首页> 外文期刊>BMC Neuroscience >Adult ciliary epithelial stem cells generate functional neurons and differentiate into both early and late born retinal neurons under non-cell autonomous influences
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Adult ciliary epithelial stem cells generate functional neurons and differentiate into both early and late born retinal neurons under non-cell autonomous influences

机译:在非细胞自主影响下,成人睫状上皮干细胞产生功能性神经元,并分化为早期和晚期出生的视网膜神经元

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Background The neural stem cells discovered in the adult ciliary epithelium (CE) in higher vertebrates have emerged as an accessible source of retinal progenitors; these cells can self-renew and possess retinal potential. However, recent studies have cast doubt as to whether these cells could generate functional neurons and differentiate along the retinal lineage. Here, we have systematically examined the pan neural and retinal potential of CE stem cells. Results Molecular and cellular analysis was carried out to examine the plasticity of CE stem cells, obtained from mice expressing green fluorescent protein (GFP) under the influence of the promoter of the rod photoreceptor-specific gene, Nrl , using the neurospheres assay. Differentiation was induced by specific culture conditions and evaluated by both transcripts and protein levels of lineage-specific regulators and markers. Temporal pattern of their levels were examined to determine the expression of genes and proteins underlying the regulatory hierarchy of cells specific differentiation in vitro . Functional attributes of differentiation were examined by the presence of current profiles and pharmacological mobilization of intracellular calcium using whole cell recordings and Fura-based calcium imaging, respectively. We demonstrate that stem cells in adult CE not only have the capacity to generate functional neurons, acquiring the expression of sodium and potassium channels, but also respond to specific cues in culture and preferentially differentiate along the lineages of retinal ganglion cells (RGCs) and rod photoreceptors, the early and late born retinal neurons, respectively. The retinal differentiation of CE stem cells was characterized by the temporal acquisition of the expression of the regulators of RGCs and rod photoreceptors, followed by the display of cell type-specific mature markers and mobilization of intracellular calcium. Conclusions Our study demonstrates the bonafide retinal potential of adult CE stem cells and suggests that their plasticity could be harnessed for clinical purposes once barriers associated with any lineage conversion, i.e., low efficiency and fidelity is overcome through the identification of conducive culture conditions.
机译:背景技术在高等脊椎动物的成年睫状上皮(CE)中发现的神经干细胞已成为视网膜祖细胞的一种可利用来源。这些细胞可以自我更新并具有视网膜潜力。但是,最近的研究使人们怀疑这些细胞是否能够产生功能性神经元并沿着视网膜谱系分化。在这里,我们已经系统地检查了CE干细胞的泛神经和视网膜电位。结果进行了分子和细胞分析,以神经杆测定法检测在杆感光细胞特异性基因Nrl的启动子的影响下从表达绿色荧光蛋白(GFP)的小鼠获得的CE干细胞的可塑性。通过特定的培养条件诱导分化,并通过谱系特异性调节剂和标记的转录本和蛋白质水平进行评估。他们水平的时间模式,以确定基因和蛋白质的表达的基础上调节细胞特异性分化的体外调节层次。分别通过全细胞记录和基于Fura的钙成像,通过电流谱的存在和细胞内钙的药理动员检查分化的功能属性。我们证明,成年CE中的干细胞不仅具有生成功能性神经元,获得钠和钾通道表达的能力,而且还对培养物中的特定信号作出反应,并沿视网膜神经节细胞(RGCs)和杆的谱系优先分化感光器,分别是视网膜神经元的早期和晚期。 CE干细胞的视网膜分化的特征是RGC和棒状光感受器的调节器的表达的时间获取,随后显示细胞类型特异性成熟标志物和细胞内钙的动员。结论我们的研究证明了成年CE干细胞的真实视网膜潜力,并表明一旦通过鉴定有益的培养条件克服了与任何谱系转化相关的障碍(即低效率和保真度),就可以利用其可塑性用于临床目的。

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