TY - JOUR
T1 - An improved strategy for the synthesis of [18F]-labeled arabinofuranosyl nucleosides
AU - Zhang, Hanwen
AU - Cantorias, Melchor V.
AU - Pillarsetty, Naga Vara Kishore
AU - Burnazi, Eva M.
AU - Cai, Shangde
AU - Lewis, Jason S.
N1 - Funding Information:
The authors gratefully acknowledge Dr. Brian Zeglis for editorial comments/corrections and scientific discussions regarding the manuscript. This work was financially supported in part by the Office of Science (BER)-U.S. Department of Energy (Award DE-SC0002456 ; JSL) and the NIH/NCI ICMIC grant to MSKCC ( P50 CA086438 ) awards. We also thank personnel of MSKCC Cyclotron-Radiochemistry Core ( NIH Center Grant P30-CA08748 ) for their technical services.
PY - 2012/11
Y1 - 2012/11
N2 - The expression of the herpes simplex virus type-1 thymidine kinase (HSV1-tk) gene can be imaged efficaciously using a variety of 2'-[18F]fluoro-2'-deoxy-1-b-D-arabinofuranosyl-uracil derivatives [[18F]-FXAU, X=I(iodo), E(ethyl), and M(methyl)]. However, the application of these derivatives in clinical and translational studies has been impeded by their complicated and long syntheses (3-5h). To remedy these issues, in the study at hand we have investigated whether microwave or combined catalysts could facilitate the coupling reaction between sugar and nucleobase and, further, have probed the feasibility of establishing a novel approach for [18F]-FXAU synthesis.We have demonstrated that the rate of the trimethylsilyl trifluoromethanesulfonate (TMSOTf)-catalyzed coupling reaction between the 2-deoxy-sugar and uracil derivatives at 90 °C can be significantly accelerated by microwave-driven heating or by the addition of Lewis acid catalyst (SnCl4). Further, we have observed that the stability of the α- and β-anomers of [18F]-FXAU derivatives differs during the hydrolysis step. Using the microwave-driven heating approach, overall decay-corrected radiochemical yields of 19%-27% were achieved for [18F]-FXAU in 120min at a specific activity of >22MBq/nmol (595Ci/mmol). Ultimately, we believe that these high yielding syntheses of [18F]-FIAU, [18F]-FMAU and [18F]-FEAU will facilitate routine production for clinical applications.
AB - The expression of the herpes simplex virus type-1 thymidine kinase (HSV1-tk) gene can be imaged efficaciously using a variety of 2'-[18F]fluoro-2'-deoxy-1-b-D-arabinofuranosyl-uracil derivatives [[18F]-FXAU, X=I(iodo), E(ethyl), and M(methyl)]. However, the application of these derivatives in clinical and translational studies has been impeded by their complicated and long syntheses (3-5h). To remedy these issues, in the study at hand we have investigated whether microwave or combined catalysts could facilitate the coupling reaction between sugar and nucleobase and, further, have probed the feasibility of establishing a novel approach for [18F]-FXAU synthesis.We have demonstrated that the rate of the trimethylsilyl trifluoromethanesulfonate (TMSOTf)-catalyzed coupling reaction between the 2-deoxy-sugar and uracil derivatives at 90 °C can be significantly accelerated by microwave-driven heating or by the addition of Lewis acid catalyst (SnCl4). Further, we have observed that the stability of the α- and β-anomers of [18F]-FXAU derivatives differs during the hydrolysis step. Using the microwave-driven heating approach, overall decay-corrected radiochemical yields of 19%-27% were achieved for [18F]-FXAU in 120min at a specific activity of >22MBq/nmol (595Ci/mmol). Ultimately, we believe that these high yielding syntheses of [18F]-FIAU, [18F]-FMAU and [18F]-FEAU will facilitate routine production for clinical applications.
KW - Fluorine-18
KW - Lewis acid
KW - Microwave
KW - Nucleosides
KW - [F]-FIAU
UR - https://www.scopus.com/pages/publications/84867876323
U2 - 10.1016/j.nucmedbio.2012.06.008
DO - 10.1016/j.nucmedbio.2012.06.008
M3 - Article
C2 - 22819195
AN - SCOPUS:84867876323
SN - 0969-8051
VL - 39
SP - 1182
EP - 1188
JO - Nuclear Medicine and Biology
JF - Nuclear Medicine and Biology
IS - 8
ER -