STING-driven interferon signaling triggers metabolic alterations in pancreas cancer cells visualized by [18F]FLT PET imaging.
Keke LiangEvan R AbtThuc M LeArthur ChoAmanda M DannJing CuiLuyi LiKhalid RashidAmanda L CreechLiu WeiRazmik GhukasyanEthan W RosserNanping WuGiuseppe CarlucciJohannes CzerninTimothy R DonahueCaius G RaduPublished in: Proceedings of the National Academy of Sciences of the United States of America (2022)
Type I interferons (IFNs) are critical effectors of emerging cancer immunotherapies designed to activate pattern recognition receptors (PRRs). A challenge in the clinical translation of these agents is the lack of noninvasive pharmacodynamic biomarkers that indicate increased intratumoral IFN signaling following PRR activation. Positron emission tomography (PET) imaging enables the visualization of tissue metabolic activity, but whether IFN signaling-induced alterations in tumor cell metabolism can be detected using PET has not been investigated. We found that IFN signaling augments pancreatic ductal adenocarcinoma (PDAC) cell nucleotide metabolism via transcriptional induction of metabolism-associated genes including thymidine phosphorylase (TYMP). TYMP catalyzes the first step in the catabolism of thymidine, which competitively inhibits intratumoral accumulation of the nucleoside analog PET probe 3'-deoxy-3'-[18F]fluorothymidine ([18F]FLT). Accordingly, IFN treatment up-regulates cancer cell [18F]FLT uptake in the presence of thymidine, and this effect is dependent upon TYMP expression. In vivo, genetic activation of stimulator of interferon genes (STING), a PRR highly expressed in PDAC, enhances the [18F]FLT avidity of xenograft tumors. Additionally, small molecule STING agonists trigger IFN signaling-dependent TYMP expression in PDAC cells and increase tumor [18F]FLT uptake in vivo following systemic treatment. These findings indicate that [18F]FLT accumulation in tumors is sensitive to IFN signaling and that [18F]FLT PET may serve as a pharmacodynamic biomarker for STING agonist-based therapies in PDAC and possibly other malignancies characterized by elevated STING expression.
Keyphrases
- pet imaging
- acute myeloid leukemia
- positron emission tomography
- dendritic cells
- tyrosine kinase
- computed tomography
- immune response
- poor prognosis
- small molecule
- pet ct
- genome wide
- induced apoptosis
- stem cells
- gene expression
- mesenchymal stem cells
- squamous cell carcinoma
- oxidative stress
- signaling pathway
- drug induced
- bone marrow
- endothelial cells
- stress induced
- copy number
- cell death
- papillary thyroid
- squamous cell
- single molecule
- living cells
- heat stress
- diabetic rats