Department of Anesthesiology and Intensive Care Medicine, University Medical Centre Rostock, Schillingallee 35, 18057 Rostock, Germany.
Department of Cell Biology, University Medical Centre Rostock, Schillingallee 69, 18057 Rostock, Germany.
Cells. 2019 Jul 10;8(7):697. doi: 10.3390/cells8070697.
Metabolic characterization of human adipose tissue-derived mesenchymal stromal/stem cells (ASCs) is of importance in stem cell research. The monitoring of the cell status often requires cell destruction. An analysis of volatile organic compounds (VOCs) in the headspace above cell cultures might be a noninvasive and nondestructive alternative to in vitro analysis. Furthermore, VOC analyses permit new insight into cellular metabolism due to their view on volatile compounds. Therefore, the aim of our study was to compare VOC profiles in the headspace above nondifferentiating and adipogenically differentiating ASCs. To this end, ASCs were cultivated under nondifferentiating and adipogenically differentiating conditions for up to 21 days. At different time points the headspace samples were preconcentrated by needle trap micro extraction and analyzed by gas chromatography/mass spectrometry. Adipogenic differentiation was assessed at equivalent time points. Altogether the emissions of 11 VOCs showed relevant changes and were analyzed in more detail. A few of these VOCs, among them acetaldehyde, were significantly different in the headspace of adipogenically differentiating ASCs and appeared to be linked to metabolic processes. Furthermore, our data indicate that VOC headspace analysis might be a suitable, noninvasive tool for the metabolic monitoring of (mesenchymal stem) cells in vitro.
人脂肪组织来源的间充质基质/干细胞(ASCs)的代谢特征在干细胞研究中很重要。细胞状态的监测通常需要破坏细胞。细胞培养物上方的顶空分析挥发性有机化合物(VOCs)可能是一种非侵入性和非破坏性的替代体外分析的方法。此外,由于其对挥发性化合物的看法,VOC 分析可以为细胞代谢提供新的见解。因此,我们的研究目的是比较非分化和脂肪分化 ASC 上方顶空的 VOC 图谱。为此,将 ASC 在非分化和脂肪分化条件下培养长达 21 天。在不同的时间点,通过针阱微萃取对顶空样品进行预浓缩,并通过气相色谱/质谱进行分析。在等效的时间点评估脂肪生成分化。总共 11 种 VOC 的排放显示出相关的变化,并进行了更详细的分析。其中一些 VOC,包括乙醛,在脂肪生成分化的 ASC 上方的顶空中存在明显差异,似乎与代谢过程有关。此外,我们的数据表明,VOC 顶空分析可能是一种合适的、非侵入性的工具,可用于体外(间充质干细胞)细胞的代谢监测。