Synthesis, Labeling, and Biological Evaluation of P2Y12 Receptor Radioligands for Positron Emission Tomography Imaging of Neuroinflammation

  • ACS Chem Neurosci. 2025 Jul 16;16(14):2639-2656. doi: 10.1021/acschemneuro.5c00187.
Eugénie Pincemail  1 Marie-Anne Peyronneau  1 Caroline Denis  1 Hayet Bensalah  1 Margot Corbel  2 Sébastien Goutal  1 Maud Goislard  1 Haneen Al Hroub  3 Marie Théry  1 Sébastien Beuché  1 Hashem Ali M Al Musawi  3 Fabien Chauveau  4 Nadja Van Camp  2 Alexis-Pierre Bemelmans  2 Christa E Müller  3 Bertrand Kuhnast  1 Alexandra Winkeler  1 Mylène Richard  1
Affiliations
  • 1. Paris-Saclay University, CEA, CNRS, Inserm, BioMaps, SHFJ, 91401 Orsay, France.
  • 2. Paris-Saclay University, CEA, CNRS, MIRCen, Laboratoire des Maladies Neurodegeneratives, 92265 Fontenay-aux-Roses, France.
  • 3. PharmaCenter Bonn, Pharmaceutical Institute, Department of Pharmaceutical & Medicinal Chemistry, University of Bonn, 53121 Bonn, Germany.
  • 4. Université Claude Bernard Lyon 1, Centre de Recherche en Neurosciences de Lyon, Inserm U1028, CNRS UMR5292, BIORAN, Groupement Hospitalier Est, 69677 Bron, France.
Abstract

The P2Y12 receptor (P2Y12R) is a G-protein-coupled receptor whose expression level is directly correlated to microglial activation. Herein, we report on the design of a series of new P2Y12R ligands and the radiolabeling and characterization of two positron emission tomography (PET) tracers, [11C]37 and [18F]41. These compounds were evaluated by autoradiography studies on rat brain slices exhibiting overexpression of human P2Y12Rs (AAV-hP2Y12R). Metabolism and biodistribution of [18F]41 were evaluated ex vivo in healthy rats and indicated good metabolic stability with 41% of unchanged radioligand 1 h post injection and a limited crossing of the blood-brain barrier with a brain uptake of 0.02%ID/g 1 h post injection. In vivo PET imaging performed in the AAV-hP2Y12R rat model confirmed this low brain uptake, and no significant difference was found in the transfected (SUVmean 0.14 ± 0.01) versus contralateral (SUVmean 0.13 ± 0.01) striatum of the AAV-hP2Y12R model. Similar results were observed in healthy rats and in nonhuman primates. Additional studies in the presence of tariquidar led to a 3-4-fold increase in the [18F]41 brain concentration, suggesting that [18F]41 is a P-glycoprotein substrate. Future work will focus on improving radioligand design to enhance blood-brain barrier permeation and to reduce efflux transport.

Keywords
P2Y12R; PET ligands; carbon-11; fluorine-18; microglial state; neuroinflammation.
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