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利用质子溶剂催化的亲核氟化反应实现3'-脱氧-3'-[18F]氟代胸腺嘧啶核苷的简单高效合成。

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

作者信息

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

机构信息

Department of Nuclear Medicine, Asan Medical Center, University of Ulsan College of Medicine, 388-1 Pungnap-dong, Songpa-gu, Seoul, 138-736, South Korea.

出版信息

Eur J Nucl Med Mol Imaging. 2007 Sep;34(9):1406-9. doi: 10.1007/s00259-007-0391-8. Epub 2007 Mar 24.

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-beta-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 degrees 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 degrees 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.

摘要

目的

本研究的目的是开发一种使用质子溶剂催化亲核取代反应来改进放射化学产率的3'-脱氧-3'-[18F]氟胸腺嘧啶([18F]FLT)的放射化学合成方法。

方法

我们引入叔丁醇(t-BuOH)作为一种新的反应溶剂,用于使用(5'-O-DMTr-2'-脱氧-3'-O- nosyl-β-D-苏式-戊呋喃糖基)-3-N-BOC-胸腺嘧啶与[18F]氟化物进行亲核[18F]氟化反应以合成[18F]FLT。[18F]F-在离子交换柱上捕获后,用(1)碳酸氢四丁铵(TBAHCO3)、(2)碳酸铯和穴醚2.2.2(K222)洗脱,或者(3)在不将[18F]F-捕获在离子交换柱上的情况下,将氢氧化四丁铵(TBAOH)和[18F]F-加入到反应釜中。我们用叔丁醇优化了[18F]氟化条件,然后将其应用于使用市售放射化学模块(TracerLab MX,GE Healthcare)的自动合成。

结果

以TBAHCO3作为洗脱溶剂,在100℃下使用20mg前体,通过放射性薄层色谱法,我们获得了85.3±3.5%的高放射化学产率(n = 4)。在相同的标记条件下,使用碳酸铯和K222与叔丁醇以及TBAOH与叔丁醇,通过放射性薄层色谱法分别产生了57.1±22.5%和55.0±18.8%的放射化学产率(每种条件n = 3)。使用TBAHCO3和20mg前体在120℃下进行10分钟的[18F]氟化反应,然后用MX模块进行高效液相色谱纯化后,放射化学产率为60.2±5.2%(n = 10)。合成的[18F]FLT在6小时内稳定。

结论

通过质子溶剂催化亲核取代反应,以温和的反应条件和较短的制备时间,显著提高了[18F]FLT的放射化学产率。

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