High-resolution X-ray fluorescence imaging of silver-based contrast agents by EDXRF spectrometry: A preclinical study

Martin, N. E.; Haro, M. Sofo; Mattea, F.; Malano, F.; Ceppi, S.; Valente, M.

Abstract

X-ray fluorescence computed tomography is a promising imaging technique for mapping the spatial distribution of heavy elements in biomedical applications. Silver (Ag)-based agents have been identified as radiosensitizers and imaging tracers due to their high atomic number (Z = 47), which enhances local dose deposition through increased photoelectric absorption, as well as their ability to promote reactive oxygen species generation under irradiation. These properties make Ag-based agents promising candidates for enhancing radiotherapy efficacy while simultaneously enabling X-ray-based imaging detection. In this work, an experimental setup has been developed and characterized to evaluate the feasibility to map Ag-based agents by means of energy dispersive Xray detection using the Amptek XR100 cadmium telluride (CdTe)-based spectrometer. The energy response of the spectrometer has been validated up to 85 keV, confirming its ability to resolve the Ag K alpha and K beta lines. Aqueous AgNO3 solutions with concentration from 0.033 up to 0.100% w/w, have been used to determine the system's detection sensitivity, yielding a limit of detection K alpha = 0.004% w/w. The overall imaging performance was assessed by scanning a cylindrical PMMA phantom containing Ag samples using a collimated X-ray beam. The resulting fluorescence maps have been reconstructed using the MLEM algorithm stabilized with total variation regularization. The reconstruction showed a linear correlation between reconstructed signal intensity and the Ag concentration (R2 = 0.999) and a minimum detectable concentration of 0.019% w/w. This evidence supports the ability of the developed experimental setup to obtain quantitative XFCT images of Ag-based agents. Furthermore, the system's quantitative accuracy validates its potential for integration into theranostic protocols.

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Título según WOS: ID WOS:001824058600001 Not found in local WOS DB
Título de la Revista: APPLIED RADIATION AND ISOTOPES
Volumen: 237
Editorial: PERGAMON-ELSEVIER SCIENCE LTD
Fecha de publicación: 2026
DOI:

10.1016/j.apradiso.2026.112782

Notas: ISI