International Journal of Molecular Sciences (Feb 2021)

Development of <sup>18</sup>F-Labeled Radiotracers for PET Imaging of the Adenosine A<sub>2A</sub> Receptor: Synthesis, Radiolabeling and Preliminary Biological Evaluation

  • Thu Hang Lai,
  • Susann Schröder,
  • Magali Toussaint,
  • Sladjana Dukić-Stefanović,
  • Mathias Kranz,
  • Friedrich-Alexander Ludwig,
  • Steffen Fischer,
  • Jörg Steinbach,
  • Winnie Deuther-Conrad,
  • Peter Brust,
  • Rareş-Petru Moldovan

DOI
https://doi.org/10.3390/ijms22052285
Journal volume & issue
Vol. 22, no. 5
p. 2285

Abstract

Read online

The adenosine A2A receptor (A2AR) represents a potential therapeutic target for neurodegenerative diseases. Aiming at the development of a positron emission tomography (PET) radiotracer to monitor changes of receptor density and/or occupancy during the A2AR-tailored therapy, we designed a library of fluorinated analogs based on a recently published lead compound (PPY). Among those, the highly affine 4-fluorobenzyl derivate (PPY1; Ki(hA2AR) = 5.3 nM) and the 2-fluorobenzyl derivate (PPY2; Ki(hA2AR) = 2.1 nM) were chosen for 18F-labeling via an alcohol-enhanced copper-mediated procedure starting from the corresponding boronic acid pinacol ester precursors. Investigations of the metabolic stability of [18F]PPY1 and [18F]PPY2 in CD-1 mice by radio-HPLC analysis revealed parent fractions of more than 76% of total activity in the brain. Specific binding of [18F]PPY2 on mice brain slices was demonstrated by in vitro autoradiography. In vivo PET/magnetic resonance imaging (MRI) studies in CD-1 mice revealed a reasonable high initial brain uptake for both radiotracers, followed by a fast clearance.

Keywords