Department of Medicine, Surgery and Dentistry, Faculty of Medicine, University of Milan Via A. di Rudinì, Milan, Italy.
Restor Neurol Neurosci. 2012;30(1):55-68. doi: 10.3233/RNN-2011-0620.
Our aim was the search for new sources of cells potentially useful for central nervous system regenerative medicine. Extra-embryonic tissues are promising sources of pluripotent stem cells. Among these, human second-trimester amniotic fluid (AF) contains cell populations exhibiting self-renewal capacity, multipotency and the expression of embryonic cell markers.
Here we report the properties of the easily available third-trimester AF cells (AFCs). Different cell types from 6 of 9 AF samples were separated, expanded, and characterized by assessing their morphological, proliferative, and differentiative properties.
All isolated cultures presented CD105, CD90 and CD73 mesenchymal markers, whereas they differed among themselves in CD117, CD146, CD31, NG2 and CD133 expression. Their doubling time and telomere length were conserved throughout many passages. Importantly, immunofluorescence and Real-time PCR showed that, during their proliferative state and differentiation, several cultures expressed neuronal and glial markers such as nestin, GFAP, β-tubulin III and neurofilament H indicating their potential attitude towards a neural fate. Indeed, these cells showed a rather poor capacity to differentiate in adipogenic and osteogenic lineages.
In this work we report that cells with neural differentiation capability can be isolated from third-trimester AF, such properties could be useful for neuro-regenerative purposes.
我们的目的是寻找对中枢神经系统再生医学可能有用的新的细胞来源。胚外组织是多能干细胞的有前途的来源。其中,人类中期羊水(AF)含有表现出自更新能力、多能性和胚胎细胞标志物表达的细胞群体。
在这里,我们报告了容易获得的第三个月 AF 细胞(AFCs)的特性。从 9 个 AF 样本中的 6 个分离、扩增和表征不同的细胞类型,评估它们的形态、增殖和分化特性。
所有分离的培养物均表达 CD105、CD90 和 CD73 间充质标志物,而在 CD117、CD146、CD31、NG2 和 CD133 表达方面彼此不同。它们的倍增时间和端粒长度在许多传代中保持不变。重要的是,免疫荧光和实时 PCR 显示,在增殖状态和分化过程中,一些培养物表达神经元和神经胶质标志物,如巢蛋白、GFAP、β-微管蛋白 III 和神经丝 H,表明它们具有向神经命运分化的潜力。事实上,这些细胞在成脂和成骨谱系中的分化能力相当差。
在这项工作中,我们报告了可以从第三个月的 AF 中分离出具有神经分化能力的细胞,这些特性可能对神经再生目的有用。