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Non-invasive Imaging and Analysis of Cerebral Ischemia in Living Rats Using Positron Emission Tomography with 18F-FDG
Published on: December 28, 2014
Quantitative positron emission tomography of mGluR5 in rat brain with [(18) F]PSS232 at minimal invasiveness and
Adrienne Müller Herde1, Claudia Keller, Selena Milicevic Sephton
1Center for Radiopharmaceutical Sciences ETH-PSI-USZ, Institute of Pharmaceutical Sciences, Department of Chemistry and Applied Biosciences (D-CHAB), ETH 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 [(18) F]PSS232, an F-18-labeled analog of the mGluR5-targeting [(11) C]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 [(18) F]PSS232. We further aimed at defining models of low complexity for quantitative PET with [(18) F]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 [(11) C]ABP688 at lower unspecific accumulation of unchanged [(18) F]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. [(18) F]PSS232 is a promising radioligand for mGluR5 quantification. Methods were evaluated to quantify mGluR5 in rat brain by PET with [(18) F]PSS232. We present a minimally invasive protocol for input function recording. A two-tissue compartment model correcting for radiometabolites at reduced complexity is compared with the standard model. Finally, we demonstrate and explain why for [(18) F]PSS232 the area-under-the-curve ratio is a valid alternative to the Logan reference tissue analysis.
Insights
We developed a minimally invasive method for quantifying metabotropic glutamate receptor 5 (mGluR5) in the brain using Positron Emission Tomography (PET) with [(18)F]PSS232. This approach simplifies data analysis and is suitable for studying brain disorders.
Area of Science:
- Neuroscience
- Radiochemistry
- Medical Imaging
Background:
- Metabotropic glutamate receptor 5 (mGluR5) imaging is crucial for understanding brain disorders.
- Positron Emission Tomography (PET) requires accurate quantification, often relying on input function (IF) measurements.
- [(18)F]PSS232 is a novel F-18 labeled radioligand for mGluR5 PET imaging.
Purpose of the Study:
- To develop and validate a minimally invasive protocol for input function (IF) recording in rat brain PET studies.
- To assess simplified kinetic modeling approaches for quantitative mGluR5 imaging with [(18)F]PSS232.
- To compare the performance of [(18)F]PSS232 with existing radioligands like [(11)C]ABP688.
Main Methods:
- Minimally invasive arterio-venous shunt for input function (IF) recording.
- Quantitative PET data analysis using a modified two-tissue compartment model with radiometabolite correction.
- Evaluation of a simple reference tissue model and area-under-the-curve (AUC) ratios.
Main Results:
- The minimally invasive IF protocol yielded results comparable to invasive methods.
- The modified compartment model provided similar parameters to the standard model.
- Area-under-the-curve ratios proved to be a valid alternative to Logan reference tissue analysis for [(18)F]PSS232 quantification.
- [(18)F]PSS232 demonstrated receptor-dependent accumulation with low non-specific binding.
Conclusions:
- [(18)F]PSS232 is a promising radioligand for quantitative mGluR5 imaging in the rat brain.
- A minimally invasive protocol for IF recording is feasible and effective.
- Simplified kinetic models, including AUC ratios, are suitable for quantitative analysis with [(18)F]PSS232, reducing complexity and invasiveness.
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