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September 10, 2025International Journal of Biological SciencesOpen Access

The glucose sensor NSUN2-m5C modification regulates tumor-immune glucose metabolism reprogramming to drive hepatocellular carcinoma evolution

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Authors

JHJing HeBLBoqiang LiuWZWeijun Zhao

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Overview

Analysis uncovers the role of glucose metabolism in tumor evolution and immune responses in HCC, suggesting new therapies.

Key Points

  • Glucose metabolism drives tumor evolution and enhances CD8+ T cell dysfunction, promoting hepatocellular carcinoma progression.
  • Key findings included the identification of NSUN2 as a regulator of GLUT1, stabilizing glucose uptake in tumor cells.
  • A murine tumor evolution model facilitated the identification of critical genes altering during tumor evolution across various samples.
  • The study suggests that targeting the GLUT1/NSUN2 axis, along with PD-L1 blockade, may reverse immunosuppression and combat tumor evolution.

Cite This Study

He et al. (2025) studied this question.

synapsesocial.com/papers/68c1ae6654b1d3bfb60e62f3https://doi.org/10.7150/ijbs.115610
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