Imaging NRF2 activation in non-small cell lung cancer with positron emission tomography.

Greenwood, Hannah E; Barber, Abigail R; Edwards, Richard S; Tyrrell, Will E; George, Madeleine E; Dos Santos, Sofia N; Baark, Friedrich; Tanc, Muhammet et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

Mutations in the NRF2-KEAP1 pathway are common in non-small cell lung cancer (NSCLC) and confer broad-spectrum therapeutic resistance, leading to poor outcomes. Currently, there is no means to non-invasively identify NRF2 activation in living subjects. Here, we show that positron emission tomography imaging with the system x<sub>c</sub><sup>-</sup> radiotracer, [<sup>18</sup>F]FSPG, provides a sensitive and specific marker of NRF2 activation in orthotopic, patient-derived, and genetically engineered mouse models of NSCLC. We found a NRF2-related gene expression signature in a large cohort of NSCLC patients, suggesting an opportunity to preselect patients prior to [<sup>18</sup>F]FSPG imaging. Furthermore, we reveal that system x<sub>c</sub><sup>-</sup> is a metabolic vulnerability that can be therapeutically targeted with an antibody-drug conjugate for sustained tumour growth suppression. Overall, our results establish [<sup>18</sup>F]FSPG as a predictive marker of therapy resistance in NSCLC and provide the basis for the clinical evaluation of both imaging and therapeutic agents that target this important antioxidant pathway.

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