Department of Nuclear Medicine, Wonkwang University School of Medicine, 344-2 Shinyong-Dong, Iksan, Jeollabuk-do, 570-711, Republic of Korea.
Ann Nucl Med. 2013 Dec;27(10):892-7. doi: 10.1007/s12149-013-0766-9. Epub 2013 Aug 29.
ELR-containing peptides targeting CXCR2 could be the excellent candidate for targeting ligand of molecular tumor imaging. In this study, we had developed two ELR-containing 6-mer peptides and evaluated the diagnostic performance of Tc-99m labeled 6-mer peptides as a molecular imaging agent in murine models bearing KB epidermoid carcinoma.
Peptides were synthesized using Fmoc solid phase peptide synthesis. Radiolabeling efficiency with Tc-99m was evaluated using instant thin-layer chromatography. In KB epidermoid cancer-bearing mice, gamma images had acquired and tumor-to-muscle uptake ratio was calculated. Competition and biodistribution studies had performed.
Two 6-mer peptides, ELR-ECG and ECG-ELR were successfully synthesized. After radiolabeling procedures with Tc-99m, the complex Tc-99m ELR-ECG and Tc-99m ECG-ELR were prepared in high yield. In the gamma camera imaging of murine model, Tc-99m ELR-ECG was substantially accumulated in the subcutaneously engrafted tumor and tumor uptake had been suppressed by the free ELR co-injection. However, Tc-99m ECG-ELR was minimally accumulated in the tumor.
Two ELR-containing 6-mer peptides, ELR-ECG and ECG-ELR, were developed as a molecular imaging agent to target CXCR2 of epidermoid carcinoma. Tc-99m ELR-ECG had showed significant uptake in tumor and it was good candidate for a tumor imaging.
靶向 CXCR2 的含 ELR 肽可能是分子肿瘤成像靶向配体的优秀候选物。在这项研究中,我们开发了两种含 ELR 的 6 肽,并评估了 Tc-99m 标记的 6 肽作为携带 KB 表皮样癌细胞的小鼠模型中的分子成像剂的诊断性能。
使用 Fmoc 固相肽合成法合成肽。使用即时薄层层析法评估 Tc-99m 的放射性标记效率。在 KB 表皮样癌荷瘤小鼠中,采集伽马图像并计算肿瘤与肌肉摄取比。进行竞争和生物分布研究。
成功合成了两种 6 肽,ELR-ECG 和 ECG-ELR。经过 Tc-99m 标记程序后,高收率制备了 Tc-99m ELR-ECG 和 Tc-99m ECG-ELR 复合物。在小鼠模型的伽玛相机成像中,Tc-99m ELR-ECG 大量积聚在皮下移植的肿瘤中,并且通过自由 ELR 共注射抑制了肿瘤摄取。然而,Tc-99m ECG-ELR 在肿瘤中积累很少。
开发了两种含 ELR 的 6 肽,ELR-ECG 和 ECG-ELR,作为靶向表皮样癌 CXCR2 的分子成像剂。Tc-99m ELR-ECG 在肿瘤中表现出明显的摄取,是肿瘤成像的良好候选物。