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一种新型的锝-99m和荧光标记的含精氨酸-精氨酸-亮氨酸肽作为小鼠肿瘤模型中的多模态肿瘤成像剂。

A novel Tc-99m and fluorescence-labeled arginine-arginine-leucine-containing peptide as a multimodal tumor imaging agent in a murine tumor model.

作者信息

Kim Myoung Hyoun, Kim Seul-Gi, Kim Dae-Weung

机构信息

Department of Nuclear Medicine and Institute of Wonkwang Medical Science, Wonkwang University School of Medicine, Iksan, Jeollabuk-do, South Korea.

Research Unit of Molecular Imaging Agent (RUMIA), Wonkwang University School of Medicine, Iksan, Jeollabuk-do, South Korea.

出版信息

J Labelled Comp Radiopharm. 2018 Jun 15;61(7):557-566. doi: 10.1002/jlcr.3625. Epub 2018 Apr 25.

Abstract

We developed a Tc-99m and TAMRA-labeled peptide, Tc-99m arginine-arginine-leucine (RRL) peptide (TAMRA-GHEG-ECG-RRL), to target tumor cells and evaluated the diagnostic performance of Tc-99m TAMRA-GHEG-ECG-RRL as a dual-modality imaging agent for tumor in a murine model. TAMRA-GHEG-ECG-RRL was synthesized using Fmoc solid-phase peptide synthesis. Binding affinity and in vitro cellular uptake studies were performed. Gamma camera imaging, biodistribution, and ex vivo imaging studies were performed in murine models with PC-3 tumors. Tumor tissue slides were prepared and analyzed with immunohistochemistry using confocal microscopy. After radiolabeling procedures with Tc-99m, Tc-99m TAMRA-GHEG-ECG-RRL complexes were prepared in high yield (>96%). The K of Tc-99m TAMRA-GHEG-ECG-RRL determined by saturation binding was 41.7 ± 7.8 nM. Confocal microscopy images of PC-3 cells incubated with TAMRA-GHEG-ECG-RRL showed strong fluorescence in the cytoplasm. Gamma camera imaging revealed substantial uptake of Tc-99m TAMRA-GHEG-ECG-RRL in tumors. Tumor uptake was effectively blocked by the coinjection of an excess concentration of RRL. Specific uptake of Tc-99m TAMRA-GHEG-ECG-RRL was confirmed by biodistribution, ex vivo imaging, and immunohistochemistry stain studies. In conclusion, in vivo and in vitro studies revealed substantial uptake of Tc-99m TAMRA-GHEG-ECG-RRL in tumors. Tc-99m TAMRA-GHEG-ECG-RRL has potential as a dual-modality tumor imaging agent.

摘要

我们研发了一种用锝-99m(Tc-99m)和四甲基罗丹明(TAMRA)标记的肽,即Tc-99m精氨酸-精氨酸-亮氨酸(RRL)肽(TAMRA-GHEG-ECG-RRL),用于靶向肿瘤细胞,并在小鼠模型中评估了Tc-99m TAMRA-GHEG-ECG-RRL作为肿瘤双模态成像剂的诊断性能。TAMRA-GHEG-ECG-RRL采用芴甲氧羰基(Fmoc)固相肽合成法合成。进行了结合亲和力和体外细胞摄取研究。在患有PC-3肿瘤的小鼠模型中进行了γ相机成像、生物分布和离体成像研究。制备了肿瘤组织切片,并使用共聚焦显微镜通过免疫组织化学进行分析。在用Tc-99m进行放射性标记程序后,以高产率(>96%)制备了Tc-99m TAMRA-GHEG-ECG-RRL复合物。通过饱和结合测定的Tc-99m TAMRA-GHEG-ECG-RRL的解离常数(K)为41.7±7.8 nM。用TAMRA-GHEG-ECG-RRL孵育的PC-3细胞的共聚焦显微镜图像显示细胞质中有强烈荧光。γ相机成像显示肿瘤中大量摄取了Tc-99m TAMRA-GHEG-ECG-RRL。通过共同注射过量浓度的RRL有效地阻断了肿瘤摄取。通过生物分布、离体成像和免疫组织化学染色研究证实了Tc-99m TAMRA-GHEG-ECG-RRL的特异性摄取。总之,体内和体外研究表明肿瘤中大量摄取了Tc-99m TAMRA-GHEG-ECG-RRL。Tc-99m TAMRA-GHEG-ECG-RRL有潜力作为一种双模态肿瘤成像剂。

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