Department of Radiopharmacy, Faculty of Pharmacy, Mazandaran University of Medical Sciences, Sari, Iran.
Student Research Committee, Faculty of Pharmacy, Mazandaran University of Medical Sciences, Sari, Iran.
J Labelled Comp Radiopharm. 2020 Dec;63(14):582-596. doi: 10.1002/jlcr.3883. Epub 2020 Oct 30.
Specific tumor uptake of peptide radiopharmaceuticals depends on tumor binding affinity and their radiochemical purity. Several important parameters that influence the Tc-labeling and consequently the radiochemical purity of 6-hydrazinonicotinamide (HYNIC)-conjugated peptide are radionuclide activity, the amount of peptide, the amount of coligands, and the amount of reducing agents (stannous ion). In this review article, we have attempted studying these parameters in the HYNIC-conjugated peptides (somatostatin, cholecystokinin/gastrin, bombesin, and RGD analogs) from a new perspective to obtain most used and optimized radio-stoichiometric relationships. One of the most important results in this review is that for Tc-labeling of HYNIC-conjugated peptides, it is better to consider the most calculated mole ratio between technetium-99m and the peptide (mole ratio of technetium-99m to the peptide 1:200-400). The statistical results also show that among these Tc-labeled peptides, the most used and favorable coligand is tricine/EDDA with two to one (2:1) mole ratio. These optimized radio-stoichiometric relationships, favorable coligand mole ratio, and applicable radiolabeling points can greatly improve the labeling process of the HYNIC-conjugated peptides, by reducing trial and error, increasing specific activity, and saving materials.
肽类放射性药物的特定肿瘤摄取取决于肿瘤结合亲和力及其放射化学纯度。有几个重要的参数会影响 Tc 标记,进而影响 HYNIC 缀合肽的放射化学纯度,包括放射性核素活度、肽的量、共配体的量和还原剂(亚锡离子)的量。在这篇综述文章中,我们试图从新的角度研究 HYNIC 缀合肽(生长抑素、胆囊收缩素/胃泌素、蛙皮素和 RGD 类似物)中的这些参数,以获得最常用和最优化的放射化学计量关系。这篇综述的一个最重要的结果是,对于 HYNIC 缀合肽的 Tc 标记,最好考虑最计算的锝-99m 与肽之间的摩尔比(锝-99m 与肽的摩尔比为 1:200-400)。统计结果还表明,在这些 Tc 标记的肽中,最常用和有利的共配体是三羟甲基甘氨酸/EDDA,其摩尔比为 2:1。这些优化的放射化学计量关系、有利的共配体摩尔比和适用的放射性标记点可以大大改善 HYNIC 缀合肽的标记过程,减少反复试验、提高比活度并节省材料。