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Identifying Biomarkers of Wharton’s Jelly Mesenchymal Stromal Cells Using a Dynamic Metabolic Model: The Cell Passage Effect

机译:使用动态代谢模型识别沃顿商学院的果冻间质基质细胞的生物标志物:细胞传代效应

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摘要

Because of their unique ability to modulate the immune system, mesenchymal stromal cells (MSCs) are widely studied to develop cell therapies for detrimental immune and inflammatory disorders. However, controlling the final cell phenotype and determining immunosuppressive function following cell amplification in vitro often requires prolonged cell culture assays, all of which contribute to major bottlenecks, limiting the clinical emergence of cell therapies. For instance, the multipotent Wharton’s Jelly mesenchymal stem/stromal cells (WJMSC), extracted from human umbilical cord, exhibit immunosuppressive traits under pro-inflammatory conditions, in the presence of interferon-γ (IFNγ), and tumor necrosis factor-α (TNFα). However, WJMSCs require co-culture bioassays with immune cells, which can take days, to confirm their immunomodulatory function. Therefore, the establishment of robust cell therapies would benefit from fast and reliable characterization assays. To this end, we have explored the metabolic behaviour of WJMSCs in in vitro culture, to identify biomarkers that are specific to the cell passage effect and the loss of their immunosuppressive phenotype. We clearly show distinct metabolic behaviours comparing WJMSCs at the fourth (P4) and the late ninth (P9) passages, although both P4 and P9 cells do not exhibit significant differences in their low immunosuppressive capacity. Metabolomics data were analysed using an in silico modelling platform specifically adapted to WJMSCs. Of interest, P4 cells exhibit a glycolytic metabolism compared to late passage (P9) cells, which show a phosphorylation oxidative metabolism, while P4 cells show a doubling time of 29 h representing almost half of that for P9 cells (46 h). We also clearly show that fourth passage WJMSCs still express known immunosuppressive biomarkers, although, this behaviour shows overlapping with a senescence phenotype.
机译:由于它们具有调节免疫系统的独特能力,因此广泛研究了间充质基质细胞(MSC)来开发针对有害免疫和炎性疾病的细胞疗法。但是,在体外细胞扩增后,控制最终细胞表型并确定免疫抑制功能通常需要延长细胞培养时间,所有这些都会造成主要瓶颈,从而限制了细胞疗法的临床应用。例如,从人脐带提取的多能沃顿氏胶质间充质干/基质细胞(WJMSC)在促炎条件下,存在干扰素-γ(IFNγ)和肿瘤坏死因子-α(TNFα)的情况下表现出免疫抑制特性。 )。但是,WJMSC需要与免疫细胞共培养生物测定法,这可能需要几天时间才能确认其免疫调节功能。因此,建立可靠的细胞疗法将受益于快速可靠的特征分析。为此,我们已经探索了WJMSC在体外培养中的代谢行为,以鉴定对细胞传代作用及其免疫抑制表型丧失具有特异性的生物标志物。我们清楚地显示了比较WJMSC在第四代(P4)和第九代(P9)后期的独特代谢行为,尽管P4和P9细胞在其低免疫抑制能力上均未表现出显着差异。使用专门适合WJMSC的计算机模拟平台分析代谢组学数据。令人感兴趣的是,与晚期传代(P9)细胞相比,P4细胞显示出糖酵解代谢,后者显示出磷酸化氧化代谢,而P4细胞显示的倍增时间为29小时,几乎是P9细胞(46小时)的一半。我们还清楚地表明,第四代WJMSC仍表达已知的免疫抑制生物标志物,尽管这种行为显示与衰老表型重叠。

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