Automated radiochemical synthesis of pharmaceutical grade [ 18 F]FLT using 3-N-Boc-5'-O-dimethoxytrityl-3'-O-nosyl-thymidine precursor and its Sep-Pak® purification employing selective elution from reversed phase.
Arpit MitraAvik ChakrabortyTrupti UpadhyeMegha TawateSangita LadSudeep SahuChinagandham RajeshSwati BagulYogita PawarMukti Kant RaySharmila BanerjeePublished in: Journal of labelled compounds & radiopharmaceuticals (2022)
Pharmaceutical grade 3'-deoxy-3'-[ 18 F]fluorothymidine [ 18 F]FLT was synthesized using 3-N-Boc-5'-O-dimethoxytrityl-3'-O-nosyl-thymidine (BOC-Nosyl) precursor, in the general purpose TRACERlab FX modules. Purification of [ 18 F]FLT, via solid phase extraction (SPE) after radiosynthesis, using a combination of different SPE cartridges, yielded satisfactory results, with radiochemical and chemical purity >99%. While the non-decay corrected radiochemical yield (RCY) with 20 mg (24 μmole) of BOC-Nosyl precursor was found to be 6.80 ± 0.16%, the decay corrected radiochemical yield (RCY) was 9.95 ± 0.24%. Residual acetone, acetonitrile, and ethanol levels were found to be 22.97 ± 0.76, 109.08 ± 0.93, and 7,666.45 ± 3.7 ppm, respectively. A simplified method for solid-phase purification of [ 18 F]FLT was developed, circumventing the need for HPLC purification. Biodistribution in C57BL/6 mice with B16F10 cell line-induced melanoma showed tumor to blood ratio of ~3.8 at 90 min. PET/CT imaging of normal rabbit injected with [ 18 F]FLT shows selective uptake in the bone marrow and small intestine. [ 18 F]FLT was found to be excreted through the kidneys and get collected in the urinary bladder, 120 min post injection. PET/CT imaging performed in rabbit model at 30, 60, 90, and 120 min post [ 18 F]FLT injections showed concordance with tissue distribution kinetics of mice tumor model.
Keyphrases
- acute myeloid leukemia
- pet ct
- tyrosine kinase
- solid phase extraction
- ms ms
- bone marrow
- high performance liquid chromatography
- positron emission tomography
- high resolution
- liquid chromatography tandem mass spectrometry
- simultaneous determination
- molecularly imprinted
- mesenchymal stem cells
- gas chromatography mass spectrometry
- machine learning
- deep learning
- tandem mass spectrometry
- type diabetes
- ultrasound guided
- mass spectrometry
- recombinant human
- high glucose
- gas chromatography
- adipose tissue
- computed tomography
- high throughput
- single cell
- drug induced