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A Novel Tumor Imaging Agent, Tc-99m and Fluorescence Labeled Gastrin-Releasing Peptide Analogues

机译:新型肿瘤成像剂Tc-99m和荧光标记胃泌素释放肽类似物

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Statement of the Problem: A variety of imaging probes have been developed for different molecular targets. The gastrin-releasing peptide (GRP) analogues (GRP, GRP18-27 and GRP21-27) were investigated vigorously as a targeting peptide for tumor, however, the cancer targeting abilities of these GRP analogues had not been compared head-to-head. Direct comparison of characteristics of these analogues will provide a useful information for the design of molecular imaging agent associated with GRP and an insight within the mechanism of tumor targeting using GRP analogues. Approach: In the present study, we developed Tc-99m and fluorescence (carboxytetramethylrhodamine, TAMRA) labeled GRP analogues containing three different peptides (TAMRA-GHEG-ECG-GRP, TAMRA-GHEG-ECG-GRP18-27 and TAMRA-GHEG-ECG-GRP21-27) to target the tumor cells and compared the tumor targeting abilities using in vitro and in vivo experiments. Peptides were synthesized using Fmoc solid-phase peptide synthesis. Radiolabeling of peptides with Tc-99m was done using ligand exchange via tartrate. Binding affinity and in vitro cellular uptake studies were performed. Gamma camera imaging study was performed in murine models with PC-3 tumors. The average counts per pixel within the ROIs were measured and target-to-non-target ratios were calculated. Results: After radiolabeling procedures with Tc-99m, Tc-99m labeled peptides were prepared in high yield . Tc-99m TAMRA-GHEG-ECG-GRP (Kd=7.9±2.7 nM) showed highest binding affinity for PC-3 tumor cells and Tc-99m TAMRA-GHEG-ECG-GRP18-27 (Kd=12.6±3.6 nM) showed relatively low binding affinity. Confocal microscopy images of PC-3 cells incubated with TAMRA-GHEG-ECG-GRP and TAMRA-GHEG-ECG-GRP21-27 showed strong fluorescence in the cytoplasm. Gamma camera imaging revealed substantial uptake of Tc-99m TAMRA-GHEG-ECG-GRP21-27 in tumors. Conclusion: We developed three Tc-99m and TAMRA labeled GRP analogues as a molecular imaging agent for targeting tumor. In vitro studies demonstrated substantial binding affinity and cellular uptake of TAMRA-GHEG-ECG-GRP and TAMRA-GHEG-ECG-GRP21-27. In contrast, in vivo gamma imaging study revealed that only Tc-99m TAMRA-GHEG-ECG-GRP21-27 was significantly accumulated in the tumor tissue. Taken together, the present study suggest that 7-mer peptide, GRP21-27 is the best surrogate as a targeting ligand for tumor imaging.
机译:问题陈述:针对不同分子靶标开发了多种成像探针。胃泌素释放肽(GRP)类似物(GRP,GRP18-27和GRP21-27)被作为肿瘤的靶向肽进行了深入研究,但是,这些GRP类似物的癌症靶向能力尚未进行正面对比。这些类似物特性的直接比较将为设计与GRP相关的分子显像剂提供有用的信息,并为使用GRP类似物靶向肿瘤的机制提供深刻的见识。方法:在本研究中,我们开发了Tc-99m和荧光(羧基四甲基罗丹明,TAMRA)标记的GRP类似物,其中包含三种不同的肽(TAMRA-GHEG-ECG-GRP,TAMRA-GHEG-ECG-GRP18-27和TAMRA-GHEG-ECG) -GRP21-27)靶向肿瘤细胞,并使用体外和体内实验比较了肿瘤靶向能力。使用Fmoc固相肽合成法合成肽。用Tc-99m进行肽的放射性标记是通过酒石酸配体交换完成的。进行结合亲和力和体外细胞摄取研究。在具有PC-3肿瘤的小鼠模型中进行了伽马相机成像研究。测量ROI中每个像素的平均计数,并计算目标与非目标的比率。结果:用Tc-99m进行放射性标记后,可以高产率制备Tc-99m标记的肽。 Tc-99m TAMRA-GHEG-ECG-GRP(Kd = 7.9±2.7 nM)显示出对PC-3肿瘤细胞的最高结合亲和力,而Tc-99m TAMRA-GHEG-ECG-GRP18-27(Kd = 12.6±3.6 nM)显示出相对较低的结合亲和力。与TAMRA-GHEG-ECG-GRP和TAMRA-GHEG-ECG-GRP21-27孵育的PC-3细胞的共聚焦显微镜图像显示了细胞质中的强荧光。伽玛相机成像显示肿瘤中Tc-99m TAMRA-GHEG-ECG-GRP21-27的大量摄取。结论:我们开发了三种Tc-99m和TAMRA标记的GRP类似物作为靶向肿瘤的分子成像剂。体外研究表明TAMRA-GHEG-ECG-GRP和TAMRA-GHEG-ECG-GRP21-27具有显着的结合亲和力和细胞摄取。相反,体内γ成像研究表明,肿瘤组织中仅Tc-99m TAMRA-GHEG-ECG-GRP21-27显着积累。综上所述,本研究表明7聚体肽GRP21-27是作为肿瘤成像的靶向配体的最佳替代品。

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