Division of Nuclear Medicine, Department of Radiology, Mayo Clinic Rochester, Minneapolis, 55905, United States.
Curr Radiopharm. 2021;14(4):325-339. doi: 10.2174/1874471013999200820165734.
The present review describes the methodological aspects and prospects of the production of Positron Emission Tomography (PET) radiometals in a liquid target using low-medium energy medical cyclotrons. The main objective of this review is to delineate and discuss the critical factors involved in the liquid target production of radiometals, including type of salt solution, solution composition, beam energy, beam current, the effect of irradiation duration (length of irradiation) and challenges posed by in-target chemistry in relation with irradiation parameters. We also summarize the optimal parameters for the production of various radiometals in liquid targets. Additionally, we discuss the future prospects of PET radiometals production in the liquid targets for academic research and clinical applications. Significant emphasis has been given to the production of Ga using liquid targets due to the growing demand for Ga labeled PSMA vectors, [Ga]- Ga-DOTATATE, [Ga]Ga-DOTANOC and some upcoming Ga labeled radiopharmaceuticals. Other PET radiometals included in the discussion are Y, Zn and Zr.
本综述描述了使用中低能医用回旋加速器在液体靶中生产正电子发射断层扫描(PET)放射性金属的方法学方面和前景。本综述的主要目的是阐述和讨论液体靶中放射性金属生产涉及的关键因素,包括盐溶液的类型、溶液组成、束流能量、束流电流、辐照时间(辐照长度)的影响以及与辐照参数相关的靶内化学的挑战。我们还总结了在液体靶中生产各种放射性金属的最佳参数。此外,我们还讨论了液体靶中用于学术研究和临床应用的 PET 放射性金属生产的未来前景。由于对 Ga 标记的 PSMA 载体、[Ga]-Ga-DOTATATE、[Ga]Ga-DOTANOC 和一些即将推出的 Ga 标记放射性药物的需求不断增长,因此我们非常重视使用液体靶来生产 Ga。讨论中还包括其他 PET 放射性金属,如 Y、Zn 和 Zr。