constructs presented a higher number of dead cells than BCP-NM constructs. Under dynamic conditions, the production of proteins associated with the extracellular matrix of bone was higher on BCP-NM constructs than in the PCL-NM ones, which indicates that coated samples may provide cells with a better environment for tissue growth. It is suggested that improved mass transfer in the bioreactor in combination with the appropriate substrate were decisive factors for this highly positive outcome for generating bone.
机译:在我们之前的工作中,与聚己内酯纳米纤维网(PCL-NMs)相比,仿生磷酸钙包覆的聚己内酯纳米纤维网(BCP-NMs)在支持静态条件下的细胞附着和增殖方面更有效。 )。在许多应用中,使用支持细胞有效营养的生物反应器体外培养构建体已成为迈向功能移植的重要一步。这项工作旨在研究动态培养条件和仿生涂层对纳米纤维网上生长的骨细胞的影响。 BCP-NM和PCL-NM接种了成骨细胞样细胞(MG63-人骨肉瘤来源的细胞系)。将接种有细胞的构建体在旋转生物反应器中培养,该生物反应器以固定的旋转速度模拟微重力,并持续不同的时间,然后进行表征。评估细胞形态,生存力和表型。 PCL-NM构建体比BCP-NM构建体呈现更高数量的死细胞。在动态条件下,与BPC-NM结构相比,BCP-NM结构上与骨细胞外基质相关的蛋白质的产量更高,这表明包被的样品可以为细胞提供更好的组织生长环境。建议将生物反应器中传质的改善与适当的底物结合使用,是产生骨骼这种高度阳性结果的决定性因素。

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