Published January 1, 2024 | Version v1
Journal article Open

The Impact of Dose Rate on the Tumor Microenvironment Using Flattening- fi lter-free Beams

  • 1. Hacettepe Univ, Stem Cell Res & Applicat Ctr, Ankara, Turkiye
  • 2. Hacettepe Univ, Basic Oncol Dept, Fac Med, Ankara, Turkiye
  • 3. Hacettepe Univ, Fac Pharm, Dept Toxicol, Ankara, Turkiye
  • 4. Hacettepe Univ, Fac Med, Dept Radiat Oncol, Ankara, Turkiye
  • 5. Hacettepe Univ, Pathol Dept, Fac Med, Ankara, Turkiye

Description

Aims: Recently, dose delivery technology has rapidly evolved with flattening filter-free beams (FFF), and the biological effects of high dose rates are a matter of interest. We hypothesized that FFF beams at different dose rates obtained with modern linear accelerators have different effects on the TME. Materials and methods: The B16 -F10 melanoma syngeneic tumor model was established, and mice were randomized to 2 different doses (2 Gy and 10 Gy) and 3 different dose rates (1 Gy/min, 6 Gy/min, and 14 Gy/min) along with the control group. Euthanasia was performed on the seventh day after RT, and intracardiac blood was collected for a comet assay. Tumors were harvested and examined histomorphologically and immunohistochemically. Statistical analyses were performed using SPSS software version 23 (SPSS Inc., Chicago, IL, USA). Results: The daily growth rate was uniform, and no difference was observed between tumor volumes across all three dose rates for each dose. Deoxyribonucleic acid (DNA) damage in blood mononuclear cells was not affected by dose or dose rate. In the TME histomorphological examination, the number of mitosis is less in the 10 Gy arm, whereas the pleomorphism score was greater. Nevertheless, varying dose rates had no effect on the number of mitosis or the pleomorphism score. The severity of the in flammation, cell densities in the TME, and expression of immunohistochemical markers were comparable across all doses and dose rates. Conclusion: In our study involving the B16 -F10 syngeneic tumor model, varying dose rates obtained with FFF beams had no effect on tumor volume, blood mononuclear cell DNA damage, or TME parameters. However, in order to fully understand the biological impacts of novel techniques, our study should be validated with alternative preclinical setups. (c) 2024 The Royal College of Radiologists. Published by Elsevier Ltd. All rights reserved.

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