Gallium-68: Radiolabeling of Radiopharmaceuticals for PET Imaging - A Lot to Consider

M. Meisenheimer, Y. Saenko, E. Eppard
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引用次数: 14

Abstract

Gallium-68 was applied for positron emission tomography (PET) imaging already in the early beginnings of PET imaging. Today, with the introduction of PSMA-targeting tracers (e.g. PSMA-11, PSMA-617, and PSMA-I&T), the number of clinical applications of 68Ga-radiopharmaceuticals for diagnostic imaging has grown considerably. This development was initiated and supported already in the mid-2000s by the commercial availability of 68Ge/68Ga generators designed for clinical usage. This progression was accompanied by the development of several purification methods to generator eluate as well as sophisticated 68Ga-radiopharmaceuticals. Due to the 68Ga-rush, the need for implementation of gallium-68 (depending on production route) and its certain tracers into the pharmacopeia increased. Based on the specifications given by the pharmacopeia, interest focused on the development of automated synthesis systems, 99mTc-analog kits with regard to patient as well as operator safety.
镓-68:用于PET成像的放射性药物的放射性标记-许多需要考虑的问题
镓-68在正电子发射断层扫描(PET)成像的早期就被应用于正电子发射断层扫描(PET)成像。如今,随着psma靶向示踪剂(如PSMA-11、PSMA-617和PSMA-I&T)的引入,68ga放射性药物用于诊断成像的临床应用数量大幅增加。早在2000年代中期,为临床使用而设计的68Ge/68Ga发电机就已经开始商业化,并得到了支持。这一进展伴随着几种纯化方法的发展,以产生洗脱以及复杂的68ga放射性药物。由于68Ga-rush,需要将镓-68(取决于生产路线)及其某些示踪剂纳入药典。根据药典给出的规范,人们的兴趣集中在开发自动合成系统,99mtc模拟试剂盒,以确保患者和操作人员的安全。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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