Literature DB >> 15670697

Quantification of cerebral A1 adenosine receptors in humans using [18F]CPFPX and PET: an equilibrium approach.

Philipp T Meyer1, David Elmenhorst, Dirk Bier, Marcus H Holschbach, Andreas Matusch, Heinz H Coenen, Karl Zilles, Andreas Bauer.   

Abstract

The cerebral A(1) adenosine receptor (A(1)AR) has recently become accessible for in vivo imaging using the selective A(1)AR ligand [(18)F]CPFPX and PET. For broad application in neurosciences, imaging at distribution equilibrium is advantageous to quantify stimulus-dependent changes in receptor availability and to avoid arterial blood sampling. Here we propose a bolus/infusion (B/I) protocol to assess the total distribution volume (DV(t)) of [(18)F]CPFPX under equilibrium conditions. Employing a bolus-to-infusion ratio of 0.8 h, (near) equilibrium conditions were attained within 60 min. The regional DV(t)' given by arterial and venous equilibrium analyses agreed well with conventional two-tissue compartment model analyses (r(2) > 0.94 and r(2) > 0.84, respectively) and Logan's graphical analyses (r(2) = 1.0 and r(2) > 0.93, respectively) (n = 4 healthy volunteers). The mean regional DV(t)' values of these equilibrium analyses and of venous equilibrium analyses in additional seven volunteers demonstrated excellent agreement with the results of earlier bolus studies (r(2) > 0.98). Error simulations show that minor deviations from true equilibrium are associated with negligible to small DV(t) errors. In conclusion, [(18)F]CPFPX shows suitable characteristics for A(1)AR quantification by B/I PET scanning. Carefully standardized venous equilibrium analyses may substitute arterial analyses and thus considerably enhance applicability of A(1)AR PET in clinical routine.

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Year:  2004        PMID: 15670697     DOI: 10.1016/j.neuroimage.2004.10.029

Source DB:  PubMed          Journal:  Neuroimage        ISSN: 1053-8119            Impact factor:   6.556


  8 in total

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2.  Test-retest stability of cerebral A1 adenosine receptor quantification using [18F]CPFPX and PET.

Authors:  David Elmenhorst; Philipp T Meyer; Andreas Matusch; Oliver H Winz; Karl Zilles; Andreas Bauer
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6.  Biodistribution and radiation dosimetry of the A1 adenosine receptor ligand 18F-CPFPX determined from human whole-body PET.

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7.  Association of adenosine receptor gene polymorphisms and in vivo adenosine A1 receptor binding in the human brain.

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Review 8.  Purinergic Receptors of the Central Nervous System: Biology, PET Ligands, and Their Applications.

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Journal:  Mol Imaging       Date:  2020 Jan-Dec       Impact factor: 4.488

  8 in total

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