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不同(68)Ge/(68)Ga发生器的详细评估:实现高效(68)Ga放射性药物学的尝试。

Detailed evaluation of different (68)Ge/(68)Ga generators: an attempt toward achieving efficient (68)Ga radiopharmacy.

作者信息

Chakravarty Rubel, Chakraborty Sudipta, Ram Ramu, Vatsa Rakhee, Bhusari Priya, Shukla Jaya, Mittal B R, Dash Ashutosh

机构信息

Isotope Production and Applications Division, Bhabha Atomic Research Centre, Trombay, Mumbai, 400 085, India.

Department of Nuclear Medicine, Post Graduate Institute of Medical Education and Research, Chandigarh, 160 012, India.

出版信息

J Labelled Comp Radiopharm. 2016 Mar;59(3):87-94. doi: 10.1002/jlcr.3371. Epub 2016 Feb 2.

Abstract

The present study is aimed at carrying out a comparative performance evaluation of different types of (68)Ge/(68)Ga generators to identify the best choice for use in (68)Ga-radiopharmacy. Over the 1 year period of evaluation, the elution yields from the CeO2-based and SiO2-based (68)Ge/(68) Ga generators remained almost consistent, in contrast to the sharp decrease observed in the elution yields from TiO2 and SnO2-based generators. The level of (68)Ge impurity in (68)Ga eluates from the CeO2 and SiO2-based (68)Ge/(68)Ga generator was always <10(-3)%, while this level increased from 10(-3)% to 10(-1)% in case of TiO2 and SnO2-based generators. The level of chemical impurities in (68)Ga eluates from CeO2 and SiO2-based (68)Ge/(68)Ga generators was negligibly low (<0.1 ppm) in contrast to the significantly higher level (1-20 ppm) of such impurities in eluates from other two generators. As demonstrated by radiolabeling studies carried out using DOTA-coupled dimeric cyclic RGD peptide derivative (DOTA-RGD2), CeO2-PAN and SiO2-based generators are directly amenable for radiopharmaceutical preparation, whereas the other generators can be only used after post-elution purification of (68)Ga eluates. Clinically relevant dose of (68)Ga-DOTA-RGD2 was prepared in a hospital radiopharmacy for non-invasive visualization of tumors in breast cancer patients using positron emission tomography.

摘要

本研究旨在对不同类型的(68)Ge/(68)Ga发生器进行性能比较评估,以确定用于(68)Ga放射性药物制备的最佳选择。在为期1年的评估期内,基于CeO2和SiO2的(68)Ge/(68)Ga发生器的洗脱产率几乎保持一致,与之形成对比的是,基于TiO2和SnO2的发生器的洗脱产率出现了急剧下降。从基于CeO2和SiO2的(68)Ge/(68)Ga发生器得到的(68)Ga洗脱液中(68)Ge杂质水平始终<10(-3)%,而对于基于TiO2和SnO2的发生器,该水平从10(-3)%增加到了10(-l)%。基于CeO2和SiO2的(68)Ge/(68)Ga发生器的(68)Ga洗脱液中的化学杂质水平极低(<0.1 ppm),相比之下,其他两种发生器的洗脱液中此类杂质水平显著更高(1 - 20 ppm)。使用DOTA偶联的二聚体环状RGD肽衍生物(DOTA - RGD2)进行的放射性标记研究表明,基于CeO2 - PAN和SiO2的发生器可直接用于放射性药物制备,而其他发生器仅在对(68)Ga洗脱液进行洗脱后纯化后才能使用。在医院放射性药房制备了具有临床相关剂量的(68)Ga - DOTA - RGD2,用于使用正电子发射断层扫描对乳腺癌患者的肿瘤进行非侵入性可视化。

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