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Design, synthesis, and biological evaluation of multiple F-18 S1PR1 radiotracers in rodent and nonhuman primate. | LitMetric

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Article Abstract

Here we report our design and synthesis of 28 new fluorine-containing compounds as potential F-18 radiotracers for CNS imaging of sphingosine-1-phosphate receptor 1 (S1PR1), and determination of their binding potency and selectivity toward S1PR1 over other S1PR subtypes. Nine potent and selective compounds, 7c&d, 9a&c, 12b, 15b, and 18a-c with IC values ranging from 0.6-12.3 nM for S1PR1 and weak binding toward S1PR2, 3, 4, and 5, were further F-radiolabeled to produce [F]7c&d, [F]9a&c, [F]12b, [F]15b, and [F]18a-c. Multi-step F-18 radiochemistry procedures were investigated for radiosynthesis of [F]7c&d and [F]9a&c, and the presumed intermediates were synthesized and authenticated by analytic HPLC. We then performed nonhuman primate (NHP) PET brain imaging studies for eight radiotracers: [F]7c&d, [F]9a, [F]12b, [F]15b, and [F]18a-c. Three radiotracers, [F]7c, [F]7d, and [F]15b, had high NHP brain uptake with standardized uptake values (SUVs) at 2 h post-injection of 2.42, 2.84, and 2.00, respectively, and good brain retention. Our biodistribution study in rats confirmed [F]7d had a high brain uptake with no defluorination. Radiometabolic analysis of [F]7c and [F]7d in rat plasma and brain samples found that [F]7c has a more favorable metabolic profile than [F]7d. However, the trend of increased brain uptake precludes [F]7c as a suitable PET radiotracer for imaging S1PR1 in the brain. Further structural optmization is warranted to identify a highly S1PR1-specific radiotracer with rapid brain uptake kinetics.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11238945PMC
http://dx.doi.org/10.1039/d4ob00712cDOI Listing

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