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Automated radiosynthesis of [11 C]UCB-J for imaging synaptic density by positron emission tomography.

Selena Milicevic SephtonTunde MikloviczJoseph J RussellAniruddha DokeLei LiIstvan BorosFranklin I Aigbirhio
Published in: Journal of labelled compounds & radiopharmaceuticals (2020)
An automated radiosynthesis of carbon-11 positron emission tomography radiotracer [11 C]UCB-J for imaging the synaptic density biomarker synaptic vesicle glycoprotein SV2A was established using Synthra RNPlus synthesizer. Commercially available trifluoroborate UCB-J analogue was used as a radiolabelling precursor, and the desired radiolabelled product was isolated in 11 ± 2% (n = 7) nondecay corrected radiochemical yield and formulated as a 10% EtOH solution in saline with molar activities of 20 to 100 GBq/μmol. The method was based upon the palladium(0)-mediated Suzuki cross-coupling reaction and [11 C]CH3 I as a radiolabelling synthon. The isolated product was cGMP compliant as demonstrated by the results of quality control analysis.
Keyphrases
  • positron emission tomography
  • pet imaging
  • computed tomography
  • quality control
  • high resolution
  • pet ct
  • prefrontal cortex
  • machine learning
  • deep learning
  • high throughput
  • data analysis
  • solid state