Department of Radiopharmaceuticals, Nuclear Physics Institute of the Academy of Sciences of the Czech Republic, Husinec-Rez 130, 25068, Husinec-Rez, Czech Republic.
Department of Radiopharmacy, Charles University Prague, 11000, Prague, Czech Republic.
Sci Rep. 2024 Aug 20;14(1):19250. doi: 10.1038/s41598-024-70200-4.
Radiolabelled puromycin analogues will allow the quantification of protein synthesis through nuclear medicine-based imaging. A particularly useful application could be the non-invasive longitudinal visualisation of mycobacterial activity through direct quantification of puromycin binding. This study assesses the value of [Ga]Ga-DOTA-puromycin in the visualisation of mycobacteria through positron emission tomography combined with magnetic resonance imaging (µPET/MRI). The radiopharmaceutical was produced by previously published and validated methods. [Ga]Ga-DOTA-Puromycin imaging was performed on severe immunodeficient mice infected with Bacille Calmette-Guérin-derived M. Bovis (BCG). Acute and chronic infection stages were examined by µPET/MRI. A follow-up group of animals acted as controls (animals bearing S. aureus-derived infection and sterile inflammation) to assess tracer selectivity. [Ga]Ga-DOTA-puromycin-µPET/MRI images revealed the acute, widespread infection within the right upper shoulder and armpit. Also, [Ga]Ga-DOTA-puromycin signal sensitivity measured after a 12-week period was lower than that of [F]FDG-PET in the same animals. A suitable correlation between normalised uptake values (NUV) and gold standard histopathological analysis confirms accurate tracer accumulation in viable bacteria. The radiopharmaceutical showed infection selectivity over inflammation but accumulated in both M. Bovis and S. Aureus, lacking pathogen specificity. Overall, [Ga]Ga-DOTA-puromycin exhibits potential as a tool for non-invasive protein synthesis visualization, albeit without pathogen selectivity.
放射性标记的嘌呤霉素类似物将允许通过基于核医学的成像来定量蛋白质合成。一个特别有用的应用可能是通过直接定量嘌呤霉素结合来非侵入性地纵向可视化分枝杆菌活性。本研究评估了 [Ga]Ga-DOTA-嘌呤霉素在通过正电子发射断层扫描结合磁共振成像(µPET/MRI)可视化分枝杆菌中的价值。放射性药物是通过先前发表和验证的方法生产的。对感染了牛分枝杆菌衍生的 M. Bovis (BCG) 的严重免疫缺陷小鼠进行了[Ga]Ga-DOTA-Puromycin 成像。通过 µPET/MRI 检查急性和慢性感染阶段。一组后续动物作为对照(携带金黄色葡萄球菌衍生感染和无菌性炎症的动物),以评估示踪剂的选择性。[Ga]Ga-DOTA-puromycin-µPET/MRI 图像显示了右侧肩部和腋窝的急性、广泛感染。此外,在相同动物中,在 12 周后测量的[Ga]Ga-DOTA-puromycin 信号灵敏度低于[F]FDG-PET。归一化摄取值(NUV)与金标准组织病理学分析之间的适当相关性证实了活细菌中准确的示踪剂积累。放射性药物显示出对炎症的感染选择性,但在 M. Bovis 和 S. Aureus 中均有积累,缺乏病原体特异性。总体而言,[Ga]Ga-DOTA-puromycin 作为一种非侵入性蛋白质合成可视化工具具有潜力,但缺乏病原体特异性。