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Updated: Aug 5, 2026

Radiosynthesis, Quality Control, and Small Animal Positron Emission Tomography Imaging of 68Ga-Labelled Nano Molecules
Published on: October 4, 2024
Development and validation of a gamma spectrometry method for actinium-225 quantification and routine radionuclidic
Raquel Espino López1, Candelaria Candy Quiroga Castro2, Mehdi Boudjemeline2
1Laboratoire des Sciences Radiopharmaceutiques (LSR), Centre Integré de Cancérologie, 2250 Boulevard Henri-Bourassa, QC, G1J 0J9, Canada; Laboratoire de Biomatériaux pour L'Imagerie Médicale (BIM), Centre de Recherche du Centre Hospitalier Universitaire de Québec-Université Laval, 2705 Boul. Laurier, QC, G1V 4G2, Canada.
Abstract:
The development and validation of analytical methods are critical to ensure the quality, safety, and efficacy of radiopharmaceutical products. This study describes the development and comprehensive validation of a simple, accurate, and reproducible analytical method for the quantitative determination of 225Ac radionuclidic purity using high-purity germanium gamma spectrometry. Validation was performed according to ICH Q2/EANM guidelines and assessed key performance characteristics, including specificity, accuracy, precision, repeatability, linearity, minimum detectable activity/limit of quantification, and range. The method demonstrated excellent specificity, as sufficient resolution was achieved to distinguish gamma emissions relevant to potential impurities in 225Ac samples. Linearity was established over the activity range of 1.55-3060 Bq, yielding a correlation coefficient greater than 0.99. Accuracy studies showed mean recovery values within 98.2 ± 2.4%, confirming the method's trueness. Precision was evaluated through intra-day and inter-day studies, with ANOVA confirming no statistically significant inter-day variability, and produced relative standard deviation values below 5%, indicating acceptable repeatability and intermediate precision. The minimum detectable activity and limit of quantification were determined to be 0.64 Bq and 1.55 Bq, respectively, demonstrating sufficient sensitivity for routine analysis of 225Ac. However, it should be noted that detection sensitivity for long-lived contaminants (e.g., 227Ac and 229Th) is limited by their low gamma emission intensities and may require delayed measurement or complementary analytical techniques for definitive quantification at low activity levels. Nevertheless, the results of the method-development and validation work support its application to the analysis of 225Ac radiopharmaceuticals and confirm its appropriateness as a routine assay for periodic radionuclidic-purity assessment.
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