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用于胰高血糖素样肽-1受体表达的微型正电子发射断层扫描成像的(64)铜标记的肌棺素艾塞那肽-4

(64)Cu labeled sarcophagine exendin-4 for microPET imaging of glucagon like peptide-1 receptor expression.

作者信息

Wu Zhanhong, Liu Shuanglong, Nair Indu, Omori Keiko, Scott Stephen, Todorov Ivan, Shively John E, Conti Peter S, Li Zibo, Kandeel Fouad

机构信息

1. Department of Diabetes and Metabolic Diseases Research, Beckman Research Institute of the City of Hope, Duarte, CA 91010, USA.

2. Molecular Imaging Center, Department of Radiology, University of Southern California, Los Angeles, CA 90033, USA.

出版信息

Theranostics. 2014 May 24;4(8):770-7. doi: 10.7150/thno.7759. eCollection 2014.

Abstract

The Glucagon-like peptide 1 receptor (GLP-1R) has become an important target for imaging due to its elevated expression profile in pancreatic islets, insulinoma, and the cardiovascular system. Because native GLP-1 is degraded rapidly by dipeptidyl peptidase-IV (DPP-IV), several studies have conjugated different chelators to a more stable analog of GLP-1 (such as exendin-4) as PET or SPECT imaging agents with various advantages and disadvantages. Based on the recently developed Sarcophagin chelator, here, we describe the construction of GLP-1R targeted PET probes containing monomeric and dimeric exendin-4 subunit. The in vitro binding affinity of BarMalSar-exendin-4 and Mal2Sar-(exendin-4)2 was evaluated in INS-1 cells, which over-express GLP-1R. Mal2Sar-(exendin-4)2 demonstrated around 3 times higher binding affinity compared with BaMalSar-exendin-4. After (64)Cu labeling, microPET imaging of (64)Cu-BaMalSar-exendin-4 and (64)Cu-Mal2Sar-(exendin-4)2 were performed on subcutaneous INS-1 tumors, which were clearly visualized with both probes. The tumor uptake of (64)Cu-Mal2Sar-(exendin-4)2 was significantly higher than that of (64)Cu-BaMaSarl-exendin-4, which could be caused by polyvalency effect. The receptor specificity of these probes was confirmed by effective blocking of the uptake in both tumor and normal positive organs with 20-fold excess of unlabeled exendin-4. In conclusion, sarcophagine cage conjugated exendin-4 demonstrated persistent and specific uptake in INS-1 insulinoma model. Dimerization of exendin-4 could successfully lead to increased tumor uptake in vivo. Both (64)Cu-BaMalSar-exendin-4 and (64)Cu-Mal2Sar-(exendin-4)2 hold a great potential for GLP-1R targeted imaging.

摘要

胰高血糖素样肽-1受体(GLP-1R)因其在胰岛、胰岛素瘤和心血管系统中表达水平升高,已成为成像的重要靶点。由于天然GLP-1会被二肽基肽酶-IV(DPP-IV)迅速降解,多项研究将不同的螯合剂与更稳定的GLP-1类似物(如艾塞那肽-4)偶联,作为PET或SPECT成像剂,各有优缺点。基于最近开发的肌肽螯合剂,在此我们描述了含有单体和二聚体艾塞那肽-4亚基的GLP-1R靶向PET探针的构建。在过表达GLP-1R的INS-1细胞中评估了BarMalSar-艾塞那肽-4和Mal2Sar-(艾塞那肽-4)2的体外结合亲和力。与BaMalSar-艾塞那肽-4相比,Mal2Sar-(艾塞那肽-4)2的结合亲和力高约3倍。经(64)Cu标记后,对皮下INS-1肿瘤进行了(64)Cu-BaMalSar-艾塞那肽-4和(64)Cu-Mal2Sar-(艾塞那肽-4)2的microPET成像,两种探针均能清晰显示肿瘤。(64)Cu-Mal2Sar-(艾塞那肽-4)2的肿瘤摄取明显高于(64)Cu-BaMaSarl-艾塞那肽-4,这可能是由于多价效应所致。通过用20倍过量的未标记艾塞那肽-4有效阻断肿瘤和正常阳性器官的摄取,证实了这些探针的受体特异性。总之,肌肽笼偶联的艾塞那肽-4在INS-1胰岛素瘤模型中表现出持续且特异的摄取。艾塞那肽-4的二聚化可成功导致体内肿瘤摄取增加。(64)Cu-BaMalSar-艾塞那肽-4和(64)Cu-Mal2Sar-(艾塞那肽-4)2在GLP-1R靶向成像方面均具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6c1/4063975/15779b321bb1/thnov04p0770g001.jpg

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