The Glucose Transporter 5 Enhances CAR-T Cell Metabolic Function and Anti-tumour Durability

Bakir Valentić1,2, Andre Kelly1,2, Alexander A Shestov1,2

  • 1Center for Cellular Immunotherapies, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA 19104, USA.

Research Square
|May 20, 2024
PubMed

Insights

Engineered GLUT5 enhances CAR-T cell anti-tumour function by utilizing fructose, improving metabolic fitness and overcoming glucose depletion in the tumour microenvironment.

Area of Science:

  • Immunology
  • Metabolic Engineering
  • Oncology

Background:

  • Activated T cells rely on aerobic glycolysis for energy.
  • Glucose transporters (GLUTs) are crucial for T cell metabolism and anti-tumour activity.
  • Fructose metabolism in T cells, particularly via GLUT5, remains underexplored for CAR-T cell enhancement.

Approach:

  • Investigated the role of GLUT5 in CAR-T cell metabolism using fructose as an alternative fuel source.
  • Utilized tracer technology (¹³C₆ fructose) to track metabolic reprogramming in CAR-T cells.
  • Assessed CAR-T cell function, including cytotoxicity and migration, in glucose-depleted conditions.

Key Points:

  • GLUT5 expression enables T cells to utilize fructose, supporting glycolytic capacity and ATP production in glucose-free conditions.
  • Fructose fuels CAR-T cell expansion, cytotoxicity, and migration, enhancing their effector functions.
  • GLUT5 expression improved anti-tumour activity in an acute myeloid leukaemia (AML) xenograft model, even without fructose supplementation.

Conclusions:

  • GLUT5 enhances CAR-T cell resilience and anti-tumour function in fructose-rich tumour microenvironments.
  • GLUT5 offers a novel strategy to overcome glucose depletion and improve CAR-T cell efficacy.
  • This metabolic engineering approach has direct translational relevance for improving cancer immunotherapy.

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