In Vivo Imaging of GLP-1R with a Targeted Bimodal PET/Fluorescence Imaging Agent

Accurate visualization and quantification of β-cell mass is critical for the improved understanding, diagnosis, and treatment of both type 1 diabetes (T1D) and insulinoma. Here, we describe the synthesis of a bimodal imaging probe (PET/fluorescence) for imaging GLP-1R expression in the pancreas and...

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Veröffentlicht in:Bioconjugate chemistry 2014-07, Vol.25 (7), p.1323-1330
Hauptverfasser: Brand, Christian, Abdel-Atti, Dalya, Zhang, Yachao, Carlin, Sean, Clardy, Susan M, Keliher, Edmund J, Weber, Wolfgang A, Lewis, Jason S, Reiner, Thomas
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Sprache:eng
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Zusammenfassung:Accurate visualization and quantification of β-cell mass is critical for the improved understanding, diagnosis, and treatment of both type 1 diabetes (T1D) and insulinoma. Here, we describe the synthesis of a bimodal imaging probe (PET/fluorescence) for imaging GLP-1R expression in the pancreas and in pancreatic islet cell tumors. The conjugation of a bimodal imaging tag containing a near-infrared fluorescent dye, and the copper chelator sarcophagine to the GLP-1R targeting peptide exendin-4 provided the basis for the bimodal imaging probe. Conjugation was performed via a novel sequential one-pot synthetic procedure including 64Cu radiolabeling and copper-catalyzed click-conjugation. The bimodal imaging agent 64Cu-E4-Fl was synthesized in good radiochemical yield and specific activity (RCY = 36%, specific activity: 141 μCi/μg, >98% radiochemical purity). The agent showed good performance in vivo and ex vivo, visualizing small xenografts (
ISSN:1043-1802
1520-4812
DOI:10.1021/bc500178d