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(68)镓发生器集成系统:洗脱-纯化-浓缩一体化

(68)Ga generator integrated system: elution-purification-concentration integration.

作者信息

Le Van So

机构信息

Australian Nuclear Science and Technology Organisation, Gymea, Australia.

出版信息

Recent Results Cancer Res. 2013;194:43-75. doi: 10.1007/978-3-642-27994-2_4.

Abstract

A (68)Ge/(68)Ga generator combined with an automated (68)Ga eluate purification-concentration unit [radioisotope generator integrated system (RADIGIS)], specially designed for (68)Ga processing (RADIGIS-(68)Ga), was developed. The high-stability sorbents of a nanocrystalline structure Zr-Ti ceramic matrix were used for immobilizing the (68)Ge, and the (68)Ga was eluted from the sorbent column with 3.5 mL 0.05-0.1 M HCl solution following an optimized (68)Ga-elution schedule. The (68)Ge breakthrough <10(-3)% and no (68)Ge zone spreading/drift found in PET imaging of the (68)Ga generator column prove the excellent performance of the sorbents. (68)Ga eluate was purified on a small column of salt-form ion exchange resin using an aqueous alcohol solution mixture of hydrochloric and ascorbic acids, and halide salts. An alkali solution was used for stripping (68)Ga from the ion exchange resin column to obtain a purified (68)Ga solution, which is conditioned with acidic solution to obtain a final (68)Ga product in either 0.75 mL 0.5 M NaCl solution of pH 3-4 or 0.5 M sodium acetate or citrate solution of pH 5. The (68)Ge content in purified (68)Ga solution was <10(-6)%. An insignificant metallic contamination including (68)Zn found in the (68)Ga solution and its alkalinity-acidity were evaluated with respect to (68)Ga radiolabeling efficacy for DOTATATE and DOTATOC ligands. Quality control protocols were also developed to evaluate the quality of (68)Ga solution.

摘要

研发了一种结合自动(68)镓洗脱液净化浓缩单元的(68)锗/(68)镓发生器[放射性同位素发生器集成系统(RADIGIS)],该系统是专门为(68)镓处理设计的(RADIGIS-(68)镓)。采用具有纳米晶体结构的Zr-Ti陶瓷基体高稳定性吸附剂固定(68)锗,并按照优化的(68)镓洗脱程序,用3.5 mL 0.05-0.1 M盐酸溶液从吸附剂柱中洗脱(68)镓。(68)锗的穿透率<10^(-3)%,且在(68)镓发生器柱的PET成像中未发现(68)锗区扩散/漂移,这证明了吸附剂的优异性能。(68)镓洗脱液在一小柱盐形式离子交换树脂上进行净化,使用盐酸、抗坏血酸的乙醇水溶液混合物以及卤化物盐。用碱溶液从离子交换树脂柱上洗脱(68)镓,以获得纯化的(68)镓溶液,该溶液用酸性溶液调节,以在0.75 mL pH 3-4的0.5 M氯化钠溶液或pH 5的0.5 M醋酸钠或柠檬酸盐溶液中获得最终的(68)镓产品。纯化的(68)镓溶液中的(68)锗含量<10^(-6)%。评估了(68)镓溶液中包括(68)锌在内的微量金属污染及其酸碱度对DOTATATE和DOTATOC配体的(68)镓放射性标记效率的影响。还制定了质量控制方案来评估(68)镓溶液的质量。

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