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首页> 外文期刊>Biotechnology Progress >Effects of Oxygen Transport on 3-D Human Mesenchymal Stem Cell Metabolic Activity in Perfusion and Static Cultures:Experiments and Mathematical Model
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Effects of Oxygen Transport on 3-D Human Mesenchymal Stem Cell Metabolic Activity in Perfusion and Static Cultures:Experiments and Mathematical Model

机译:氧运输对灌注和静态培养物中3-D人间充质干细胞代谢活性的影响:实验和数学模型

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Human mesenchymal stem cells (hMSCs) have unique potential to develop into functional tissue constructs to replace a wide range of tissues damaged by disease or injury.While recent studies have highlighted the necessity for 3-D culture systems to facilitate the proper biological,physiological,and developmental processes of the cells,the effects of the physiological environment on the intrinsic tissue development characteristics in the 3-D scaffolds have not been fully investigated.In this study,experimental results from a 3-D perfusion bioreactor system and the static culture are combined with a mathematical model to assess the effects of oxygen transport on hMSC metabolism and proliferation in 3-D constructs grown in static and perfusion conditions.Cells grown in the perfusion culture had order of magnitude higher metabolic rates,and the perfusion culture supports higher cell density at the end of cultivation.The specific oxygen consumption rate for the constructs in the perfusion bioreactor was found to decrease from 0.012 to 0.0017 ,amol/106 cells/h as cell density increases,suggesting intrinsic physiological change at high cell density.BrdU staining revealed the noneven spatial distribution of the proliferating cells in the constructs grown under static culture conditions compared to the cells that were grown in the perfusion system.The hypothesis that the constructs in static culture grow under oxygen limitation is supported by higher YL/G in static culture.Modeling results show that the oxygen tension in the static culture is lower than that of the perfusion unit,where the cell density was 4 times higher.The experimental and modeling results show the dependence of cell metabolism and spatial growth patterns on the culture environment and highlight the need to optimize the culture parameters in hMSC tissue engineering.
机译:人间充质干细胞(hMSCs)具有独特的潜力,可以发展为功能性组织构建体,以替代因疾病或损伤而受损的各种组织。尽管最近的研究强调了3-D培养系统必须促进适当的生物学,生理学,细胞的发育,发育过程,生理环境对3-D支架内在组织发育特性的影响尚未得到充分研究。在本研究中,来自3-D灌注生物反应器系统和静态培养的实验结果为结合数学模型评估氧气运输对在静态和灌注条件下生长的3-D构建体中hMSC代谢和增殖的影响。在灌注培养物中生长的细胞具有更高的代谢率数量级,并且灌注培养物支持更高的细胞培养结束时的密度。灌注生物中构建体的特定耗氧率随着细胞密度的增加,反应器从0.012减少至0.0017,amol / 106细胞/ h,这提示在高细胞密度下固有的生理变化。BrdU染色显示在静态培养条件下生长的构建物中增殖细胞的空间分布不均匀静态培养中的构建体受到较高的YL / G的支持,这一假设得到了静态培养中的构建体在氧气限制下生长的假说。建模结果表明,静态培养中的氧张力低于静态培养中的氧张力。实验和建模结果表明,细胞代谢和空间生长方式对培养环境的依赖性,并强调在hMSC组织工程中需要优化培养参数。

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