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64Cu- and 68Ga-labelled [Nle(14),Lys(40)(Ahx-NODAGA)NH2]-exendin-4 for pancreatic beta cell imaging in rats.

Authors :
Mikkola K
Yim CB
Fagerholm V
Ishizu T
Elomaa VV
Rajander J
Jurttila J
Saanijoki T
Tolvanen T
Tirri M
Gourni E
Béhé M
Gotthardt M
Reubi JC
Mäcke H
Roivainen A
Solin O
Nuutila P
Source :
Molecular imaging and biology [Mol Imaging Biol] 2014 Apr; Vol. 16 (2), pp. 255-63.
Publication Year :
2014

Abstract

Purpose: Glucagon-like peptide-1 receptor (GLP-1R) is a molecular target for imaging of pancreatic beta cells. We compared the ability of [Nle(14),Lys(40)(Ahx-NODAGA-(64)Cu)NH2]-exendin-4 ([(64)Cu]NODAGA-exendin-4) and [Nle(14),Lys(40)(Ahx-NODAGA-(68)Ga)NH2]-exendin-4 ([(68)Ga]NODAGA-exendin-4) to detect native pancreatic islets in rodents.<br />Procedures: The stability, lipophilicity and affinity of the radiotracers to the GLP-1R were determined in vitro. The biodistribution of the tracers was assessed using autoradiography, ex vivo biodistribution and PET imaging. Estimates for human radiation dosimetry were calculated.<br />Results: We found GLP-1R-specific labelling of pancreatic islets. However, the pancreas could not be visualised in PET images. The highest uptake of the tracers was observed in the kidneys. Effective dose estimates for [(64)Cu]NODAGA-exendin-4 and [(68)Ga]NODAGA-exendin-4 were 0.144 and 0.012 mSv/MBq, respectively.<br />Conclusion: [(64)Cu]NODAGA-exendin-4 might be more effective for labelling islets than [(68)Ga]NODAGA-exendin-4. This is probably due to the lower specific radioactivity of [(68)Ga]NODAGA-exendin-4 compared to [(64)Cu]NODAGA-exendin-4. The radiation dose in the kidneys may limit the use of [(64)Cu]NODAGA-exendin-4 as a clinical tracer.

Details

Language :
English
ISSN :
1860-2002
Volume :
16
Issue :
2
Database :
MEDLINE
Journal :
Molecular imaging and biology
Publication Type :
Academic Journal
Accession number :
24101374
Full Text :
https://doi.org/10.1007/s11307-013-0691-2