School of Biosciences, Faculty of Health and Medical Sciences, Taylor's University, 47500 Subang Jaya, Selangor, Malaysia.
School of Medicine, Faculty of Health and Medical Sciences, Taylor's University, 47500 Subang Jaya, Selangor, Malaysia.
Nucl Med Biol. 2020 Nov-Dec;90-91:55-68. doi: 10.1016/j.nucmedbio.2020.09.005. Epub 2020 Sep 30.
Theranostics in nuclear medicine refers to personalized patient management that involves targeted therapy and diagnostic imaging using a single or combination of radionuclide (s). The radionuclides emit both alpha (α) or beta (β) particles and gamma (γ) rays which possess therapeutic and diagnostic capabilities, respectively. However, the production of these radionuclides often faces difficulties due to high cost, complexity of preparation methods and that the products are often sourced far from the healthcare facilities, hence losing activity due to radioactive decay during transportation. Subject to the availability of a nuclear reactor within an accessible distance from healthcare facilities, neutron activation is the most practical and cost-effective route to produce radionuclides suitable for theranostic purposes. Holmium-166 (Ho), Lutetium-177 (Lu), Rhenium-186 (Re), Rhenium-188 (Re) and Samarium-153 (Sm) are some of the most promising neutron-activated radionuclides that are currently in clinical practice and undergoing clinical research for theranostic applications. The aim of this paper is to review the physical characteristics, current clinical applications and future prospects of these neutron activated radionuclides in theranostics. The production, physical properties, validated clinical applications and clinical studies for each neutron-activated radionuclide suitable for theranostic use in nuclear medicine are reviewed in this paper.
核医学中的治疗学诊断指的是通过单一或组合放射性核素(s)进行靶向治疗和诊断成像的个性化患者管理。放射性核素同时发射阿尔法(α)或贝塔(β)粒子和伽马(γ)射线,分别具有治疗和诊断能力。然而,由于成本高、制备方法复杂以及产品通常来自远离医疗保健设施的地方,因此这些放射性核素的生产常常面临困难,在运输过程中由于放射性衰变而失去活性。在可从医疗保健设施获得的距离内存在核反应堆的情况下,中子激活是生产适合治疗学诊断目的的放射性核素的最实用和最具成本效益的途径。钬-166(Ho)、镥-177(Lu)、铼-186(Re)、铼-188(Re)和钐-153(Sm)是目前临床实践中正在进行治疗学诊断应用的临床研究的一些最有前途的中子激活放射性核素。本文的目的是综述这些用于治疗学诊断的中子激活放射性核素的物理特性、当前临床应用和未来前景。本文综述了适用于核医学治疗学诊断用途的每种中子激活放射性核素的生产、物理特性、已验证的临床应用和临床研究。