Quantification and reliability of [11C]VC - 002 binding to muscarinic acetylcholine receptors in the human lung — a test-retest PET study in control subjects

Background The radioligand [ 11 C]VC-002 was introduced in a small initial study long ago for imaging of muscarinic acetylcholine receptors (mAChRs) in human lungs using positron emission tomography (PET). The objectives of the present study in control subjects were to advance the methodology for qu...

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Published inEJNMMI research Vol. 10; no. 1; pp. 1 - 13
Main Authors Cselényi, Zsolt, Jucaite, Aurelija, Kristensson, Cecilia, Stenkrona, Per, Ewing, Pär, Varrone, Andrea, Johnström, Peter, Schou, Magnus, Vazquez-Romero, Ana, Moein, Mohammad Mahdi, Bolin, Martin, Siikanen, Jonathan, Grybäck, Pär, Larsson, Bengt, Halldin, Christer, Grime, Ken, Eriksson, Ulf G., Farde, Lars
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 03.06.2020
Springer Nature B.V
SpringerOpen
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Abstract Background The radioligand [ 11 C]VC-002 was introduced in a small initial study long ago for imaging of muscarinic acetylcholine receptors (mAChRs) in human lungs using positron emission tomography (PET). The objectives of the present study in control subjects were to advance the methodology for quantification of [ 11 C]VC-002 binding in lung and to examine the reliability using a test-retest paradigm. This work constituted a self-standing preparatory step in a larger clinical trial aiming at estimating mAChR occupancy in the human lungs following inhalation of mAChR antagonists. Methods PET measurements using [ 11 C]VC-002 and the GE Discovery 710 PET/CT system were performed in seven control subjects at two separate occasions, 2–19 days apart. One subject discontinued the study after the first measurement. Radioligand binding to mAChRs in lung was quantified using an image-derived arterial input function. The total distribution volume ( V T ) values were obtained on a regional and voxel-by-voxel basis. Kinetic one-tissue and two-tissue compartment models (1TCM, 2TCM), analysis based on linearization of the compartment models (multilinear Logan) and image analysis by data-driven estimation of parametric images based on compartmental theory (DEPICT) were applied. The test-retest repeatability of V T estimates was evaluated by absolute variability (VAR) and intraclass correlation coefficients (ICCs). Results The 1TCM was the statistically preferred model for description of [ 11 C]VC-002 binding in the lungs. Low VAR (< 10%) across analysis methods indicated good reliability of the PET measurements. The V T estimates were stable after 60 min. Conclusions The kinetic behaviour and good repeatability of [ 11 C]VC-002 as well as the novel lung image analysis methodology support its application in applied studies on drug-induced mAChR receptor occupancy and the pathophysiology of pulmonary disorders. Trial registration ClinicalTrials.gov identifier: NCT03097380 , registered: 31 March 2017.
AbstractList BackgroundThe radioligand [11C]VC-002 was introduced in a small initial study long ago for imaging of muscarinic acetylcholine receptors (mAChRs) in human lungs using positron emission tomography (PET). The objectives of the present study in control subjects were to advance the methodology for quantification of [11C]VC-002 binding in lung and to examine the reliability using a test-retest paradigm. This work constituted a self-standing preparatory step in a larger clinical trial aiming at estimating mAChR occupancy in the human lungs following inhalation of mAChR antagonists.MethodsPET measurements using [11C]VC-002 and the GE Discovery 710 PET/CT system were performed in seven control subjects at two separate occasions, 2–19 days apart. One subject discontinued the study after the first measurement.Radioligand binding to mAChRs in lung was quantified using an image-derived arterial input function. The total distribution volume (VT) values were obtained on a regional and voxel-by-voxel basis. Kinetic one-tissue and two-tissue compartment models (1TCM, 2TCM), analysis based on linearization of the compartment models (multilinear Logan) and image analysis by data-driven estimation of parametric images based on compartmental theory (DEPICT) were applied.The test-retest repeatability of VT estimates was evaluated by absolute variability (VAR) and intraclass correlation coefficients (ICCs).ResultsThe 1TCM was the statistically preferred model for description of [11C]VC-002 binding in the lungs. Low VAR (< 10%) across analysis methods indicated good reliability of the PET measurements. The VT estimates were stable after 60 min.ConclusionsThe kinetic behaviour and good repeatability of [11C]VC-002 as well as the novel lung image analysis methodology support its application in applied studies on drug-induced mAChR receptor occupancy and the pathophysiology of pulmonary disorders.Trial registrationClinicalTrials.gov identifier: NCT03097380, registered: 31 March 2017.
Background The radioligand [ 11 C]VC-002 was introduced in a small initial study long ago for imaging of muscarinic acetylcholine receptors (mAChRs) in human lungs using positron emission tomography (PET). The objectives of the present study in control subjects were to advance the methodology for quantification of [ 11 C]VC-002 binding in lung and to examine the reliability using a test-retest paradigm. This work constituted a self-standing preparatory step in a larger clinical trial aiming at estimating mAChR occupancy in the human lungs following inhalation of mAChR antagonists. Methods PET measurements using [ 11 C]VC-002 and the GE Discovery 710 PET/CT system were performed in seven control subjects at two separate occasions, 2–19 days apart. One subject discontinued the study after the first measurement. Radioligand binding to mAChRs in lung was quantified using an image-derived arterial input function. The total distribution volume ( V T ) values were obtained on a regional and voxel-by-voxel basis. Kinetic one-tissue and two-tissue compartment models (1TCM, 2TCM), analysis based on linearization of the compartment models (multilinear Logan) and image analysis by data-driven estimation of parametric images based on compartmental theory (DEPICT) were applied. The test-retest repeatability of V T estimates was evaluated by absolute variability (VAR) and intraclass correlation coefficients (ICCs). Results The 1TCM was the statistically preferred model for description of [ 11 C]VC-002 binding in the lungs. Low VAR (< 10%) across analysis methods indicated good reliability of the PET measurements. The V T estimates were stable after 60 min. Conclusions The kinetic behaviour and good repeatability of [ 11 C]VC-002 as well as the novel lung image analysis methodology support its application in applied studies on drug-induced mAChR receptor occupancy and the pathophysiology of pulmonary disorders. Trial registration ClinicalTrials.gov identifier: NCT03097380 , registered: 31 March 2017.
Abstract Background The radioligand [11C]VC-002 was introduced in a small initial study long ago for imaging of muscarinic acetylcholine receptors (mAChRs) in human lungs using positron emission tomography (PET). The objectives of the present study in control subjects were to advance the methodology for quantification of [11C]VC-002 binding in lung and to examine the reliability using a test-retest paradigm. This work constituted a self-standing preparatory step in a larger clinical trial aiming at estimating mAChR occupancy in the human lungs following inhalation of mAChR antagonists. Methods PET measurements using [11C]VC-002 and the GE Discovery 710 PET/CT system were performed in seven control subjects at two separate occasions, 2–19 days apart. One subject discontinued the study after the first measurement. Radioligand binding to mAChRs in lung was quantified using an image-derived arterial input function. The total distribution volume (V T) values were obtained on a regional and voxel-by-voxel basis. Kinetic one-tissue and two-tissue compartment models (1TCM, 2TCM), analysis based on linearization of the compartment models (multilinear Logan) and image analysis by data-driven estimation of parametric images based on compartmental theory (DEPICT) were applied. The test-retest repeatability of V T estimates was evaluated by absolute variability (VAR) and intraclass correlation coefficients (ICCs). Results The 1TCM was the statistically preferred model for description of [11C]VC-002 binding in the lungs. Low VAR (< 10%) across analysis methods indicated good reliability of the PET measurements. The V T estimates were stable after 60 min. Conclusions The kinetic behaviour and good repeatability of [11C]VC-002 as well as the novel lung image analysis methodology support its application in applied studies on drug-induced mAChR receptor occupancy and the pathophysiology of pulmonary disorders. Trial registration ClinicalTrials.gov identifier: NCT03097380 , registered: 31 March 2017.
ArticleNumber 59
Author Vazquez-Romero, Ana
Grime, Ken
Johnström, Peter
Stenkrona, Per
Varrone, Andrea
Eriksson, Ulf G.
Halldin, Christer
Cselényi, Zsolt
Bolin, Martin
Kristensson, Cecilia
Moein, Mohammad Mahdi
Schou, Magnus
Siikanen, Jonathan
Larsson, Bengt
Ewing, Pär
Jucaite, Aurelija
Grybäck, Pär
Farde, Lars
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Issue 1
Keywords Test-retest
[
C]VC-002
Lungs
Positron emission tomography
Muscarinic acetylcholine receptors
Language English
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Snippet Background The radioligand [ 11 C]VC-002 was introduced in a small initial study long ago for imaging of muscarinic acetylcholine receptors (mAChRs) in human...
BackgroundThe radioligand [11C]VC-002 was introduced in a small initial study long ago for imaging of muscarinic acetylcholine receptors (mAChRs) in human...
Abstract Background The radioligand [11C]VC-002 was introduced in a small initial study long ago for imaging of muscarinic acetylcholine receptors (mAChRs) in...
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StartPage 1
SubjectTerms [11C]VC-002
Binding
Cardiac Imaging
Correlation coefficients
Emission analysis
Image analysis
Imaging
Lungs
Measurement methods
Medical imaging
Medicine
Medicine & Public Health
Muscarinic acetylcholine receptors
Nuclear Medicine
Occupancy
Oncology
Original Research
Orthopedics
Positron emission
Positron emission tomography
Radiology
Receptors
Reliability analysis
Reproducibility
Respiration
Test-retest
Tomography
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Title Quantification and reliability of [11C]VC - 002 binding to muscarinic acetylcholine receptors in the human lung — a test-retest PET study in control subjects
URI https://link.springer.com/article/10.1186/s13550-020-00634-0
https://www.proquest.com/docview/2409223187
https://pubmed.ncbi.nlm.nih.gov/PMC7270393
http://kipublications.ki.se/Default.aspx?queryparsed=id:143978844
https://doaj.org/article/b57a1b395ada441a9bd3f59c5762420f
Volume 10
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