Related Experiment Video
Updated: Oct 12, 2025

Measuring Relative Insulin Secretion using a Co-Secreted Luciferase Surrogate
Published on: June 25, 2019
Development of novel radioiodinated exendin-4 derivatives targeting GLP-1 receptor for detection of β-cell mass
Yu Ogawa1, Hiroyuki Kimura2, Hiroyuki Fujimoto3
1Department of Patho-Functional Bioanalysis, Kyoto University Graduate School of Pharmaceutical Sciences, 46-29, Yoshida Shimoadachi-cho, Sakyo-ku, Kyoto 606-8501, Japan.
Abstract:
In subjects with type 2 diabetes mellitus (T2DM), pancreatic β-cell mass decreases; however, it is unknown to what extent this decrease contributes to the pathophysiology of T2DM. Therefore, the development of a method for noninvasive detection of β-cell mass is underway. We previously reported that glucagon-like peptide-1 receptor (GLP-1R) is a promising target molecule for β-cell imaging. In this study, we attempted to develop a probe targeting GLP-1R for β-cell imaging using single-photon emission computed tomography (SPECT). For this purpose, we selected exendin-4 as the lead compound and radiolabeled lysine at residue 12 in exendin-4 or additional lysine at the C-terminus using [123I]iodobenzoylation. To evaluate in vitro receptor specificity, binding assay was performed using dispersed mouse islet cells. Biodistribution study was performed in normal ddY mice. Ex vivo autoradiography was performed in transgenic mice expressing green fluorescent protein under control of the mouse insulin I gene promoter. Additionally, SPECT imaging was performed in normal ddY mice. The affinity of novel synthesized derivatives toward pancreatic β-cells was not affected by iodobenzoylation. The derivatives accumulated in the pancreas after intravenous administration specifically via GLP-1R expressed on the pancreatic β-cells. Extremely high signal-to-noise ratio was observed during evaluation of biodistribution of [123I]IB12-Ex4. SPECT images using normal mice showed that [123I]IB12-Ex4 accumulated in the pancreas with high contrast between the pancreas and background. These results indicate that [123I]IB12-Ex4 for SPECT is useful for clinical applications because of its preferable kinetics in vivo.
Insights
Researchers developed a novel imaging probe, [123I]IB12-Ex4, for noninvasively detecting pancreatic beta-cell mass in type 2 diabetes. This probe targets the glucagon-like peptide-1 receptor (GLP-1R) and shows high specificity and contrast for beta-cells in SPECT imaging.
Area of Science:
- Nuclear Medicine
- Endocrinology
- Molecular Imaging
Background:
- Type 2 diabetes mellitus (T2DM) is associated with decreased pancreatic beta-cell mass, but its contribution to disease pathophysiology is unclear.
- Noninvasive methods for assessing beta-cell mass are crucial for understanding T2DM.
- Glucagon-like peptide-1 receptor (GLP-1R) is a promising molecular target for beta-cell imaging.
Purpose of the Study:
- To develop a novel probe targeting GLP-1R for noninvasive beta-cell imaging using single-photon emission computed tomography (SPECT).
- To evaluate the specificity, biodistribution, and imaging characteristics of the developed probe in preclinical models.
Main Methods:
- Exendin-4 derivatives were synthesized and radiolabeled with iodine-123 ([123I]) via iodobenzoylation.
- In vitro receptor specificity was assessed using binding assays with mouse islet cells.
- Biodistribution, ex vivo autoradiography, and in vivo SPECT imaging were performed in mice.
Main Results:
- The novel [123I]-labeled exendin-4 derivatives ([123I]IB12-Ex4) demonstrated affinity for pancreatic beta-cells without loss of function after iodobenzoylation.
- The probe accumulated specifically in the pancreas via GLP-1R on beta-cells after intravenous administration.
- SPECT imaging revealed high contrast between the pancreas and background, with favorable in vivo kinetics for [123I]IB12-Ex4.
Conclusions:
- The developed [123I]IB12-Ex4 probe is a promising tool for SPECT-based noninvasive imaging of pancreatic beta-cell mass.
- Its high specificity, signal-to-noise ratio, and favorable biodistribution suggest potential for clinical applications in T2DM management.
Related Concept Videos
Glucagon-like Receptor Agonists
GLP-1, when administered in high doses intravenously, triggers insulin secretion, inhibits glucagon release, slows gastric emptying, reduces food intake, and restores normal insulin secretion. However, its rapid inactivation by...
Insulin: Biosynthesis, Chemistry, and Preparation
Damage or functional impairment of β-cells inhibits insulin production, leading to diabetes. Diabetes treatment...

