Exploring how metabolism comes into play with radiations: a review

Purpose Ionizing radiation consists in the emission of photons such as X- and γ-rays or particles like carbon ions or α-particles. Glucose metabolism, encompassing glycolysis and oxidative phosphorylation, plays a central role in cellular energy production. Emerging evidence reveals a complex and reciprocal relationship between ionizing radiation and glucose metabolism, with significant implications for radiotherapy outcomes. This review provides a comprehensive overview of the molecular and cellular interactions between these two processes, highlighting both historical findings and recent advances.Conclusions Irradiation induces transient increases in glycolytic enzyme activity and temporary suppression of mitochondrial respiration, suggesting a coordinated metabolic response. Reactive oxygen species (ROS) and HIF-1α appear as central regulators of this response, though their dynamics remain a topic of ongoing investigation. Importantly, a high glycolytic phenotype is consistently associated with increased radioresistance and poor clinical prognosis. Furthermore, glucose metabolism intersects with other modulators of radiosensitivity, including cancer stem cells and cell-cycle regulation. By synthesizing key biological insights, this review lays a foundation for future in silico modeling efforts aimed at understanding and potentially overcoming treatment resistance through metabolic targeting.

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Publication Details

Journal
International Journal of Radiation Biology
Published
2026-09-15
DOI
https://doi.org/10.1080/09553002.2026.2730057
Primary Topic
Cancer, Hypoxia, and Metabolism
Type
article
Field-Weighted Citation Impact
0.00

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article

Exploring how metabolism comes into play with radiations: a review

Gibin Powathil, Mathilde Badoual, Anastasis Stephanou, Damian Bimbenet
International Journal of Radiation Biology
Cancer, Hypoxia, and Metabolism
article

Exploring how metabolism comes into play with radiations: a review

Gibin Powathil, Mathilde Badoual, Anastasis Stephanou, Damian Bimbenet
article en

Abstract

Purpose Ionizing radiation consists in the emission of photons such as X- and γ-rays or particles like carbon ions or α-particles. Glucose metabolism, encompassing glycolysis and oxidative phosphorylation, plays a central role in cellular energy production. Emerging evidence reveals a complex and reciprocal relationship between ionizing radiation and glucose metabolism, with significant implications for radiotherapy outcomes. This review provides a comprehensive overview of the molecular and cellular interactions between these two processes, highlighting both historical findings and recent advances.Conclusions Irradiation induces transient increases in glycolytic enzyme activity and temporary suppression of mitochondrial respiration, suggesting a coordinated metabolic response. Reactive oxygen species (ROS) and HIF-1α appear as central regulators of this response, though their dynamics remain a topic of ongoing investigation. Importantly, a high glycolytic phenotype is consistently associated with increased radioresistance and poor clinical prognosis. Furthermore, glucose metabolism intersects with other modulators of radiosensitivity, including cancer stem cells and cell-cycle regulation. By synthesizing key biological insights, this review lays a foundation for future in silico modeling efforts aimed at understanding and potentially overcoming treatment resistance through metabolic targeting.

International Journal of Radiation Biology
Institut polytechnique de Grenoble (FR), Centre National de la Recherche Scientifique (FR), Université Paris-Saclay (FR), Swansea University (GB), VetAgro Sup (FR), Institut National de Physique Nucléaire et de Physique des Particules (FR), Laboratoire de Physique des 2 Infinis Irène Joliot-Curie (FR), Translational Innovation in Medicine and Complexity (FR), Université Grenoble Alpes (FR)
Swansea University
Openalex Percentile: Top 99%
Cancer, Hypoxia, and Metabolism
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