正电子发射放射性核素68Ga的产生:放射性核素发生器68Ge→68Ga的放射化学方案

IF 0.3 Q4 CHEMISTRY, MULTIDISCIPLINARY Chemical Bulletin of Kazakh National University Pub Date : 2018-06-30 DOI:10.15328/cb1003
A. Baimukhanova, E. T. Chakrova, D. Karaivanov, J. Kozempel, F. Roesch, D. Filosofov
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引用次数: 1

摘要

68Ga(T1/2=68min)与肽的复合物用于正电子发射断层扫描以诊断神经内分泌肿瘤。68Ga生产最有前景的策略是使用放射性核素发生器68Ge→ 68Ga。在本研究中,Ge(IV)和Ga的吸附行为 (III) 已经进行了研究。测定了Ge(IV)在各种乙二胺和盐酸溶液中对阴离子交换树脂(Dowex 1×8)和阳离子交换树脂(道ex 50×8)的分布系数(Kd)。对于每种离子交换树脂,进行了四系列测量,其中草酸的浓度是固定的(0.001M、0.003M、0.005M、0.01M),盐酸的浓度范围为0-3M。根据分布系数,放射性核素发生器68Ge的化学方案→ 68Ga。化学体系基于阴离子交换树脂Dowex 1×8和0.005M C2H2O4/0.33M HCl的混合物。测试了几种具有直接和反向洗脱模式的发生器,并确定了最佳方案。每天用8ml 0.005M C2H2O4/0.33M HCl溶液对发生器进行一次洗脱。68Ga的产率和68Ge的穿透对于所有系统都是可比较的。
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Production of the positron-emitting radionuclide 68Ga: the radiochemical scheme of radionuclide generator 68Ge → 68Ga
68Ga (T1 / 2 = 68 min) in complexes with peptides is used in positron emission tomography for diagnostics of neuroendocrine tumors. The most promising strategy for 68Ga production is usage of the radionuclide generator 68Ge → 68Ga. In this research, the sorption behavior of Ge(IV) and Ga (III) has been studied. The distribution coefficients (Kd) of Ge(IV) on the anion exchange (Dowex 1×8) and cation exchange (Dowex 50×8) resins in various ethanedioic and hydrochloric acid solutions were determined. For each ion exchange resin, four series of measurements were carried out, in which the concentration of oxalic acid was fixed (0.001 M, 0.003 M, 0.005 M, 0.01 M), and the concentrations of hydrochloric acid ranged from 0 to 3 M. Based on the distribution coefficients, the chemical scheme of the radionuclide generator 68Ge → 68Ga has been developed. The chemical system is based on the anion exchange resin Dowex 1×8 and mixture of 0.005 M C2H2O4 / 0.33 M HCl. Several types of the generators with direct and reverse mode of elution were tested and the optimal scheme was determined. Elution of the generators was performed once a day with 8 ml of 0.005 M C2H2O4 / 0.33 M HCl solution. The 68Ga yield and the 68Ge breakthrough are comparable for all the systems.
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