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Optimization of mesenchymal stem cell expansion procedures by cell separation and culture conditions modification

机译:通过细胞分离和培养条件改变优化间充质干细胞扩增程序

摘要

[Objective]: Optimization of the mesenchymal stem cells (MSC) isolation and expansion method. [Materials and Methods]: Mononuclear cells (MNC) from bone marrow aspirates were obtained by both density gradient centrifugation (standard method) and gravity sedimentation. Cells were cultured in standard conditions (10% fetal calf serum and normal oxygen tension [21% O2]) and expansion results compared to those obtained with the same culture conditions to which platelet lysate (PL) preparations were added; in addition, the 21% O2 concentration was compared to a lower (5%) concentration (hypoxia) until the fourth cell passage. Time of expansion, number of cells obtained, morphology, cell surface markers, and differentiation potential were evaluated. [Results]: MSC obtained by any of the different culture conditions expressed comparable immunophenotype and were able to differentiate into osteoblasts, adipocytes, and chondrocytes. When the number of MSC obtained at fourth passage was analyzed, the highest cell numbers were obtained with gravity sedimentation isolation and PL-supplemented culture and the expansion time was the shortest when cells were cultured under hypoxic conditions. [Conclusion]: MSC isolation by MNC gravity sedimentation together with culture medium supplementation with 5% of PL in a hypoxic atmosphere (5% O2) significantly improved MSC yield and reduced expansion time compared to the standard accepted protocols. © 2008 ISEH - Society for Hematology and Stem Cells.
机译:[目的]优化间充质干细胞的分离和扩增方法。 [材料与方法]:通过密度梯度离心(标准方法)和重力沉淀法获得骨髓穿刺细胞的单核细胞(MNC)。在标准条件下(10%胎牛血清和正常氧张力[21%O2])培养细胞,与在添加了血小板裂解液(PL)的相同培养条件下获得的细胞相比,扩增结果有所提高;此外,将21%的O2浓度与较低的(5%)浓度(低氧)进行比较,直到第四次细胞传代为止。评价扩增时间,获得的细胞数量,形态,细胞表面标志物和分化潜能。 [结果]:在任何不同培养条件下获得的MSC均具有可比的免疫表型,并且能够分化为成骨细胞,脂肪细胞和软骨细胞。分析第四代获得的MSC数量时,通过重力沉降分离和PL补充培养获得了最高的细胞数量,而在低氧条件下培养时,扩增时间最短。 [结论]:与标准公认方案相比,在低氧气氛(5%O2)中通过MNC重力沉降分离MSC并添加5%PL的培养基可以显着提高MSC的产量并缩短扩展时间。 ©2008 ISEH-血液学和干细胞协会。

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