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Published in: European Journal of Nuclear Medicine and Molecular Imaging 9/2007

01-09-2007 | Short Communication

Simple and highly efficient synthesis of 3′-deoxy-3′-[18F]fluorothymidine using nucleophilic fluorination catalyzed by protic solvent

Authors: Sang Ju Lee, Seung Jun Oh, Dae Yoon Chi, Hee Seup Kil, Euy Nyong Kim, Jin Sook Ryu, Dae Hyuk Moon

Published in: European Journal of Nuclear Medicine and Molecular Imaging | Issue 9/2007

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Abstract

Purpose

The aim of this study was to develop a method of radiochemical synthesis of 3′-deoxy-3′-[18F]fluorothymidine ([18F]FLT) with an improved radiochemical yield using nucleophilic substitution catalyzed by protic solvent.

Methods

We introduced t-butanol (t-BuOH) as a new reaction solvent for nucleophilic [18F]fluorination with [18F]fluoride using (5′-O-DMTr-2′-deoxy-3′-O-nosyl-β-D-threo-pentofuranosyl)-3-N-BOC-thymine to synthesize [18F]FLT. [18F]F was eluted with (1) tetrabutylammonium bicarbonate (TBAHCO3), (2) Cs2CO3 and kryptofix 2.2.2 (K222) after trapping of [18F]F on an ion exchange cartridge, or (3) addition of tetrabutylammonium hydroxide (TBAOH) and [18F]F to the reactor without trapping [18F]F on an ion exchange cartridge. We optimized [18F]fluorination conditions with t-butanol and then applied them to automatic synthesis using commercially available radiochemistry modules (TracerLab MX, GE Healthcare).

Results

We achieved a high radiochemical yield of 85.3 ± 3.5% by radio-TLC with TBAHCO3 as an elution solvent and 20 mg of precursor at 100°C (n = 4). With the same labeling conditions, use of Cs2CO3 and K222 with t-BuOH and TBAOH with t-BuOH generated radiochemical yields of 57.1 ± 22.5% and 55.0 ± 18.8% by radio-TLC, respectively (n = 3 for each condition). Automated synthesis with TBAHCO3 and 20 mg of precursor at 120°C for 10 min of [18F]fluorination led to radiochemical yields of 60.2 ± 5.2% after HPLC purification with an MX module (n = 10). Synthesized [18F]FLT was stable for 6 h.

Conclusion

[18F]FLT was synthesized with a significantly improved radiochemical yield by nucleophilic substitution catalyzed by protic solvent with mild reaction conditions and a short preparation time.
Literature
1.
go back to reference Been LB, Suurmeijer AJ, Cobben DC, Jager PL, Hoekstra HJ, Elsinga PH. [18F]FLT-PET in oncology: current status and opportunities. Eur J Nucl Med Mol Imaging 2004;31:1659–72.PubMedCrossRef Been LB, Suurmeijer AJ, Cobben DC, Jager PL, Hoekstra HJ, Elsinga PH. [18F]FLT-PET in oncology: current status and opportunities. Eur J Nucl Med Mol Imaging 2004;31:1659–72.PubMedCrossRef
2.
go back to reference Chen W, Cloughesy T, Kamdar N, Satyamurthy N, Bergsneider M, Liau L, et al. Imaging proliferation in brain tumors with 18F-FLT PET: comparison with 18F-FDG. J Nucl Med 2005;46:945–52.PubMed Chen W, Cloughesy T, Kamdar N, Satyamurthy N, Bergsneider M, Liau L, et al. Imaging proliferation in brain tumors with 18F-FLT PET: comparison with 18F-FDG. J Nucl Med 2005;46:945–52.PubMed
3.
go back to reference Leyton J, Latigo JR, Perumal M, Dhaliwal H, He Q, Aboagye EO. Early detection of tumor response to chemotherapy by 3′-deoxy-3′-[18F]fluorothymidine positron emission tomography: the effect of cisplatin on a fibrosarcoma tumor model in vivo. Cancer Res 2005;65:4202–10.PubMedCrossRef Leyton J, Latigo JR, Perumal M, Dhaliwal H, He Q, Aboagye EO. Early detection of tumor response to chemotherapy by 3′-deoxy-3′-[18F]fluorothymidine positron emission tomography: the effect of cisplatin on a fibrosarcoma tumor model in vivo. Cancer Res 2005;65:4202–10.PubMedCrossRef
4.
go back to reference Martin SJ, Eisenbarth JA, Wagner-Utermann U, Mier W, Henze M, Pritzkow H, et al. A new precursor for the radiosynthesis of [18F]FLT. Nucl Med Biol 2002;29:263–73.PubMedCrossRef Martin SJ, Eisenbarth JA, Wagner-Utermann U, Mier W, Henze M, Pritzkow H, et al. A new precursor for the radiosynthesis of [18F]FLT. Nucl Med Biol 2002;29:263–73.PubMedCrossRef
5.
go back to reference Grierson JR, Shields AF. Radiosynthesis of 3′-deoxy-3′-[18F]fluorothymidine: [18F]FLT for imaging of cellular proliferation in vivo. Nucl Med Biol 2000;27:143–56.PubMedCrossRef Grierson JR, Shields AF. Radiosynthesis of 3′-deoxy-3′-[18F]fluorothymidine: [18F]FLT for imaging of cellular proliferation in vivo. Nucl Med Biol 2000;27:143–56.PubMedCrossRef
6.
go back to reference Yun M, Oh SJ, Ha HJ, Ryu JS, Moon DH. High radiochemical yield synthesis of 3′-deoxy-3′-[18F]fluorothymidine using (5′-O-dimethoxytrityl-2′-deoxy-3′-O-nosyl-beta-D-threo pentofuranosyl)thymine and its 3-N-BOC-protected analogue as a labeling precursor. Nucl Med Biol 2003;30:151–7.PubMedCrossRef Yun M, Oh SJ, Ha HJ, Ryu JS, Moon DH. High radiochemical yield synthesis of 3′-deoxy-3′-[18F]fluorothymidine using (5′-O-dimethoxytrityl-2′-deoxy-3′-O-nosyl-beta-D-threo pentofuranosyl)thymine and its 3-N-BOC-protected analogue as a labeling precursor. Nucl Med Biol 2003;30:151–7.PubMedCrossRef
7.
go back to reference Oh SJ, Mosdzianowski C, Chi DY, Kim JY, Kang SH, Ryu JS, et al. Fully automated synthesis system of 3′-deoxy-3′-[18F]fluorothymidine. Nucl Med Biol 2004;31:803–9.PubMedCrossRef Oh SJ, Mosdzianowski C, Chi DY, Kim JY, Kang SH, Ryu JS, et al. Fully automated synthesis system of 3′-deoxy-3′-[18F]fluorothymidine. Nucl Med Biol 2004;31:803–9.PubMedCrossRef
8.
go back to reference Smith MD, March J. Advanced organic chemistry. 5th ed. New York: Wiley-Interscience; 2001. p 462–674. Smith MD, March J. Advanced organic chemistry. 5th ed. New York: Wiley-Interscience; 2001. p 462–674.
9.
go back to reference Kim DW, Ahn DS, Oh YH, Lee S, Kil HS, Oh SJ, et al. A new class of SN2 reactions catalyzed by protic solvents: facile fluorination for isotopic labeling of diagnostic molecules. J Am Chem Soc 2006;128:16394–7.PubMedCrossRef Kim DW, Ahn DS, Oh YH, Lee S, Kil HS, Oh SJ, et al. A new class of SN2 reactions catalyzed by protic solvents: facile fluorination for isotopic labeling of diagnostic molecules. J Am Chem Soc 2006;128:16394–7.PubMedCrossRef
Metadata
Title
Simple and highly efficient synthesis of 3′-deoxy-3′-[18F]fluorothymidine using nucleophilic fluorination catalyzed by protic solvent
Authors
Sang Ju Lee
Seung Jun Oh
Dae Yoon Chi
Hee Seup Kil
Euy Nyong Kim
Jin Sook Ryu
Dae Hyuk Moon
Publication date
01-09-2007
Publisher
Springer-Verlag
Published in
European Journal of Nuclear Medicine and Molecular Imaging / Issue 9/2007
Print ISSN: 1619-7070
Electronic ISSN: 1619-7089
DOI
https://doi.org/10.1007/s00259-007-0391-8

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