Related Experiment Video
Updated: Jan 20, 2026

Author Spotlight: Streamlined Brain and Skull Modeling for Enhanced Neurosurgical Planning in NHP Research
Published on: February 9, 2024
Discovery of Fluorinated Ultrapotent Chemogenetic Ligands for PET Imaging and Neural Modulation in Nonhuman Primates
Sridhar Goud Nerella1, Jeih-San Liow1, Bing Li2
1Molecular Imaging Branch, National Institute of Mental Health, National Institutes of Health, Bethesda, Maryland 20892, United States.
Abstract:
Chemogenetic technologies offer a powerful approach to modulating neural circuits with high precision and hold promise for therapeutic applications in neuropsychiatric disorders. However, translating these tools for noninvasive monitoring in the primate brain has been limited by a lack of suitable positron emission tomography (PET) radioligands. Existing ultrapotent ligands activate PSAM receptors, but the PET ligand [11C]uPSEM792 shows poor brain penetration, and [18F]ASEM lacks receptor specificity. To address this, we developed novel chemogenetic ligands with improved brain permeability and radiolabeled them with fluorine-18. Two candidates, PSG07 and PSN09, showed a high-affinity and potent agonist activity at PSAM4-GlyR and PSAM4-5-HT3 receptors. Monkey PET imaging showed tracer localization at the PSAM4-GlyR expression site, with [18F]PSN09 displaying a detectable signal. Functional imaging with [18F]FDG further confirmed neuronal inhibition following administration of PSG07 and PSN09. These findings highlight PSG07 and PSN09 as promising chemogenetic actuators with the potential as radioligands for translational PET imaging in nonhuman primates.
Related Concept Videos
06:33A Neural Implant Design Toolbox for Nonhuman Primates
08:41A MRI-Based Toolbox for Neurosurgical Planning in Nonhuman Primates
11:16Preparation and Gene Modification of Nonhuman Primate Hematopoietic Stem and Progenitor Cells
16:45Nonhuman Primate Lung Decellularization and Recellularization Using a Specialized Large-organ Bioreactor
10:04Analysis of 18FDG PET/CT Imaging as a Tool for Studying Mycobacterium tuberculosis Infection and Treatment in Non-human Primates
09:06Development of a 68Gallium-Labeled D-Peptide PET Tracer for Imaging Programmed Death-Ligand 1 Expression

