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[(18)F]FtRGD的实用合成:一种用于正电子发射断层扫描(PET)的血管生成生物标志物

A practical synthesis of [(18) F]FtRGD: an angiogenesis biomarker for PET.

作者信息

Bejot Romain, Goggi Julian, Moonshi Shebbrin S, Robins Edward G

机构信息

Singapore Bioimaging Consortium (A*STAR), Helios, 02-02, 11 Biopolis Way, Singapore, 138667, Singapore.

出版信息

J Labelled Comp Radiopharm. 2013 Feb;56(2):42-9. doi: 10.1002/jlcr.3019. Epub 2013 Jan 30.

Abstract

Integrins have become increasingly attractive targets for molecular imaging of angiogenesis with positron emission tomography or single-photon emission computed tomography, but the reliable production of radiopharmaceuticals remains challenging. A strategy for chemoselective labeling of the integrin ligand-c(RGDyK) peptide-has been developed on the basis of the Cu(I)-catalyzed conjugation reaction. Recently, we reported a nucleophilic detagging and fluorous solid-phase extraction method providing an easy way to implement an approach for obtaining 2-[(18) F]fluoroethyl azide. In this work, we report the practical use of this method for the preparation of the 2-[(18) F]fluoroethyl-triazolyl conjugated c(RGDyK) peptide: [(18) F]FtRGD. The two-step, two-pot synthesis, HPLC purification, and reformulation could be readily performed with a standard nucleophilic radiofluorination synthesizer (GE TRACERlab FXFN ), with minimal modifications. [(18) F]FtRGD was obtained in a solution for injection (>500 MBq/mL) in 10-30% nondecay-corrected radiochemical yield, excellent radiochemical purity (>98%), and 28 ± 13 GBq/µmol specific activity. [(18) F]FtRGD (Ki  = 54 ± 14 nM for αV β3 and 1.7 ± 0.2 nM for αV β5 ) was evaluated in mice and showed good stability in vivo, good tumor-to-background ratio (1.6 ± 0.3 %ID/g at 1.5 h post-injection in U87-MG tumors), and rapid urinary excretion. Therefore, [(18) F]FtRGD proved valuable for preclinical positron emission tomography imaging of integrin expression.

摘要

整合素已成为正电子发射断层扫描或单光子发射计算机断层扫描用于血管生成分子成像越来越有吸引力的靶点,但放射性药物的可靠生产仍然具有挑战性。基于铜(I)催化的共轭反应,已开发出一种对整合素配体 - c(RGDyK)肽进行化学选择性标记的策略。最近,我们报道了一种亲核去标签和氟固相萃取方法,为实施获得2 - [(18)F]氟乙基叠氮化物的方法提供了一种简便途径。在这项工作中,我们报道了该方法在制备2 - [(18)F]氟乙基 - 三唑基共轭c(RGDyK)肽:[(18)F]FtRGD中的实际应用。两步两锅合成、高效液相色谱纯化和重新配制可以使用标准的亲核放射性氟化合成器(GE TRACERlab FXFN)轻松完成,只需进行最小的修改。[(18)F]FtRGD以注射用溶液(>500 MBq/mL)形式获得,未校正衰变的放射化学产率为10% - 30%,放射化学纯度优异(>98%),比活度为28±13 GBq/µmol。[(18)F]FtRGD(αVβ3的Ki = 54±14 nM,αVβ5的Ki = 1.7±0.2 nM)在小鼠中进行了评估,显示出在体内具有良好的稳定性、良好的肿瘤与背景比值(在U87 - MG肿瘤中注射后1.5小时为1.6±0.3 %ID/g)以及快速的尿液排泄。因此,[(18)F]FtRGD被证明对整合素表达的临床前正电子发射断层扫描成像有价值。

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