Imaging of innate immunity activation in vivo with a redox-tuned PET reporter.
basic_science · Level V
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- Record sourced from PubMed, PMID 35190688.
- Also identified by DOI 10.1038/s41587-021-01169-y and PMC identifier 9232999.
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Abstract
High-redox-potential reactive oxygen species and reactive nitrogen species (ROS/RNS), generated by NADPH oxidase-2 (NOX2), myeloperoxidase (MPO) and related enzymes, are key effector molecules of innate immunity. High-redox-potential radicals are difficult to distinguish by imaging from less potent ROS/RNS functioning as background biological signaling molecules. Here we present 4-[<sup>18</sup>F]fluoro-1-naphthol ([<sup>18</sup>F]4FN), a redox-tuned radiopharmaceutical that selectively binds proteins and cells when oxidized by products of human MPO plus H<sub>2</sub>O<sub>2</sub>, but not H<sub>2</sub>O<sub>2</sub> alone, and can be detected using positron emission tomography (PET). Activating HL-60 neutrophil-like human cells with phorbol ester (PMA) caused [<sup>18</sup>F]4FN retention five-fold over unstimulated cells. An MPO-specific inhibitor (4-ABAH) blocked cellular retention by more than 95%. [<sup>18</sup>F]4FN PET/CT imaging discriminated inflammatory foci in vivo in three murine models of activated innate immunity: endotoxin-induced toxic shock, PMA-induced contact dermatitis and lipopolysaccharide-induced ankle arthritis. 4-ABAH and Cybb<sup>-/-</sup> (Nox2<sup>-/-</sup>) gene deletion strongly abrogated [<sup>18</sup>F]4FN retention in vivo. Thus, [<sup>18</sup>F]4FN shows promise as a robust reporter of innate immunity activation by PET/CT.
Medical subject headings
- NADPH Oxidases
- Positron Emission Tomography Computed Tomography