Department of Nuclear Medicine, The Affiliated Hospital, Southwest Medical University, Jiangyang District, Luzhou 646000, Sichuan, China.
Nuclear Medicine and Molecular Imaging Key Laboratory of Sichuan Province, Department of Nuclear Medicine, The Affiliated Hospital, Southwest Medical University, Jiangyang District, Luzhou 646000, Sichuan, China.
Mol Pharm. 2024 Sep 2;21(9):4430-4440. doi: 10.1021/acs.molpharmaceut.4c00366. Epub 2024 Jul 29.
Nectin cell adhesion molecule 4 (Nectin-4) is overexpressed in various malignant tumors and has emerged as a promising target for tumor imaging. Bicyclic peptides, known for their conformational rigidity, metabolic stability, and membrane permeability, are ideal tracers for positron emission tomography (PET) imaging. In this study, we evaluated the feasibility of visualizing Nectin-4-positive tumors using radiolabeled bicyclic peptide derivatives and optimized the pharmacokinetics of radiotracers by introducing PEG chains of different lengths. Five PEGylated radiotracers radiolabeled with Ga exhibited high radiochemical purity and stability. As the chain length increased, the Log values decreased from -2.32 ± 0.13 to -2.50 ± 0.16, indicating a gradual increase in the hydrophilicity of the radiotracers. In vitro cell-binding assay results showed that the PEGylated bicyclic peptide exhibits nanomolar affinity, and blocking experiments confirmed the specific binding of the tracers to the Nectin-4 receptor. In vivo PET imaging and biodistribution studies in SW780 and 5637 xenograft mice showed that [Ga]Ga-NOTA-PEG-BP demonstrated optimal pharmacokinetics, characterized by rapid and good tumor uptake, faster background clearance, and improved tumor-to-tissue contrast. Finally, compared with F-FDG, PET imaging, in vivo blocking assays of [Ga]Ga-NOTA-PEG-BP and histological staining confirmed that specific tumor uptake was mediated by Nectin-4 receptors. The results indicated that [Ga]Ga-NOTA-PEG-BP was a promising PET radiotracer for Nectin-4 targeting, with applications for clinical translation.
黏附分子 4 (Nectin-4) 在各种恶性肿瘤中过表达,已成为肿瘤成像的有前途的靶点。双环肽以其构象刚性、代谢稳定性和膜通透性而闻名,是正电子发射断层扫描 (PET) 成像的理想示踪剂。在这项研究中,我们评估了使用放射性标记的双环肽衍生物可视化 Nectin-4 阳性肿瘤的可行性,并通过引入不同长度的 PEG 链优化了放射性示踪剂的药代动力学。用 Ga 标记的 5 种 PEG 化放射性示踪剂表现出高放射化学纯度和稳定性。随着链长的增加,Log 值从-2.32±0.13 降至-2.50±0.16,表明放射性示踪剂的亲水性逐渐增加。体外细胞结合实验结果表明,PEG 化双环肽具有纳摩尔亲和力,阻断实验证实了示踪剂与 Nectin-4 受体的特异性结合。在 SW780 和 5637 异种移植小鼠的体内 PET 成像和生物分布研究中,[Ga]Ga-NOTA-PEG-BP 表现出最佳的药代动力学特性,其特点是快速且良好的肿瘤摄取、更快的背景清除和改善的肿瘤与组织对比度。最后,与 F-FDG 相比,[Ga]Ga-NOTA-PEG-BP 的 PET 成像、体内阻断实验和组织学染色证实了特异性肿瘤摄取是由 Nectin-4 受体介导的。结果表明,[Ga]Ga-NOTA-PEG-BP 是一种有前途的用于 Nectin-4 靶向的 PET 放射性示踪剂,具有临床转化应用的潜力。