Department of Biomedical Surgical and Dental Sciences, University of Milan, Milan, Italy; IRCCS Istituto Ortopedico Galeazzi, Milan, Italy.
IRCCS Istituto Ortopedico Galeazzi, Milan, Italy.
Cytotherapy. 2023 Jul;25(7):704-711. doi: 10.1016/j.jcyt.2023.03.004. Epub 2023 Apr 14.
A large part of mesenchymal stromal cell (MSC) regenerative and immunomodulatory action is mediated by paracrine signaling. Hence, an increasing body of evidence acknowledges the potential of MSC secretome in a variety of preclinical and clinical scenarios. Mid-term serum deprivation is a common approach in the pipeline of MSC secretome production. Nevertheless, up to now, little is known about the impact of this procedure on the metabolic status of donor cells.
Here, through untargeted differential metabolomics, we revealed an impairment of mitochondrial metabolism in adipose-derived MSCs exposed for 72 h to serum deprivation.
This evidence was further confirmed by the significant accumulation of reactive oxygen species and the reduction of succinate dehydrogenase activity. Probably as a repair mechanism, an upregulation of mitochondrial superoxide dismutase was also induced.
Of note, the analysis of mitochondrial functionality indicated that, despite a significant reduction of basal respiration and ATP production, serum-starved MSCs still responded to changes in energy demand. This metabolic phenotype correlates with the obtained evidence of mitochondrial elongation and branching upon starvation.
间充质基质细胞(MSC)的再生和免疫调节作用很大一部分是通过旁分泌信号介导的。因此,越来越多的证据承认 MSC 分泌组在各种临床前和临床情况下的潜力。中期血清剥夺是 MSC 分泌组生产过程中的常见方法。然而,到目前为止,人们对这一过程对供体细胞代谢状态的影响知之甚少。
在这里,我们通过非靶向差异代谢组学揭示了暴露于血清剥夺 72 小时的脂肪来源 MSC 中线粒体代谢受损。
这一证据通过活性氧的显著积累和琥珀酸脱氢酶活性的降低得到进一步证实。可能作为一种修复机制,线粒体超氧化物歧化酶的上调也被诱导。
值得注意的是,线粒体功能分析表明,尽管基础呼吸和 ATP 产生显著减少,但饥饿的 MSC 仍然对能量需求的变化做出反应。这种代谢表型与饥饿时观察到的线粒体伸长和分支的证据相关。