Diagnostics (Oct 2022)

Radioembolization-Induced Changes in Hepatic [<sup>18</sup>F]FDG Metabolism in Non-Tumorous Liver Parenchyma

  • Manon N. Braat,
  • Caren van Roekel,
  • Marnix G. Lam,
  • Arthur J. Braat

DOI
https://doi.org/10.3390/diagnostics12102518
Journal volume & issue
Vol. 12, no. 10
p. 2518

Abstract

Read online

Background: [18F]FDG-PET/CT is increasingly used for response assessments after oncologic treatment. The known response criteria for [18F]FDG-PET/CT use healthy liver parenchyma as the reference standard. However, the [18F]FDG liver metabolism results may change as a result of the given therapy. The aim of this study was to assess changes in [18F]FDG liver metabolism after hepatic 90Y resin radioembolization. Methods: [18F]FDG-PET/CT scans prior to radioembolization and one and three months after radioembolization (consistent with the PERCIST comparability criteria), as well as 90Y-PET/CT scans, were analyzed using 3 cm VOIs. The FDG activity concentration and absorbed dose were measured. A linear mixed-effects logistic regression model and logistic mixed-effects model were used to assess the correlation between the FDG-activity concentration, absorbed dose, and biochemical changes. Results: The median SULVOI,liver at baseline was 1.8 (range = 1.2–2.8). The mean change in SULVOI,liver per month with an increase in time was 0.05 (95%CI 0.02–0.09) at p VOI,liver for every Gy increase in the absorbed dose was –0.04 (95%CI −0.22–0.14) at p = 0.67. The SULblood and SULspleen results showed no increase. Conclusions: The [18F]FDG metabolism in the normal liver parenchyma is significantly but mildly increased after radioembolization, which can interfere with its use as a threshold for therapy response.

Keywords