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首页> 外文期刊>Annals of nuclear medicine >A novel dual-modality imaging agent targeting folate receptor of tumor for molecular imaging and fluorescence-guided surgery
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A novel dual-modality imaging agent targeting folate receptor of tumor for molecular imaging and fluorescence-guided surgery

机译:一种靶向肿瘤叶酸受体的新型双型成像剂,用于分子成像和荧光引导的手术

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ObjectiveFolate receptor (FR) is an ideal target for cancer imaging because it is frequently overexpressed in major types of human tumor, whereas its expression in normal organs is highly limited. Combining nuclear and fluorescence-imaging techniques provides a novel approach for cancer imaging and monitoring the surgery. The objective of this study was to report the synthesis and characteristics of a dual-modality imaging agent, Tc-99m Folate-Gly-His-Glu-Gly-Glu-Cys-Gly-Lys(-5-carboxy-X-rhodamine)-NH2 (Folate-ECG-ROX), and verify its feasibility as both molecular imaging agent and intra-operative guidance.MethodsFolate-ECG-ROX was synthesized using Fmoc solid-phase peptide synthesis. Radiolabeling of Folate-ECG-ROX with Tc-99m was done using ligand exchange via tartrate. Binding affinity and in vitro cellular uptake studies were performed. Gamma camera imaging, biodistribution and ex vivo imaging studies were performed using KB and HT-1080 tumor-bearing murine models. Tumor tissue slides were prepared and analyzed with immunohistochemistry staining and confocal microscopy. Surgical removal of tumor nodules in murine models with peritoneal carcinomatosis was performed under the fluorescence-imaging system.ResultsAfter radiolabeling procedures with Tc-99m, Tc-99m Folate-ECG-ROX complexes were prepared in high yield (>97%). The binding affinity value (K-d) of Tc-99m Folate-ECG-ROX for KB cells was estimated to be 6.90.9nM. In gamma camera imaging, tumor to normal muscle uptake ratio of Tc-99m Folate-ECG-ROX increased with time (3.4 +/- 0.4, 4.4 +/- 0.7, and 6.6 +/- 0.8 at 1, 2, and 3h, respectively). In biodistribution study, %IA/g for KB tumor was 2.50 +/- 0.80 and 4.08 +/- 1.16 at 1 and 3h, respectively. Confocal microscopy with immunohistochemistry staining detected strong Tc-99m Folate-ECG-ROX fluorescence within KB tumor tissue which is correlating with the fluorescent activity of anti-FR antibody. Under real-time optical imaging, the removal of visible nodules was successfully performed.ConclusionsIn vivo and in vitro studies revealed substantial and specific uptake of Tc-99m Folate-ECG-ROX in FR-positive tumors. Thus, Tc-99m Folate-ECG-ROX could provide both pre-operative molecular imaging and fluorescence image-guidance for tumor.
机译:ObessivateMolate受体(FR)是癌症成像的理想靶标,因为它经常在主要类型的人类肿瘤中过度表达,而其在正常器官中的表达高度限制。结合核和荧光成像技术为癌症成像和监测手术提供了一种新方法。本研究的目的是报告双式成像剂,TC-99M叶酸甲醇-HIL-glu-glu-glu-glu-glu-gly-Lys(-5-羧基-X-罗丹明)的合成和特征-NH2(叶酸ECG-ROX),并验证其作为分子成像剂和手术内的可行性的可行性。使用FMOC固相肽合成合成方法-Folate-ECG-ROX。通过酒石酸酯使用配体交换完成具有TC-99M的叶酸-ECG-ROX的放射性标记。进行结合亲和力和体外细胞摄取研究。使用KB和HT-1080肿瘤鼠模型进行伽玛摄像机成像,生物分布和离体成像研究。制备肿瘤组织载玻片并用免疫组织化学染色和共聚焦显微镜分析。在荧光显像系统下进行鼠脉冲癌的鼠模型的手术移除鼠模型。用TC-99M的放射性标记程序进行,以高产(> 97%)制备TC-99M叶酸-CEG-ROX复合物。估计KB细胞的TC-99M叶酸-COX-ECG-ROX的结合亲和力值(K-D)估计为6.90.9nm。在伽玛相机成像中,TC-99M叶酸-COX正常肌肉摄取比随时间(3.4 +/- 0.4,4.4 +/- 0.7和6.6 +/- 0.8,1,2和3H,分别)。在生物分布研究中,KB肿瘤的%Ia / g分别为1和3H的2.50 +/- 0.80和4.08 +/- 1.16。共聚焦显微镜与免疫组织化学染色检测到KB肿瘤组织内的强TC-99M叶酸-COX荧光,其与抗FR抗体的荧光活性相关。在实时光学成像下,成功地去除可见结节。Cluclusionsin体内和体外研究揭示了FR阳性肿瘤中TC-99M叶酸-COX的显着和比吸收。因此,TC-99M叶酸-COX可以为肿瘤提供术前分子成像和荧光图像引导。

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