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Untargeted metabolomics reveals distinct metabolic reprogramming in endothelial cells co-cultured with CSC and non-CSC prostate cancer cell subpopulations

机译:未靶向的代谢组学揭示了与CSC和非CSC前列腺癌细胞亚群共培养的内皮细胞中独特的代谢重编程

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摘要

Tumour angiogenesis is an important hallmark of cancer and the study of its metabolic adaptations, downstream to any cellular change, can reveal attractive targets for inhibiting cancer growth. In the tumour microenvironment, endothelial cells (ECs) interact with heterogeneous tumour cell types that drive angiogenesis and metastasis. In this study we aim to characterize the metabolic alterations in ECs influenced by the presence of tumour cells with extreme metastatic abilities. Human umbilical vein endothelial cells (HUVECs) were subjected to different microenvironmental conditions, such as the presence of highly metastatic PC-3M and highly invasive PC-3S prostate cancer cell lines, in addition to the angiogenic activator vascular endothelial growth factor (VEGF), under normoxia. Untargeted high resolution liquid chromatography-mass spectrometry (LC-MS) based metabolomics revealed significant metabolite differences among the various conditions and a total of 25 significantly altered metabolites were identified including acetyl L-carnitine, NAD+, hypoxanthine, guanine and oleamide, with profile changes unique to each of the experimental conditions. Biochemical pathway analysis revealed the importance of fatty acid oxidation and nucleotide salvage pathways. These results provide a global metabolic preview that could help in selectively targeting the ECs aiding in either cancer cell invasion or metastasis in the heterogeneous tumour microenvironment.
机译:肿瘤血管生成是癌症的重要标志,任何细胞变化的下游对其代谢适应性的研究都可以揭示出抑制癌症生长的诱人靶标。在肿瘤微环境中,内皮细胞(EC)与驱动血管生成和转移的异质肿瘤细胞类型相互作用。在这项研究中,我们的目的是表征受具有极端转移能力的肿瘤细胞的存在影响的EC的代谢改变。人类脐静脉内皮细胞(HUVEC)受到不同的微环境条件的影响,例如存在高转移性PC-3M和高侵袭性PC-3S前列腺癌细胞系,以及血管生成激活剂血管内皮生长因子(VEGF),在常氧下。基于非靶向高分辨率液相色谱-质谱(LC-MS)的代谢组学研究表明,各种条件之间存在显着的代谢物差异,总共鉴定出25种显着改变的代谢物,包括乙酰基L-肉碱,NAD +,次黄嘌呤,鸟嘌呤和油酰胺,且谱线有所变化每个实验条件都是唯一的。生化途径分析揭示了脂肪酸氧化和核苷酸挽救途径的重要性。这些结果提供了一个全球性的新陈代谢预览,可以帮助选择性地靶向ECs,以帮助异种肿瘤微环境中的癌细胞侵袭或转移。

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