Liu Yijun, Muñoz Nathalie, Bunnell Bruce A, Logan Timothy M, Ma Teng
Department of Chemical and Biomedical Engineering, Florida State University, Tallahassee, Florida, USA.
Institute of Molecular Biophysics, Florida State University, Tallahassee, Florida, USA.
Stem Cells. 2015 Nov;33(11):3368-81. doi: 10.1002/stem.2097. Epub 2015 Aug 14.
Human mesenchymal stem cells (hMSCs) are intrinsically heterogeneous and comprise subpopulations that differ in their proliferation, multi-potency, and functional properties, which are commonly demonstrated by culturing hMSCs at different plating densities. The objective of this study was to investigate the metabolic profiles of different subpopulations of hMSC by testing the hypothesis that the clonogenic hMSC subpopulation, which is selectively enriched in clonal density (CD) and low density (LD) culture (10 and 100 cells per square centimeter, respectively), possesses a metabolic phenotype that differs from that of hMSC in medium- or high-density (MD: 1,000 and HD: 3,000 cells per square centimeter, respectively). Cells at CD and LD conditions exhibited elevated expression of CD146 and colony forming unit-fibroblast compared with cells at MD- or HD. Global metabolic profiles revealed by gas chromatography-mass spectrometry of cell extracts showed clear distinction between LD and HD cultures, and density-dependent differences in coupling of glycolysis to the TCA cycle. Metabolic inhibitors revealed density-dependent differences in glycolysis versus oxidative phosphorylation (OXPHOS) for ATP generation, in glutamine metabolism, in the dependence on the pentose phosphate pathway for maintaining cellular redox state, and sensitivity to exogenous reactive oxygen species. We also show that active OXPHOS is not required for proliferation in LD culture but that OXPHOS activity increases senescence in HD culture. Together, the results revealed heterogeneity in hMSC culture exists at the level of primary metabolism. The unique metabolic characteristics of the clonogenic subpopulation suggest a novel approach for optimizing in vitro expansion of hMSCs.
人间充质干细胞(hMSCs)本质上是异质性的,包含在增殖、多能性和功能特性方面存在差异的亚群,这通常通过在不同接种密度下培养hMSCs来证明。本研究的目的是通过检验以下假设来研究hMSC不同亚群的代谢谱:在克隆密度(CD)和低密度(LD)培养(分别为每平方厘米10个和100个细胞)中选择性富集的克隆形成hMSC亚群具有与中密度或高密度(MD:每平方厘米1000个细胞和HD:每平方厘米3000个细胞)hMSC不同的代谢表型。与MD或HD条件下的细胞相比,CD和LD条件下的细胞CD146和集落形成单位-成纤维细胞的表达升高。通过细胞提取物的气相色谱-质谱分析揭示的整体代谢谱显示LD和HD培养之间有明显区别,以及糖酵解与三羧酸循环耦合的密度依赖性差异。代谢抑制剂揭示了在ATP生成的糖酵解与氧化磷酸化(OXPHOS)、谷氨酰胺代谢、维持细胞氧化还原状态对磷酸戊糖途径的依赖性以及对外源活性氧的敏感性方面的密度依赖性差异。我们还表明,LD培养中的增殖不需要活跃的OXPHOS,但OXPHOS活性会增加HD培养中的衰老。总之,结果表明hMSC培养中的异质性存在于初级代谢水平。克隆形成亚群独特的代谢特征为优化hMSCs的体外扩增提供了一种新方法。