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Low-density subculture: a technical note on the importance of avoiding cell-to-cell contact during mesenchymal stromal cell expansion

机译:低密度亚培养:关于在间充质基质细胞扩增过程中避免细胞间接触的重要性的技术说明

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Numerous scientific studies and clinical trials are carried out each year exploring the use of mesenchymal stromal cells in regenerative medicine and tissue engineering. However, the effective and reliable expansion of this very important cell type remains a challenge. In this study the importance of cell-to-cell contact during expansion has been explored on the proliferation and differentiation potential of the produced cells. Cells were cultured up to passage 5 under conditions where cell-to-cell contact was either probable (40-70% confluence; see supporting information, Protocol A) or where it was unlikely (10-50% confluence; see supporting information, Protocol B). The effect of the two different conditions on expansion efficiency; proliferation rate and tri-lineage differentiation potential was assessed. Differences in immunophenotype, cell size and senescence were also investigated. Protocol B cultures expanded twice as fast as those cultured with Protocol A. In passage 5 experiments low confluence expanded cells displayed a 10% higher overall proliferation rate, and produced 23% more cells in growth, 12% more in osteogenic, 77% more in adipogenic, but 27% less in chondrogenic medium. Differentiation potential wasn't decisively affected at the mRNA level. However, Protocol B favoured bone and cartilage differentiation at the secretional level. Protocol A populations showed reduced purity, expressing CD105 in only 76% compared to the 96.7% in Protocol B cultures. Protocol A populations also contained significantly more (+4.2%) senescent cells, however, no difference was found in cell size between the two protocols. The findings of this study suggest that cell-to-cell contact, and therefore high confluence levels, is detrimental to MSC quality. (c) 2015 The Authors Journal of Tissue Engineering and Regenerative Medicine Published by John Wiley & Sons Ltd.
机译:每年进行大量科学研究和临床试验,探索间充质基质细胞在再生医学和组织工程中的应用。然而,这种非常重要的细胞类型的有效而可靠的扩展仍然是一个挑战。在这项研究中,已经探讨了扩增过程中细胞间接触的重要性,探讨了产生的细胞的增殖和分化潜能。在可能发生细胞间接触(40-70%融合;请参阅支持信息,方案A)或不太可能发生(10-50%融合;请参见支持信息,协议)的条件下培养细胞直至第5代B)。两种不同条件对膨胀效率的影响;评估增殖率和三系分化潜能。还研究了免疫表型,细胞大小和衰老的差异。协议B培养物的扩增速度是使用协议A培养物的速度的两倍。在第5代实验中,低融合度扩增细胞显示出总体增殖率高10%,生长细胞增加23%,成骨细胞增加12%,而成骨细胞增加77%成脂,但在成软骨培养基中减少27%。在mRNA水平上,分化潜能没有决定性的影响。但是,方案B主张在分泌水平上分化骨骼和软骨。方案A的种群显示出降低的纯度,与方案B的96.7%相比,CD105仅表达76%。方案A种群还包含明显更多(+ 4.2%)的衰老细胞,但是,两种方案之间在细胞大小上没有发现差异。这项研究的发现表明,细胞间的接触以及因此的高汇合水平对MSC的质量是有害的。 (c)2015年《作者组织工程与再生医学杂志》,约翰·威利父子有限公司出版。

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