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New Lyophilized Kit for Rapid Radiofluorination of Peptides

机译:新型快速冻干肽冻干试剂盒

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Radiolabeling compounds with positron-emitting radionuclides often involves a time-consuming, customized process. Herein, we report a simple lyophilized kit formulation for labeling peptides with ~(18)F, based on the aluminum-fluoride procedure. The prototype kit contains IMP485, a NODA (1,4,7-triazacyclononane- 1,4-diacetate)-MPAA (methyl phenylacetic acid)-di-HSG (histamine-succinyl-glycine) hapten-peptide, [NODA-MPAA-D-Lys(HSG)-D-Tyr-D-Lys(HSG)-NH2], used for pretargeting, but we also examined a similar kit formulation for a somatostatin-binding peptide [IMP466, NOTA-D-Phe-Cys-Phe-D-Trp-Lvs-Thr-Cvs-Throll bearing a NOTA ligand to determine if the benefits of using a kit can be extended to other AlF-binding peptides. The NODA-MPAA ligand forms a single stable complex with (AlF)~(2+) in high yields. In order to establish suitable conditions for a facile kit, the formulation was optimized for pH, peptide to Al~(3+) ratio, bulking agent, radioprotectant, and the buffer. For optimal labeling, the kit was reconstituted with an aqueous solution of ~(18)F~- and ethanol (1:1), heated at 100-110 °C for 15 min, and then simply and rapidly purified using one of two equally effective solid-phase extraction (SPE) methods. Al~(18)F-1MP485 was isolated as a single isomer complex, in high yield (45-97%) and high specific activity (up to 223 GBq/μmol), within 20 min. The labeled product was stable in human serum at 37 °C for 4 h and in vivo, urine samples showed the intact product was eliminated. Tumor targeting of the Al~(18)F-IMP485 in nude mice bearing human colon cancer xenografts pretargeted with an anti-CEACAM5 bispecific antibody showed very low uptake (0.06% ± 0.02 ID/g) in bone, further illustrating its stability. At 1 h, pretargeted animals had high Al~(18)F-IMP485 tumor uptake (28.1% ± 4.5 ID/g), with ratios of 9 ± 4,123 ± 38,110 ± 43, and 120 ± 108 for kidney, liver, blood and bone, respectively. Tumor uptake remained high at 3 h postinfection, with increased tumorontumor ratios. The NOTA-somatostatin-binding peptide also was fluorinated with good yield and high specific activity in the same kit formulation. However, yields were somewhat lower than those achieved with IMP485 containing the NODA-MPAA ligand, likely reflecting this ligand's superior binding properties over the simple NOTA. These studies indicate that ~(18)F-labeled peptides can be reproducibly prepared as stable Al-F complexes with good radiochemical yield and high specific activity using a simple, one-step, lyophilized kit followed by a rapid purification by SPE that provides the ~(18)F-peptide ready for patient injection within 30 min.
机译:用发射正电子的放射性核素对化合物进行放射性标记通常涉及耗时的定制过程。在本文中,我们报告了一种简单的冻干试剂盒配方,该配方基于氟化铝程序用〜(18)F标记肽。原型套件包含IMP485,一种NODA(1,4,7-三氮杂环壬烷-1,4-二乙酸酯)-MPAA(甲基苯基乙酸)-di-HSG(组胺-琥珀酰-甘氨酸)半抗原肽,[NODA-MPAA- D-Lys(HSG)-D-Tyr-D-Lys(HSG)-NH2],但也针对生长抑素结合肽[IMP466,NOTA-D-Phe-Cys-带有NOTA配体的Phe-D-Trp-Lvs-Thr-Cvs-Throll可以确定使用试剂盒的好处是否可以扩展到其他AlF结合肽。 NODA-MPAA配体与(AlF)〜(2+)形成单一稳定的复合物,产率高。为了为方便的试剂盒建立合适的条件,针对pH,肽与Al〜(3+)的比例,填充剂,放射防护剂和缓冲液对配方进行了优化。为了获得最佳标记,将试剂盒用〜(18)F〜-水溶液和乙醇(1:1)重构,在100-110°C下加热15分钟,然后使用两个等分之一进行简单快速纯化有效的固相萃取(SPE)方法。在20分钟内以高收率(45-97%)和高比活(高达223 GBq /μmol)的形式分离出Al〜(18)F-1MP485,为单一异构体复合物。标记的产物在人血清中在37°C下稳定4小时,在体内,尿液样本显示完整产物被清除。预先靶向抗CEACAM5双特异性抗体的人结肠癌异种移植瘤裸鼠中对Al〜(18)F-IMP485的肿瘤靶向在骨骼中显示出极低的摄取(0.06%±0.02 ID / g),进一步说明了其稳定性。在1 h时,预先靶向的动物具有较高的Al〜(18)F-IMP485肿瘤摄取率(28.1%±4.5 ID / g),肾脏,肝脏,血液和肝脏的比率分别为9±4,123±38,110±43和120±108。骨头。感染后3小时,肿瘤摄取仍然很高,肿瘤/非肿瘤比率增加。在同一试剂盒配方中,NOTA-生长抑素结合肽也以良好的产率和高的比活度被氟化。但是,收率略低于使用含NODA-MPAA配体的IMP485所获得的收率,这可能反映了该配体比简单的NOTA优越的结合性能。这些研究表明〜(18)F标记的肽可通过简单的一步冻干试剂盒可重复制备为稳定的Al-F复合物,具有良好的放射化学收率和高比活度,然后通过SPE快速纯化,可提供〜(18)F肽准备在30分钟内用于患者注射。

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