Dalton Transactions · 2011 · 186 citations · 249 references
PET imaging relies on radiotracers that combine a biomolecular vector, a radiometal, a chelator, and a covalent linker, and recent advances have focused on biomolecule‑based tracers that require longer‑lived radionuclides such as 64Cu, 68Ga, 86Y, and 89Zr. This paper provides a practical guide that compiles design choices and synthetic details for radiometal‑based PET bioconjugates, aiming to illuminate diverse synthesis methods and serve as a reference for researchers. The guide aggregates information from the literature on chelation, conjugation, and radiometallation strategies used to create agents ranging from 68Ga‑labeled pentapeptides to 89Zr‑labeled monoclonal antibodies.
Positron emission tomography (PET) has become a vital imaging modality in the diagnosis and treatment of disease, most notably cancer. A wide array of small molecule PET radiotracers have been developed that employ the short half-life radionuclides 11C, 13N, 15O, and 18F. However, PET radiopharmaceuticals based on biomolecular targeting vectors have been the subject of dramatically increased research in both the laboratory and the clinic. Typically based on antibodies, oligopeptides, or oligonucleotides, these tracers have longer biological half-lives than their small molecule counterparts and thus require labeling with radionuclides with longer, complementary radioactive half-lives, such as the metallic isotopes 64Cu, 68Ga, 86Y, and 89Zr. Each bioconjugate radiopharmaceutical has four component parts: biomolecular vector, radiometal, chelator, and covalent link between chelator and biomolecule. With the exception of the radiometal, a tremendous variety of choices exists for each of these pieces, and a plethora of different chelation, conjugation, and radiometallation strategies have been utilized to create agents ranging from 68Ga-labeled pentapeptides to 89Zr-labeled monoclonal antibodies. Herein, the authors present a practical guide to the construction of radiometal-based PET bioconjugates, in which the design choices and synthetic details of a wide range of biomolecular tracers from the literature are collected in a single reference. In assembling this information, the authors hope both to illuminate the diverse methods employed in the synthesis of these agents and also to create a useful reference for molecular imaging researchers both experienced and new to the field.
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Michael Hofmann, Helmut R. Maëcke, A. Börner et al. · European Journal of Nuclear Medicine and Molecular Imaging · 2001 · 539 citations
Positron Emission Tomography, Somatostatin Receptor Pet, Engineering +11