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Published on: February 3, 2015
New Radiolabeled Exendin Analogues Show Reduced Renal Retention
Lieke Joosten1, Cathelijne Frielink1, Theodorus J P Jansen1
1Department of Medical Imaging, Nuclear Medicineof Medical Imaging, Radboud University Medical Center, 6525 GA Nijmegen, The Netherlands.
Abstract:
PET imaging of the glucagon-like peptide-1 receptor (GLP-1R) using radiolabeled exendin is a promising imaging method to detect insulinomas. However, high renal accumulation of radiolabeled exendin could hamper the detection of small insulinomas in proximity to the kidneys and limit its use as a radiotherapeutic agent. Here, we report two new exendin analogues for GLP-1R imaging and therapy, designed to reduce renal retention by incorporating a cleavable methionine-isoleucine (Met-Ile) linker. We examined the renal retention and insulinoma targeting properties of these new exendin analogues in a nude mouse model bearing subcutaneous GLP-1R-expressing insulinomas. NOTA or DOTA was conjugated via a methionine-isoleucine linker to the C-terminus of exendin-4 (NOTA-MI-exendin-4 or DOTA-MI-exendin-4). NOTA- and DOTA-exendin-4 without the linker were used as references. The affinity for GLP-1R was determined in a competitive binding assay using GLP-1R transfected cells. Biodistribution of [68Ga]Ga-NOTA-exendin-4, [68Ga]Ga-NOTA-MI-exendin-4, [177Lu]Lu-DOTA-exendin-4, and [177Lu]Lu-DOTA-MI-exendin-4 was determined in INS-1 tumor-bearing BALB/c nude mice, and PET/CT was acquired to visualize renal retention and tumor targeting. For all tracers, dosimetric calculations were performed to determine the kidney self-dose. The affinity for GLP-1R was in the low nanomolar range (<11 nM) for all peptides. In vivo biodistribution revealed a significantly lower kidney uptake of [68Ga]Ga-NOTA-MI-exendin-4 at 4 h post-injection (p.i.) (34.2 ± 4.2 %IA/g), compared with [68Ga]Ga-NOTA-exendin-4 (128 ± 10 %IA/g). Accumulation of [68Ga]Ga-NOTA-MI-exendin-4 in the tumor was 25.0 ± 8.0 %IA/g 4 h p.i., which was similar to that of [68Ga]Ga-NOTA-exendin-4 (24.9 ± 9.3 %IA/g). This resulted in an improved tumor-to-kidney ratio from 0.2 ± 0.0 to 0.8 ± 0.3. PET/CT confirmed the findings in the biodistribution studies. The kidney uptake of [177Lu]Lu-DOTA-MI-exendin-4 was 39.4 ± 6.3 %IA/g at 24 h p.i. and 13.0 ± 2.5 %IA/g at 72 h p.i., which were significantly lower than those for [177Lu]Lu-DOTA-exendin-4 (99.3 ± 9.2 %IA/g 24 h p.i. and 45.8 ± 3.9 %IA/g 72 h p.i.). The uptake in the tumor was 7.8 ± 1.5 and 11.3 ± 2.0 %IA/g 24 h p.i. for [177Lu]Lu-DOTA-MI-exendin-4 and [177Lu]Lu-DOTA-exendin-4, respectively, resulting in improved tumor-to-kidney ratios for [177Lu]Lu-DOTA-MI-exendin-4. The new exendin analogues with a Met-Ile linker showed 2-3-fold reduced renal retention and improved tumor-to-kidney ratios compared with their reference without the Met-Ile linker. Future studies should demonstrate whether [68Ga]Ga-NOTA-MI-exendin-4 results in improved detection of small insulinomas in close proximity to the kidneys with PET/CT. [177Lu]Lu-DOTA-MI-exendin-4 might open a window of opportunity for exendin-based radionuclide therapy.
Insights
New exendin analogues with a methionine-isoleucine linker significantly reduce kidney retention for improved glucagon-like peptide-1 receptor (GLP-1R) imaging and therapy. These analogs offer better tumor-to-kidney ratios, potentially enhancing insulinoma detection and therapeutic applications.
Area of Science:
- Nuclear Medicine
- Radiopharmaceutical Chemistry
- Oncology
Background:
- Positron emission tomography (PET) imaging using radiolabeled exendin targets the glucagon-like peptide-1 receptor (GLP-1R) for insulinoma detection.
- High renal accumulation of radiolabeled exendin hinders the detection of small, kidney-proximal insulinomas and limits its use in radionuclide therapy.
Purpose of the Study:
- To develop and evaluate novel exendin analogues designed to reduce renal retention for improved GLP-1R imaging and therapy.
- To assess the affinity, renal retention, and tumor targeting of new exendin analogues incorporating a cleavable methionine-isoleucine (Met-Ile) linker.
Main Methods:
- Two new exendin analogues, NOTA-Met-Ile-exendin-4 and DOTA-Met-Ile-exendin-4, were synthesized and compared to analogues without the linker.
- GLP-1R affinity was assessed using competitive binding assays.
- Biodistribution studies and PET/CT imaging were performed in mouse models bearing GLP-1R-expressing insulinomas using [68Ga]Ga-NOTA-MI-exendin-4 and [177Lu]Lu-DOTA-MI-exendin-4.
Main Results:
- The new exendin analogues exhibited GLP-1R affinity in the low nanomolar range.
- [68Ga]Ga-NOTA-MI-exendin-4 showed significantly lower kidney uptake (34.2 ± 4.2 %IA/g at 4h) compared to the reference (128 ± 10 %IA/g), with similar tumor uptake (25.0 ± 8.0 %IA/g), improving the tumor-to-kidney ratio.
- [177Lu]Lu-DOTA-MI-exendin-4 also demonstrated substantially reduced renal retention at 24h and 72h post-injection, leading to enhanced tumor-to-kidney ratios.
Conclusions:
- Exendin analogues incorporating a Met-Ile linker significantly reduce renal retention by 2-3 fold, improving tumor-to-kidney ratios for both imaging and therapeutic applications.
- These novel analogues hold promise for improved detection of small insulinomas near the kidneys using PET/CT and for advancing exendin-based radionuclide therapy.
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