Department of Pharmaceutics and Biopharmaceutics, Institute of Pharmacy, University of Tromsø, N-9037 Tromsø, Norway.
J Med Chem. 2010 Feb 25;53(4):1732-40. doi: 10.1021/jm9015813.
The labeling of biomolecules for positron emission tomography (PET) with no-carrier-added fluorine-18 is almost exclusively accomplished using prosthetic groups in a two step procedure. The inherent complexity of the process renders full automation a challenge and leads to protracted synthesis times. Here we describe a new (18)F-labeled prosthetic group based on nicotinic acid tetrafluorophenyl ester. Reaction of [(18)F]fluoride at 40 degrees C with the trimethylammonium precursor afforded 6-[(18)F]fluoronicotinic acid tetrafluorophenyl ester ([(18)F]F-Py-TFP) directly in 60-70% yield. [(18)F]F-Py-TFP was conveniently purified by Sep-Pak cartridge prior to incubation with a peptide containing the RGD sequence. The desired conjugate was formed rapidly and in good yields. An in vitro receptor-binding assay for the integrin alpha(v)beta(3) was established to explore competition with peptide and peptidomimetic prepared from F-Py-TFP with (125)I-echistatin. The nonradioactive conjugates were found to possess high binding affinities with calculated K(i) values in the low nanomolar range.
使用无载体添加的氟-18 对生物分子进行正电子发射断层扫描(PET)的标记几乎完全是通过两步程序使用假体基团来完成的。该过程固有的复杂性使得完全自动化成为一项挑战,并导致合成时间延长。在这里,我们描述了一种基于烟酸四氟苯酯的新型(18)F 标记的假体基团。在 40 摄氏度下,[(18)F]氟化物与三甲铵前体反应,直接以 60-70%的产率得到 6-[(18)F]氟代烟酸四氟苯酯([(18)F]F-Py-TFP)。[(18)F]F-Py-TFP 在与含有 RGD 序列的肽孵育之前,可以通过 Sep-Pak 小柱方便地进行纯化。所需的缀合物迅速形成,产率良好。建立了针对整合素α(v)β(3)的体外受体结合测定法,以探索与肽和从 F-Py-TFP 制备的肽类似物与(125)I-echistatin 的竞争。发现非放射性缀合物具有高结合亲和力,计算的 K(i)值在纳摩尔范围内。