首页> 外文期刊>Stem cells and development >Differential Expression of Cholinergic System Components in Human Induced Pluripotent Stem Cells, Bone Marrow-Derived Multipotent Stromal Cells, and Induced Pluripotent Stem Cell-Derived Multipotent Stromal Cells
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Differential Expression of Cholinergic System Components in Human Induced Pluripotent Stem Cells, Bone Marrow-Derived Multipotent Stromal Cells, and Induced Pluripotent Stem Cell-Derived Multipotent Stromal Cells

机译:人诱导多能干细胞,骨髓衍生的多能基质细胞和诱导多能干细胞衍生多能基质细胞的胆碱能系统组分的差异表达

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The components of the cholinergic system are evolutionary very old and conserved molecules that are expressed in typical spatiotemporal patterns. They are involved in signaling in the nervous system, whereas their functions in nonneuronal tissues are hardly understood. Stem cells present an attractive cellular system to address functional issues. This study therefore compared human induced pluripotent stem cells (iPSCs; from cord blood endothelial cells), mesenchymal stromal cells derived from iPSCs (iPSC-MSCs), and bone marrow-derived MSCs (BM-MSCs) from up to 33 different human donors with respect to gene expressions of components of the cholinergic system. The status of cells was identified and characterized by the detection of cell surface antigens using flow cytometry. Acetylcholinesterase expression in iPSCs declined during their differentiation into MSCs and was comparably low in BM-MSCs. Butyrylcholinesterase was present in iPSCs, increased upon transition from the three-dimensional embryoid body phase into monolayer culture, and declined upon further differentiation into iPSC-MSCs. In BM-MSCs a notable butyrylcholinesterase expression could be detected in only four donors, but was elusive in other patient-derived samples. Different nicotinic acetylcholine receptor subunits were preferentially expressed in iPSCs and during early differentiation into iPSC-MSCs, low expression was detected in iPS-MSCs and in BM-MSCs. The m2 and m3 variants of muscarinic acetylcholine receptors were detected in all stem cell populations. In BM-MSCs, these gene expressions varied between donors. Together, these data reveal the differential expression of cholinergic signaling system components in stem cells from specific sources and suggest the utility of our approach to establish informative biomarkers.
机译:胆碱能系统的组分是以典型的时空模式表达的进化非常旧的和保守分子。它们参与了神经系统中的信号传导,而它们在非生物组织中的功能几乎没有理解。干细胞呈现出一种有吸引力的细胞系统,以解决功能问题。因此,该研究比较了人诱导的多能干细胞(IPSCS;从脐带血内皮细胞),来自IPSCS(IPSC-MSCs)的间充质基质细胞,以及骨髓衍生的MSCs(BM-MSC),从多达33种不同的人类供体依赖胆碱能系统组分的基因表达。通过使用流式细胞术检测细胞表面抗原的细胞状态并表征。 IPSC中的乙酰胆碱酯酶酶表达在分化到MSCs中,在BM-MSCs中相当低。丁酰胆碱酯酶存在于IPSC中,在从三维胚状体相转变为单层培养后增加,并在进一步分化到IPSC-MSC时下降。在BM-MSC中,可以仅在四个供体中检测到值得注意的丁二醇酯酶表达,但在其他患者衍生的样品中难以难以捉摸。不同的烟碱乙酰胆碱受体亚基优先在IPSCs中表达,并且在早期分化到IPSC-MSCs中,在IPS-MSCs和BM-MSC中检测低表达。在所有干细胞群中检测到肌肉素乙酰胆碱受体的M2和M3变体。在BM-MSCs中,这些基因表达在供体之间变化。这些数据在一起揭示了来自特定来源干细胞中胆碱能信号系统组分的差异表达,并提出了我们建立了建立信息性生物标志物的效用。

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