In vivo imaging of transplanted islets with 64Cu-DO3A-VS-Cys40-Exendin-4 by targeting GLP-1 receptor.
Bioconjug Chem · 2011
Last updated 2026-05-28Researchers tested a new imaging method using a compound called (64)Cu-DO3A-VS-Cys40-Exendin-4, which targets the GLP-1 receptor found in pancreatic islet cells. In mice with transplanted islets, the compound showed nearly double the uptake compared to normal mice, and it clearly highlighted tumors and organs with GLP-1 receptors, like the pancreas. The imaging signal could be blocked by adding excess unlabeled Exendin-4, confirming its specificity.
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| Journal | Bioconjug Chem, 2011 |
|---|---|
| Citations | 75 |
| Relative citation ratio | 2.49 |
| NIH percentile | 80 |
| Molecules | — |
| Conditions studied | Type 2 Diabetes |
Abstract
Glucagon-like peptide 1 receptor (GLP-1R) is highly expressed in pancreatic islets, especially on β-cells. Therefore, a properly labeled ligand that binds to GLP-1R could be used for in vivo pancreatic islet imaging. Because native GLP-1 is degraded rapidly by dipeptidyl peptidase-IV (DPP-IV), a more stable agonist of GLP-1 such as Exendin-4 is a preferred imaging agent. In this study, DO3A-VS-Cys(40)-Exendin-4 was prepared through the conjugation of DO3A-VS with Cys(40)-Exendin-4. The in vitro binding affinity of DO3A-VS-Cys(40)-Exendin-4 was evaluated in INS-1 cells, which overexpress GLP-1R. After (64)Cu labeling, biodistribution studies and microPET imaging of (64)Cu-DO3A-VS-Cys(40)-Exendin-4 were performed on both subcutaneous INS-1 tumors and islet transplantation models. The subcutaneous INS-1 tumor was clearly visualized with microPET imaging after the injection of (64)Cu-DO3A-VS-Cys(40)-Exendin-4. GLP-1R positive organs, such as pancreas and lung, showed high uptake. Tumor uptake was saturable, reduced dramatically by a 20-fold excess of unlabeled Exendin-4. In the intraportal islet transplantation models, (64)Cu-DO3A-VS-Cys(40)-Exendin-4 demonstrated almost two times higher uptake compared with normal mice. (64)Cu-DO3A-VS-Cys(40)-Exendin-4 demonstrated persistent and specific uptake in the mouse pancreas, the subcutaneous insulinoma mouse model, and the intraportal human islet transplantation mouse model. This novel PET probe may be suitable for in vivo pancreatic islets imaging in the human.
Verbatim abstract via PubMed 21692471 ↗