人脑
碳水化合物代谢
新陈代谢
化学
神经科学
生物
生物化学
作者
Andrew J. Scott,Anjali Mittal,Baharan Meghdadi,Alexandra O’Brien,Justine Bailleul,Sravya Palavalasa,Abhinav Achreja,Weihua Zhou,Jie Xu,Angelica Lin,Kari Wilder-Romans,Ningning Liang,Ayesha U. Kothari,Navyateja Korimerla,Donna M. Edwards,Zhe Wu,Jiane Feng,Sophia Su,Li Zhang,Peter Sajjakulnukit
出处
期刊:Nature
[Nature Portfolio]
日期:2025-09-03
卷期号:646 (8084): 413-422
被引量:23
标识
DOI:10.1038/s41586-025-09460-7
摘要
C-labelled glucose into patients and mice with brain cancer, coupled with quantitative metabolic flux analysis, to map the fates of glucose-derived carbon in tumour versus cortex. Through direct and comprehensive measurements of carbon and nitrogen labelling in both cortex and glioma tissues, we identify profound metabolic transformations. In the human cortex, glucose carbons fuel essential physiological processes, including tricarboxylic acid cycle oxidation and neurotransmitter synthesis. Conversely, gliomas downregulate these processes and scavenge alternative carbon sources such as amino acids from the environment, repurposing glucose-derived carbons to generate molecules needed for proliferation and invasion. Targeting this metabolic rewiring in mice through dietary amino acid modulation selectively alters glioblastoma metabolism, slows tumour growth and augments the efficacy of standard-of-care treatments. These findings illuminate how aggressive brain tumours exploit glucose to suppress normal physiological activity in favour of malignant expansion and offer potential therapeutic strategies to enhance treatment outcomes.
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