王乙妃, 张其乐, 李鑫, 高梦婷, 张丽, 丁安伟, 夏文余, 姚卫峰. 福多司坦干预炎症微环境下肺癌细胞的代谢组学研究J. 药学学报, 2022,57(2): 419-427. doi: 10.16438/j.0513-4870.2021-1094
引用本文: 王乙妃, 张其乐, 李鑫, 高梦婷, 张丽, 丁安伟, 夏文余, 姚卫峰. 福多司坦干预炎症微环境下肺癌细胞的代谢组学研究J. 药学学报, 2022,57(2): 419-427. doi: 10.16438/j.0513-4870.2021-1094
WANG Yi-fei, ZHANG Qi-le, LI Xin, GAO Meng-ting, ZHANG Li, DING An-wei, XIA Wen-yu, YAO Wei-feng. Effect of fudosteine on lung cancer cells in an inflammatory microenvironment based on metabolomicsJ. Acta Pharmaceutica Sinica, 2022,57(2): 419-427. doi: 10.16438/j.0513-4870.2021-1094
Citation: WANG Yi-fei, ZHANG Qi-le, LI Xin, GAO Meng-ting, ZHANG Li, DING An-wei, XIA Wen-yu, YAO Wei-feng. Effect of fudosteine on lung cancer cells in an inflammatory microenvironment based on metabolomicsJ. Acta Pharmaceutica Sinica, 2022,57(2): 419-427. doi: 10.16438/j.0513-4870.2021-1094

福多司坦干预炎症微环境下肺癌细胞的代谢组学研究

Effect of fudosteine on lung cancer cells in an inflammatory microenvironment based on metabolomics

  • 摘要: 本研究借助GC-MS代谢组学技术研究福多司坦干预炎症微环境下肺癌A549细胞的作用机制。代谢组学结果鉴定出苹果酸、异亮氨酸、乳糖、肌醇半乳糖苷二水合物、肌酸酐、葡萄糖醛酸、油酸、磷酸、S-(羧甲基)-L-半胱氨酸、塔格糖和尿苷共11个内源性代谢物可作为炎症微环境状态下肺癌A549细胞的药效生物标志物。通路富集分析显示主要包括异亮氨酸、缬氨酸、亮氨酸、甘氨酸、丝氨酸和苏氨酸等氨基酸代谢途径与半乳糖、磷酸戊糖等碳水化合物代谢途径发生明显扰动。福多司坦对炎症状态下肺癌A549细胞有明显降低炎症因子水平与纠正肺癌炎症微环境的作用,潜在机制为对多种氨基酸代谢物及氨基酸等代谢途径的干预作用。该研究揭示了福多司坦有可能通过改善肺癌炎症微环境来扼制炎症的持续反应从而防止肺癌的进一步恶化。

     

    Abstract: GC-MS metabolomics was used to investigate the effects of fudosteine on lung cancer A549 cells in an inflammatory microenvironment. Eleven metabolites (malic acid, isoleucine, lactose, galactinol, creatinine, gluconic acid, oleic acid, phosphate, S-carboxymethyl-L-cysteine, uridine and tagatose) were identified in the metabolomics results and could be used as biomarkers of fudosteine treatment. Pathway enrichment analysis showed that the metabolic pathways of amino acids including isoleucine, valine, leucine, glycine, serine and threonine were significantly altered, as were the metabolic pathways of carbohydrates such as galactose and pentose phosphate. Fudosteine significantly reduced the level of inflammatory factors in A549 cells and corrected the inflammatory microenvironment by interfering with the effects of amino acid metabolites and amino acid metabolism pathways. This study reveals that fudosteine may be able to inhibit the continuous inflammatory response and prevent the further progression of lung cancer by suppressing the inflammatory microenvironment.

     

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