Stem Cell Res Ther. 2013 Oct 30;4(5):133. doi: 10.1186/scrt344.
While amniotic mesenchymal cells have been isolated and characterized in different species, amniotic epithelial cells (AECs) have been found only in humans and horses and are recently considered valid candidates in regenerative medicine. The aim of this work is to obtain and characterize, for the first time in the feline species, presumptive stem cells from the epithelial portion of the amnion (AECs) to be used for clinical applications.
In our study, we molecularly characterized and induced in vitro differentiation of feline AECs, obtained after enzymatic digestion of amnion.
AECs displayed a polygonal morphology and the mean doubling time value was 1.94 ± 0.04 days demonstrating the high proliferating capacity of these cells. By RT-PCR, AECs expressed pluripotent (Oct4, Nanog) and some mesenchymal markers (CD166, CD44) suggesting that an epithelial-mesenchymal transition may occur in these cells that lack the hematopoietic marker CD34. Cells also showed the expression of embryonic marker SSEA-4, but not SSEA-3, as demonstrated by immunocytochemistry and flow cytometry. Moreover, the possibility to use feline AECs in cell therapies resides in their low immunogenicity, due to the absence of MHC-II antigen expression. After induction, AECs differentiated into the mesodermic and ectodermic lineages, demonstrating high plasticity.
In conclusion, feline AECs appear to be a readily obtainable, highly proliferative, multipotent and non-immunogenic cell line from a source that may represent a good model system for stem cell biology and be useful in allogenic cell-based therapies in order to treat tissue lesions, especially with loss of substance.
虽然已在不同物种中分离和鉴定了羊膜间充质细胞,但仅在人和马中发现了羊膜上皮细胞(AECs),最近被认为是再生医学中的有效候选细胞。本研究旨在首次从胎膜的上皮部分(AECs)获得并鉴定猫科动物的假定干细胞,以便用于临床应用。
在我们的研究中,我们对通过酶消化胎膜获得的猫科动物 AECs 进行了分子鉴定和体外诱导分化。
AECs 呈多角形形态,平均倍增时间值为 1.94 ± 0.04 天,表明这些细胞具有较高的增殖能力。通过 RT-PCR,AECs 表达了多能性(Oct4、Nanog)和一些间充质标记物(CD166、CD44),表明上皮-间充质转化可能发生在这些缺乏造血标记物 CD34 的细胞中。细胞还表达了胚胎标记物 SSEA-4,但不表达 SSEA-3,如免疫细胞化学和流式细胞术所示。此外,由于缺乏 MHC-II 抗原表达,猫科动物 AECs 具有低免疫原性,这使其有可能用于细胞治疗。诱导后,AECs 分化为中胚层和外胚层谱系,表现出高可塑性。
总之,猫科动物 AECs 似乎是一种易于获得、高度增殖、多能性和非免疫原性的细胞系,来源于一种可能代表干细胞生物学良好模型系统的来源,并且可用于同种异体基于细胞的治疗,以治疗组织损伤,尤其是有物质损失的组织损伤。