Faria D P, Buchpiguel C A, Marques F L N
Centro Translacional de Oncologia, Instituto do Câncer do Estado de São Paulo, São Paulo, SP, BR.
Serviço de Medicina Nuclear, Departamento de Radiologia, Faculdade de Medicina, Universidade de São Paulo, São Paulo, SP, BR.
Braz J Med Biol Res. 2015 Oct;48(10):902-7. doi: 10.1590/1414-431X20144489. Epub 2015 Mar 3.
Knowledge of the radiochemical purity of radiopharmaceuticals is mandatory and can be evaluated by several methods and techniques. Planar chromatography is the technique normally employed in nuclear medicine since it is simple, rapid and usually of low cost. There is no standard system for the chromatographic technique, but price, separation efficiency and short time for execution must be considered. We have studied an alternative system using common chromatographic stationary phase and alcohol or alcohol:chloroform mixtures as the mobile phase, using the lipophilic radiopharmaceutical [(99m)Tc(MIBI)₆]⁺ as a model. Whatman 1 modified phase paper and absolute ethanol, Whatman 1 paper and methanol:chloroform (25:75), Whatman 3MM paper and ethanol:chloroform (25:75), and the more expensive ITLC-SG and 1-propanol:chloroform (10:90) were suitable systems for the direct determination of radiochemical purity of [(99m)Tc(MIBI)₆]⁺ since impurities such as (99m)Tc-reduced-hydrolyzed (RH), (99m)TcO(4)(-) and [(99m)Tc(cysteine)₂]⁻ complex were completely separated from the radiopharmaceutical, which moved toward the front of chromatographic systems while impurities were retained at the origin. The time required for analysis was 4 to 15 min, which is appropriate for nuclear medicine routines.
了解放射性药物的放射化学纯度是必不可少的,并且可以通过多种方法和技术进行评估。平面色谱法是核医学中常用的技术,因为它简单、快速且成本通常较低。色谱技术没有标准系统,但必须考虑价格、分离效率和执行时间短等因素。我们研究了一种替代系统,使用普通的色谱固定相和酒精或酒精:氯仿混合物作为流动相,以亲脂性放射性药物[(99m)Tc(MIBI)₆]⁺作为模型。Whatman 1改性相纸和无水乙醇、Whatman 1纸和甲醇:氯仿(25:75)、Whatman 3MM纸和乙醇:氯仿(25:75),以及更昂贵的ITLC-SG和1-丙醇:氯仿(10:90)是直接测定[(99m)Tc(MIBI)₆]⁺放射化学纯度的合适系统,因为诸如(99m)Tc还原水解(RH)、(99m)TcO(4)(-)和[(99m)Tc(半胱氨酸)₂]⁻络合物等杂质与放射性药物完全分离,放射性药物向色谱系统前沿移动,而杂质则保留在原点。分析所需时间为4至15分钟,这适用于核医学常规操作。