Lech Wioletta, Figiel-Dabrowska Anna, Sarnowska Anna, Drela Katarzyna, Obtulowicz Patrycja, Noszczyk Bartlomiej Henryk, Buzanska Leonora, Domanska-Janik Krystyna
Mossakowski Medical Research Centre, Polish Academy of Sciences, 5 Pawinskiego Street, 02-106 Warsaw, Poland.
Department of Plastic Surgery at the Medical Center for Postgraduate Education, Warsaw School of Medicine, 01-828 Warsaw, Poland.
Stem Cells Int. 2016;2016:2514917. doi: 10.1155/2016/2514917. Epub 2016 Aug 29.
Mesenchymal stem cells (MSC) exhibit enormous heterogeneity which can modify their regenerative properties and therefore influence therapeutic effectiveness as well as safety of these cells transplantation. In addition the high phenotypic plasticity of MSC population makes it enormously sensitive to any changes in environmental properties including fluctuation in oxygen concentration. We have shown here that lowering oxygen level far below air atmosphere has a beneficial impact on various parameters characteristic for umbilical cord Wharton Jelly- (WJ-) MSC and adipose tissue- (AD-) derived MSC cultures. This includes their cellular composition, rate of proliferation, and maintenance of stemness properties together with commitment to cell differentiation toward mesodermal and neural lineages. In addition, the culture genomic stability increased significantly during long-term cell passaging and eventually protected cells against spontaneous transformation. Also by comparing of two routinely used methods of MSCs isolation (mechanical versus enzymatic) we have found substantial divergence arising between cell culture properties increasing along the time of cultivation in vitro. Thus, in this paper we highlight the urgent necessity to develop the more sensitive and selective methods for prediction and control cells fate and functioning during the time of growth in vitro.
间充质干细胞(MSC)表现出极大的异质性,这会改变其再生特性,从而影响这些细胞移植的治疗效果和安全性。此外,MSC群体的高表型可塑性使其对环境特性的任何变化(包括氧浓度波动)极为敏感。我们在此表明,将氧水平降至远低于大气水平对脐带华通氏胶(WJ)-MSC和脂肪组织(AD)来源的MSC培养物的各种特征参数具有有益影响。这包括它们的细胞组成、增殖速率、干性特性的维持以及向中胚层和神经谱系的细胞分化倾向。此外,在长期细胞传代过程中,培养物的基因组稳定性显著增加,并最终保护细胞免于自发转化。通过比较两种常规使用的MSC分离方法(机械法与酶法),我们还发现在体外培养过程中,细胞培养特性随时间推移出现了显著差异。因此,在本文中,我们强调迫切需要开发更敏感和选择性的方法,以预测和控制细胞在体外生长期间的命运和功能。