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A preliminary analysis of volatile metabolites of human induced pluripotent stem cells along the in vitro differentiation

机译:人诱导多能干细胞体外分化过程中挥发性代谢产物的初步分析

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摘要

Cellular metabolism of stem cell biology is still an unexplored field. However, considering the amount of information carried by metabolomes, this is a promising field for a fast identification of stem cells itself and during the differentiation process. One of the goals of such application is the identification of residual pluripotent cells before cell transplantation to avoid the occurrence of teratomas. In this paper, we investigated in vitro the volatile compounds (VOCs) released during human induced pluripotent stem cells (hiPSCs) reprogramming. In particular, we studied hiPSCs differentiation to floating and adherent embryoid bodies until early neural progenitor cells. A preliminary Gas Chromatographic/Mass Spectrometer (GC/MS) analysis, based on a single extraction method and chromatographic separation, indicated 17 volatile compounds whose relative abundance is altered in each step of the differentiation process. The pattern of VOCs shown by hiPSCs is well distinct and makes these cells sharply separated from the other steps of differentiations. Similar behaviour has also been observed with an array of metalloporphyrins based gas sensors. The use of electronic sensors to control the process of differentiation of pluripotent stem cells might suggest a novel perspective for a fast and on-line control of differentiation processes.
机译:干细胞生物学的细胞代谢仍是一个尚未探索的领域。然而,考虑到代谢组学携带的信息量,这对于快速鉴定干细胞本身以及分化过程中是一个有前途的领域。这种应用的目的之一是在细胞移植前鉴定残留的多能细胞,以避免畸胎瘤的发生。在本文中,我们研究了在人类诱导的多能干细胞(hiPSC)重新编程过程中释放的挥发性化合物(VOC)。特别地,我们研究了hiPSCs分化为漂浮的和粘附的类胚体,直到早期的神经祖细胞。基于单一萃取方法和色谱分离的初步气相色谱/质谱仪(GC / MS)分析表明,有17种挥发性化合物的相对丰度在分化过程的每个步骤中都发生了变化。 hiPSC所显示的VOC样式非常不同,并使这些细胞与其他分化步骤急剧分离。使用基于金属卟啉的气体传感器阵列也观察到了类似的行为。使用电子传感器控制多能干细胞的分化过程可能为快速,在线控制分化过程提供了新的视角。

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