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OtherClinical Investigations (Human)

Kinetic modeling and test-retest reproducibility of 11C-EKAP and 11C-FEKAP, novel agonist radiotracers for PET imaging of the kappa opioid receptor in humans

Mika Naganawa, Songye Li, Nabeel B Nabulsi, Shu-fei Lin, David Labaree, Jim Ropchan, Hong Gao, Michael Mei, Shannan Henry, David Matuskey, Richard E Carson and Yiyun Huang
Journal of Nuclear Medicine March 2020, jnumed.119.227694; DOI: https://doi.org/10.2967/jnumed.119.227694
Mika Naganawa
Yale University School of Medicine, United States
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Songye Li
Yale University School of Medicine, United States
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Nabeel B Nabulsi
Yale University School of Medicine, United States
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Shu-fei Lin
Yale University School of Medicine, United States
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David Labaree
Yale University School of Medicine, United States
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Jim Ropchan
Yale University School of Medicine, United States
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Hong Gao
Yale University School of Medicine, United States
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Michael Mei
Yale University School of Medicine, United States
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Shannan Henry
Yale University School of Medicine, United States
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David Matuskey
Yale University School of Medicine, United States
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Richard E Carson
Yale University School of Medicine, United States
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Yiyun Huang
Yale University School of Medicine, United States
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Abstract

The kappa opioid receptor (KOR) is implicated in various neuropsychiatric disorders. We previously evaluated an agonist tracer, 11C-GR103545, for PET imaging of KOR in humans. Although 11C-GR103545 showed high brain uptake, good binding specificity, and selectivity to KOR, it displayed slow kinetics and relatively large test-retest variability (TRV) of distribution volume (VT) estimates (15%). Therefore we set out to develop two novel KOR agonist radiotracers, 11C-EKAP and 11C-FEKAP, and in nonhuman primates, both tracers exhibited faster kinetics and comparable binding parameters to 11C-GR103545. The aim of this study was to assess their kinetic and binding properties in humans. Methods: Six healthy subjects underwent 120-min test-retest PET scans with both 11C-EKAP and 11C-FEKAP. Metabolite-corrected arterial input functions were measured. Regional time-activity curves (TACs) were generated for 14 regions of interest. One- and two-tissue compartment models (1TC, 2TC) and the multilinear analysis-1 (MA1) method were applied to the regional TACs to calculate VT. Time-stability of VT values and test-retest reproducibility were evaluated. Levels of specific binding, as measured by the non-displaceable binding potential (BPND) for the three tracers (11C-EKAP, 11C-FEKAP and 11C-GR103545), were compared using a graphical method. Results: For both tracers, regional TACs were fitted well with the 2TC model and MA1 method (t*=20min), but not with the 1TC model. Given unreliably estimated parameters in several fits with the 2TC model and a good match between VT values from MA1 and 2TC, MA1 was chosen as the appropriate model for both tracers. Mean MA1 VT values were highest for 11C-GR103545, followed by 11C-EKAP, then 11C-FEKAP. Minimum scan time for stable VT measurement was 90 and 110min for 11C-EKAP and 11C-FEKAP, respectively, compared with 140min for 11C-GR103545. The mean absolute TRV in MA1 VT estimates was 7% and 18% for 11C-EKAP and 11C-FEKAP, respectively. BPND levels were similar for 11C-FEKAP and 11C-GR103545, but ~25% lower for 11C-EKAP. Conclusion: The two novel KOR agonist tracers showed faster tissue kinetics than 11C-GR103545. Even with slightly lower BPND, 11C-EKAP is judged to be a better tracer for imaging and quantification of KOR in humans, based on the shorter minimum scan time and excellent test-retest.

  • Molecular Imaging
  • PET
  • Radiotracer Tissue Kinetics
  • Brain Imaging
  • Kappa Opioid Receptors
  • Kinetic modeling
  • Positron Emission Tomography
  • Receptor imaging
  • Copyright © 2020 by the Society of Nuclear Medicine and Molecular Imaging, Inc.
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Journal of Nuclear Medicine: 66 (5)
Journal of Nuclear Medicine
Vol. 66, Issue 5
May 1, 2025
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Kinetic modeling and test-retest reproducibility of 11C-EKAP and 11C-FEKAP, novel agonist radiotracers for PET imaging of the kappa opioid receptor in humans
Mika Naganawa, Songye Li, Nabeel B Nabulsi, Shu-fei Lin, David Labaree, Jim Ropchan, Hong Gao, Michael Mei, Shannan Henry, David Matuskey, Richard E Carson, Yiyun Huang
Journal of Nuclear Medicine Mar 2020, jnumed.119.227694; DOI: 10.2967/jnumed.119.227694

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Kinetic modeling and test-retest reproducibility of 11C-EKAP and 11C-FEKAP, novel agonist radiotracers for PET imaging of the kappa opioid receptor in humans
Mika Naganawa, Songye Li, Nabeel B Nabulsi, Shu-fei Lin, David Labaree, Jim Ropchan, Hong Gao, Michael Mei, Shannan Henry, David Matuskey, Richard E Carson, Yiyun Huang
Journal of Nuclear Medicine Mar 2020, jnumed.119.227694; DOI: 10.2967/jnumed.119.227694
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Keywords

  • Molecular imaging
  • PET
  • radiotracer tissue kinetics
  • brain imaging
  • Kappa Opioid Receptors
  • kinetic modeling
  • Positron Emission Tomography
  • receptor imaging
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