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Quantitative positron emission tomography of mGluR5 in rat brain with [18F]PSS232 at minimal invasiveness and reduced model complexity
Authors:Adrienne Müller Herde  Claudia Keller  Selena Milicevic Sephton  Linjing Mu  Roger Schibli  Simon M Ametamey  Stefanie D Krämer
Institution:1. Center for Radiopharmaceutical Sciences ETH‐PSI‐USZ, Institute of Pharmaceutical Sciences, Department of Chemistry and Applied Biosciences (D‐CHAB), ETH Zurich, Zurich, Switzerland;2. Center for Radiopharmaceutical Sciences ETH‐PSI‐USZ, Department of Nuclear Medicine, University Hospital Zurich, Zurich, Switzerland
Abstract:Imaging the density of metabotropic glutamate receptor 5 (mGluR5) in brain by positron emission tomography (PET) is of interest in relation to several brain disorders. We have recently introduced 18F]PSS232, an F‐18‐labeled analog of the mGluR5‐targeting 11C]ABP688. Quantitative PET requires kinetic modeling with an input function (IF) or an appropriate reference tissue model. We aimed at minimizing invasiveness of IF recording in rat and employing this protocol for mGluR5 quantitative PET with 18F]PSS232. We further aimed at defining models of low complexity for quantitative PET with 18F]PSS232. The IF was recorded in an arterio‐venous shunt applied by minimally invasive cannulation. PET data were analyzed with a modified two‐tissue compartment model including a single variable for radiometabolite correction in brain. We further evaluated a simple reference tissue model. Receptor‐dependent accumulation was similar to 11C]ABP688 at lower unspecific accumulation of unchanged 18F]PSS232, in agreement with its higher plasma protein binding and lower lipophilicity. The minimally invasive protocol revealed similar results as the invasive shunt method and parameters calculated with the modified two‐tissue compartment model were similar to those calculated with the standard model. The simple area under the curve ratios agreed with the Logan reference method. 18F]PSS232 is a promising radioligand for mGluR5 quantification.
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Keywords:area under the curve  cannulation  mGluR5  quantitative PET  radiometabolite  receptor imaging
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