Scientific article
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English

In vivo measurements of change in tissue oxygen level during irradiation reveal novel dose rate dependence

Published inRadiotherapy and oncology, vol. 201, 110539
Publication date2024-12
First online date2024-09-17
Abstract

Background and purpose: This study aimed to investigate the radiochemical oxygen depletion (ROD) in vivo by directly measuring oxygen levels in various mouse tissues during ultra-high dose rate (UHDR) irradiation at clinically relevant doses and dose rates.

Materials and methods: Mice bearing subcutaneous human glioblastoma (U-87 MG) tumors were used for tumor and normal tissue (skin, muscle, brain) measurements. An oxygen-sensitive phosphorescent probe (Oxyphor PtG4) was injected into the tissues, and oxygen levels were monitored using a fiberoptic phosphorometer during UHDR irradiation with a 6 MeV electron linear accelerator (LINAC). Dose escalation experiments (10-40 Gy) were performed at a dose rate of 1300 Gy/s, and dose rate escalation experiments were conducted at a fixed dose of 40 Gy with dose rates ranging from 2 to 101 Gy/s.

Results: Radiation-induced change in tissue oxygenation (ΔpO2 ) increased linearly with dose and correlated with baseline tissue oxygenation levels in the range of 0 - 30 mmHg. At higher baseline tissue oxygenation levels, such as those observed in muscle and brain, there was no corresponding increase in ΔpO2 . When we modulated dose rate, ΔpO2 increased steeply up to ∼ 20 Gy/s and plateaued thereafter. The relationship between ΔpO2 and dose rate showcases the interplay between ROD and reoxygenation.

Conclusion: While UHDR irradiation induces measurable oxygen depletion in tissues, the observed changes in oxygenation levels do not support the hypothesis that ROD-induced radioresistance is responsible for the FLASH tissue-sparing effect at clinically relevant doses and dose rates. These findings highlight the need for further investigation into alternative mechanisms underlying the FLASH effect.

Keywords
  • Animals
  • Brain Neoplasms / radiotherapy
  • Cell Line, Tumor
  • Dose-Response Relationship, Radiation
  • Glioblastoma / radiotherapy
  • Humans
  • Mice
  • Oxygen / metabolism
  • Radiotherapy Dosage
Citation (ISO format)
GRILJ, Veljko et al. In vivo measurements of change in tissue oxygen level during irradiation reveal novel dose rate dependence. In: Radiotherapy and oncology, 2024, vol. 201, p. 110539. doi: 10.1016/j.radonc.2024.110539
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Identifiers
Journal ISSN0167-8140
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