Kinetic modeling of the monoamine oxidase-B radioligand [18F]SMBT-1 in human brain with positron emission tomography

Author:

Lopresti Brian J1,Stehouwer Jeffrey1ORCID,Reese Alexandria C1,Mason Neale S1,Royse Sarah K1,Narendran Rajesh12,Laymon Charles M13,Lopez Oscar L245,Cohen Ann D2,Mathis Chester A1,Villemagne Victor L2

Affiliation:

1. Department of Radiology, University of Pittsburgh School of Medicine, Pittsburgh, PA, USA

2. Department of Psychiatry, University of Pittsburgh School of Medicine, Pittsburgh, PA, USA

3. Dept. of Bioengineering, Swanson School of Engineering, University of Pittsburgh, Pittsburgh, PA, USA

4. Department of Neurology, University of Pittsburgh School of Medicine, Pittsburgh, PA, USA

5. Clinical and Translational Sciences Institute, University of Pittsburgh, Pittsburgh, PA, USA

Abstract

This paper describes pharmacokinetic analyses of the monoamine-oxidase-B (MAO-B) radiotracer [18F]( S)-(2-methylpyrid-5-yl)-6-[(3-fluoro-2-hydroxy)propoxy]quinoline ([18F]SMBT-1) for positron emission tomography (PET) brain imaging. Brain MAO-B expression is widespread, predominantly within astrocytes. Reactive astrogliosis in response to neurodegenerative disease pathology is associated with MAO-B overexpression. Fourteen elderly subjects (8 control, 5 mild cognitive impairment, 1 Alzheimer’s disease) with amyloid ([11C]PiB) and tau ([18F]flortaucipir) imaging assessments underwent dynamic [18F]SMBT-1 PET imaging with arterial input function determination. [18F]SMBT-1 showed high brain uptake and a retention pattern consistent with the known MAO-B distribution. A two-tissue compartment (2TC) model where the K1/k2 ratio was fixed to a whole brain value best described [18F]SMBT-1 kinetics. The 2TC total volume of distribution (VT) was well identified and highly correlated (r2∼0.8) with post-mortem MAO-B indices. Cerebellar grey matter (CGM) showed the lowest mean VT of any region and is considered the optimal pseudo-reference region. Simplified analysis methods including reference tissue models, non-compartmental models, and standard uptake value ratios (SUVR) agreed with 2TC outcomes (r2 > 0.9) but with varying bias. We found the CGM-normalized 70–90 min SUVR to be highly correlated (r2 = 0.93) with the 2TC distribution volume ratio (DVR) with acceptable bias (∼10%), representing a practical alternative for [18F]SMBT-1 analyses.

Publisher

SAGE Publications

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