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13C and 15N natural isotope abundance reflects breast cancer cell metabolism

机译:13C和15N的天然同位素丰度反映了乳腺癌细胞的新陈代谢

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摘要

Breast cancer is the most common cancer in women worldwide. Despite the information provided by anatomopathological assessment and molecular markers (such as receptor expression ER, PR, HER2), breast cancer therapies and prognostics depend on the metabolic properties of tumor cells. However, metabolomics have not provided a robust and congruent biomarker yet, likely because individual metabolite contents are insufficient to encapsulate all of the alterations in metabolic fluxes. Here, we took advantage of natural 13C and 15N isotope abundance to show there are isotopic differences between healthy and cancer biopsy tissues or between healthy and malignant cultured cell lines. Isotope mass balance further suggests that these differences are mostly related to lipid metabolism, anaplerosis and urea cycle, three pathways known to be impacted in malignant cells. Our results demonstrate that the isotope signature is a good descriptor of metabolism since it integrates modifications in C partitioning and N excretion altogether. Our present study is thus a starting point to possible clinical applications such as patient screening and biopsy characterization in every cancer that is associated with metabolic changes.
机译:乳腺癌是全世界女性中最常见的癌症。尽管解剖病理学评估和分子标记(例如受体表达ER,PR,HER2)提供了信息,但乳腺癌的治疗和预后取决于肿瘤细胞的代谢特性。但是,代谢组学还没有提供一个健壮且一致的生物标志物,可能是因为单个代谢物的含量不足以囊括代谢通量的所有变化。在这里,我们利用天然的 13 C和 15 N同位素丰度来显示健康和癌症活检组织之间或健康和恶性培养细胞系之间存在同位素差异。同位素质量平衡进一步表明,这些差异主要与脂质代谢,动脉粥样硬化和尿素循环有关,这是已知在恶性细胞中受到影响的三种途径。我们的结果表明,同位素特征是代谢的良好描述,因为它完全整合了C分配和N排泄的修饰。因此,我们的当前研究是可能的临床应用的起点,例如在与代谢变化相关的每种癌症中进行患者筛查和活检特性鉴定。

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