Metabolomics, Transcriptome and Single-Cell RNA Sequencing Analysis of the Metabolic Heterogeneity between Oral Cancer Stem Cells and Differentiated Cancer Cells

转录组 代谢途径 代谢组学 癌细胞 生物 癌症干细胞 糖酵解 嘧啶代谢 生物化学 柠檬酸循环 甘油磷脂 干细胞 细胞 新陈代谢 细胞生物学 化学 癌症 生物信息学 基因 遗传学 基因表达 嘌呤 磷脂
作者
Yuwen Miao,Pan Wang,Jinyan Huang,Xin Qi,Yingjiqiong Liang,Wenquan Zhao,Huiming Wang,Jiong Lyu,Huiyong Zhu
出处
期刊:Cancers [Multidisciplinary Digital Publishing Institute]
卷期号:16 (2): 237-237 被引量:9
标识
DOI:10.3390/cancers16020237
摘要

Understanding the distinct metabolic characteristics of cancer stem cells (CSC) may allow us to better cope with the clinical challenges associated with them. In this study, OSCC cell lines (CAL27 and HSC3) and multicellular tumor spheroid (MCTS) models were used to generate CSC-like cells. Quasi-targeted metabolomics and RNA sequencing were used to explore altered metabolites and metabolism-related genes. Pathview was used to display the metabolites and transcriptome data in a KEGG pathway. The single-cell RNA sequencing data of six patients with oral cancer were analyzed to characterize in vivo CSC metabolism. The results showed that 19 metabolites (phosphoethanolamine, carbamoylphosphate, etc.) were upregulated and 109 metabolites (2-aminooctanoic acid, 7-ketocholesterol, etc.) were downregulated in both MCTS cells. Integration pathway analysis revealed altered activity in energy production (glycolysis, citric cycle, fatty acid oxidation), macromolecular synthesis (purine/pyrimidine metabolism, glycerophospholipids metabolism) and redox control (glutathione metabolism). Single-cell RNA sequencing analysis confirmed altered glycolysis, glutathione and glycerophospholipid metabolism in in vivo CSC. We concluded that CSCs are metabolically inactive compared with differentiated cancer cells. Thus, oral CSCs may resist current metabolic-related drugs. Our result may be helpful in developing better therapeutic strategies against CSC.
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