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The Effects of Different Dynamic Culture Systems on Cell Proliferation and Osteogenic Differentiation in Human Mesenchymal Stem Cells

机译:不同动态培养系统对人间充质干细胞增殖和成骨分化的影响

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摘要

The culture environment plays an important role for stem cells’ cultivation. Static or dynamic culture preserve differential potentials to affect human mesenchymal stem cells’ (hMSCs) proliferation and differentiation. In this study, hMSCs were seeded on fiber disks and cultured in a bidirectional-flow bioreactor or spinner-flask bioreactor with a supplement of osteogenic medium. The hMSCs’ proliferation, osteogenic differentiation, and extracellular matrix deposition of mineralization were demonstrated. The results showed that the spinner flask improved cell viability at the first two weeks while the bidirectional-flow reactor increased the cell proliferation of hMSCs through the four-week culture period. Despite the flow reactor having a higher cell number, a lower lactose/glucose ratio was noted, revealing that the bidirectional-flow bioreactor provides better oxygen accessibility to the cultured cells/disk construct. The changes of calcium ions in the medium, the depositions of Ca2+ in the cells/disk constructs, and alkaline phosphate/osteocalcin activities showed the static culture of hMSCs caused cells to mineralize faster than the other two bioreactors but without cell proliferation. Otherwise, cells were distributed uniformly with abundant extracellular matrix productions using the flow reactor. This reveals that the static and dynamic cultivations regulated the osteogenic process differently in hMSCs. The bidirectional-flow bioreactor can be used in the mass production and cultivation of hMSCs for applications in bone regenerative medicine.
机译:培养环境对于干细胞的培养起着重要作用。静态或动态培养保留了可能影响人间充质干细胞(hMSCs)增殖和分化的差异潜力。在这项研究中,将hMSCs接种在纤维盘上,并在具有成骨培养基的双向流动生物反应器或旋转烧瓶生物反应器中进行培养。证实了hMSC的增殖,成骨分化和矿化的细胞外基质沉积。结果表明,旋转瓶在前两周提高了细胞活力,而双向流反应器在整个四周的培养期内提高了hMSC的细胞增殖。尽管流动反应器具有较高的细胞数,但是注意到较低的乳糖/葡萄糖比,这表明双向流动生物反应器为培养的细胞/盘构建体提供了更好的氧可及性。培养基中钙离子的变化,细胞/盘结构中Ca 2 + 的沉积以及碱性磷酸酯/骨钙素的活性表明hMSCs的静态培养导致细胞矿化的速度比其他两种更快生物反应器,但没有细胞增殖。否则,使用流动反应器将细胞均匀分布,产生大量细胞外基质。这表明静态和动态培养在hMSCs中对成骨过程的调节不同。双向流生物反应器可用于大规模生产和培养hMSC,用于骨再生医学。

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