Instituto de Pesquisas Energéticas e Nucleares IPEN-CNEN, Av. Professor Lineu Prestes, 2242, Cidade Universitária, CEP 05508-000, São Paulo, SP, Brazil.
Instituto de Pesquisas Energéticas e Nucleares IPEN-CNEN, Av. Professor Lineu Prestes, 2242, Cidade Universitária, CEP 05508-000, São Paulo, SP, Brazil.
Appl Radiat Isot. 2023 Oct;200:110926. doi: 10.1016/j.apradiso.2023.110926. Epub 2023 Jul 5.
Since 2001, Nuclear and Energy Research Institute IPEN-CNEN has produced weekly ultrapure iodine-123, using a manual irradiation system, fully developed in IPEN. Iodine-123 radiopharmaceuticals have been produced and distributed to hospitals and clinics of nuclear medicine, where several diagnostic imaging procedures for thyroid, brain and cardiovascular functions are performed. Due to the short half-life and emission of low-energy photons, this radioisotope becomes suitable for diagnosis in children. In the present work, the technical and constructive aspects of a new fully automated irradiation system, dedicated to I routine production, employing enriched xenon-124 gas as the target material is presented. This new system consists of a target, a water and helium cooling system, a cryogenic system, an electric power system, and a control and process monitoring unit, composed of supervisory software, connected to a programmable logic controller via personal computer. In this new concept, there is no need for human intervention during radioisotope production, reducing the possibility of eventual failures or incidents involving radioactive material. By using this new system, a specific yield of 2.70 mCi/μAh per irradiation was achieved in validation runs, and after three years of routine production of iodine-123, the system showed reliability and resilience.
自 2001 年以来,核与能源研究所 IPEN-CNEN 采用完全由 IPEN 开发的手动辐照系统,每周生产超纯碘-123。已生产并分发给核医学医院和诊所的放射性碘-123 药物,可用于甲状腺、大脑和心血管功能的多项诊断成像程序。由于半衰期短且发射低能量光子,这种放射性同位素适合儿童诊断。在目前的工作中,介绍了一种新的全自动辐照系统的技术和结构方面,该系统专门用于常规生产,使用浓缩氙-124 气体作为靶材料。该新系统由靶、水和氦冷却系统、低温系统、电力系统以及由监控软件组成的控制和过程监测单元组成,通过个人计算机与可编程逻辑控制器相连。在这个新概念中,在生产放射性同位素期间不需要人为干预,从而降低了涉及放射性材料的潜在故障或事故的可能性。通过使用该新系统,在验证运行中实现了每次辐照 2.70 mCi/μAh 的特定产率,并且在常规生产碘-123 三年后,该系统显示出可靠性和弹性。