[11C]CO2 BOP fixation with amines to access 11C-labeled ureas for PET imaging.

J Labelled Comp Radiopharm

Radiology and Nuclear Medicine(s), Amsterdam UMC, Vrije Universiteit Amsterdam, Amsterdam, The Netherlands.

Published: May 2024

AI Article Synopsis

  • Carbon-11 (C) is essential for PET imaging, but its short half-life of 20.4 minutes limits synthetic options.
  • A new method using BOP to react [C]CO with amine precursors allows for the quick and easy synthesis of C-labeled ureas at room temperature.
  • This technique is innovative as it employs BOP for the first time in radiochemistry, making it accessible for labs with [C]CO and yielding good to excellent results.

Article Abstract

Carbon-11 (C) is a widely used radionuclide for positron emission tomography (PET) owing to the omnipresence of carbon atoms in organic molecules. While its half-life of 20.4 min is ideal for imaging and dosimetry, it also limits the synthetic possibilities. As such, the development of fast and easy, high-yielding synthesis methods is crucial for the application of C-labeled tracers in humans. In this study, we present a novel and efficient method for the reaction of [C]CO with amine precursors using benzotriazole-1-yl-oxy-tris-(dimethylamino)-phosphonium hexafluorophosphate (BOP) to access C-labeled ureas. Our method is extremely fast as it only requires transfer of [C]CO into a solution with precursor and BOP at room temperature, where it reacts momentary into the desired C-labeled urea. This simple procedure makes it possible to radiolabel urea directly from [C]CO without the need for advanced equipment, making the method applicable for all laboratories where [C]CO is available. We synthesized a small series of aliphatic symmetrical and non-symmetrical C-labeled ureas using this method, and achieved good to excellent yields. The novelty of our study lies in the fact that peptide coupling reagent BOP is used for the first time in radiochemistry to activate [C]CO, facilitating its reaction with amines to obtain C-labeled ureas.

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Source
http://dx.doi.org/10.1002/jlcr.4075DOI Listing

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