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September 26, 2025Science Advances7 citations

Glioblastoma exploits ATP from leading-edge astrocytes to fuel its infiltrative growth revealed by spatially resolved chimeric analysis

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GYGaoxia YangXNXiaodong NiuJGJiangtao Gan

Key Points

  • Infiltrative glioblastoma up-regulates creatine kinase brain type at the leading edge, enhancing metabolic support.
  • SCAR identifies distinct spatial characteristics of glioblastoma interactions with the tumor microenvironment.
  • Blocking GBM's use of ATP via cyclocreatine may inhibit its infiltrative growth.
  • The study demonstrates the importance of spatial context in metabolic rewiring of glioblastoma cells.

Abstract

Glioblastoma (GBM) is the deadliest primary brain tumor that frequently infiltrates surrounding brain tissue, causing therapy resistance and recurrence. The molecular characteristics of infiltrating GBM cells and their interactions with brain cells remain poorly understood, partly due to limited spatial tools for distinguishing tumor cells from those in the tumor microenvironment (TME). Here, we introduce Spatially-resolved Chimeric AnalyzeR (SCAR), a computational tool for dissecting tumor-TME gene expression in spatial transcriptomics of human-mouse chimeric cancer models. SCAR reveals spatially distinct characteristics of GBM and their interactions with TME, identifying that infiltrative GBM up-regulates creatine kinase brain type (CKB) at the astrocyte-enriched leading edge compared to the tumor core. Mechanistically, GBM-secreted CKB catalyzes the extracellular conversion of astrocyte-supplied adenosine triphosphate (ATP) and creatine into phosphocreatine, providing metabolic support for infiltrative tumor growth, which can be blocked by cyclocreatine. These results provide proof-of-concept validation of SCAR and demonstrate spatial context–dependent metabolic rewiring of GBM cells, with implications for therapies targeting infiltrative GBM.

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Cite This Study

Yang et al. (2025) studied this question.

synapsesocial.com/papers/68d6c671b1249cec298b2108https://doi.org/10.1126/sciadv.adv5673
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Also Consider

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  1. 1Integrative spatial analysis reveals a multi-layered organization of glioblastoma2024 · 368 citations
  2. 2The Allen Brain Atlas: 5 years and beyond2009 · 336 citations
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  4. 4ATP mediates fast synaptic transmission in mammalian neurons1992 · 544 citations
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