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Automated synthesis of PET radiotracers by copper-mediated 18 F-fluorination of organoborons: Importance of the order of addition and competing protodeborylation.

Andrew V MossineAllen F BrooksVadim Bernard-GauthierJustin J BaileyNaoko IchiishiRalf SchirrmacherMelanie S SanfordPeter J H Scott
Published in: Journal of labelled compounds & radiopharmaceuticals (2018)
In this paper, we describe the use of Cu-mediated [18 F]fluorodeboronation for the automated production of positron emission tomography radiotracers suitable for clinical use. Two recurrent issues with the method, low radiochemical conversion on automation and protoarene byproduct purification issues, have been successfully addressed. The new method was utilized to produce sterile injectable doses of [18 F]-(±)-IPMICF17, a positron emission tomography radiotracer for tropomyosin receptor kinase B/C, using an automated synthesis module. The product was isolated in 1.9 ± 0.1% isolated radiochemical yield, excellent radiochemical purity (>99%), and high specific activity (5294 ± 1227 Ci/mmol). Quality control testing confirmed that doses were suitable for clinical use.
Keyphrases
  • positron emission tomography
  • computed tomography
  • pet imaging
  • quality control
  • pet ct
  • machine learning
  • deep learning
  • high throughput
  • protein kinase
  • binding protein