Ryu Eun Kyoung, Wu Zhanhong, Chen Kai, Lazarus Lawrence H, Marczak Ewa D, Sasaki Yusuke, Ambo Akihiro, Salvadori Severo, Ren Chuancheng, Zhao Heng, Balboni Gianfranco, Chen Xiaoyuan
Molecular Imaging Program at Stanford, Department of Radiology and Bio-X Program, Stanford University School of Medicine, Stanford, CA 94305, USA.
J Med Chem. 2008 Mar 27;51(6):1817-23. doi: 10.1021/jm7014765. Epub 2008 Mar 1.
Identification and pharmacological characterization of two new selective delta-opioid receptor antagonists, derived from the Dmt-Tic pharmacophore, of potential utility in positron emission tomography (PET) imaging are described. On the basis of its high delta selectivity, H-Dmt-Tic--Lys(Z)-OH (reference compound 1) is a useful starting point for the synthesis of (18)F-labeled compounds prepared by the coupling of N-succinimidyl 4-[ (18)F]fluorobenzoate ([(18)F]SFB) with Boc-Dmt-Tic--Lys(Z)-OH under slightly basic conditions at 37 degrees C for 15 min, deprotection with TFA, and HPLC purification. The total synthesis time was 120 min, and the decay-corrected radiochemical yield of [(18)F]- 1 was about 25-30% ( n = 5) starting from [(18)F]SFB ( n = 5) with an effective specific activity about 46 GBq/micromol. In vitro autoradiography studies showed prominent uptake of [ (18)F]- 1 in the striatum and cortex with significant blocking by 1 and UFP-501 (selective delta-opioid receptor antagonist), suggesting high specific binding of [(18)F]- 1 to delta-opioid receptors. Noninvasive microPET imaging studies revealed the absence of [(18)F]- 1 in rat brain, since it fails to cross the blood-brain barrier. This study demonstrates the suitability of [ (18)F]- 1 for imaging peripheral delta-opioid receptors.
本文描述了两种新的选择性δ-阿片受体拮抗剂的鉴定及其药理学特性,这两种拮抗剂源自Dmt-Tic药效基团,在正电子发射断层扫描(PET)成像中具有潜在应用价值。基于其高δ选择性,H-Dmt-Tic-Lys(Z)-OH(参考化合物1)是合成(18)F标记化合物的有用起始点,该化合物通过在37℃微碱性条件下将N-琥珀酰亚胺基4-[(18)F]氟苯甲酸酯([(18)F]SFB)与Boc-Dmt-Tic-Lys(Z)-OH偶联15分钟,然后用三氟乙酸脱保护并通过高效液相色谱纯化制备。总合成时间为120分钟,从[(18)F]SFB(n = 5)开始,[(18)F]-1的衰变校正放射化学产率约为25-30%(n = 5),有效比活度约为46 GBq/μmol。体外放射自显影研究表明,[(18)F]-1在纹状体和皮质中摄取显著,1和UFP-501(选择性δ-阿片受体拮抗剂)可显著阻断摄取,表明[(18)F]-1与δ-阿片受体具有高特异性结合。非侵入性微型PET成像研究显示大鼠脑中不存在[(18)F]-1,因为它无法穿过血脑屏障。本研究证明了[(18)F]-1适用于外周δ-阿片受体成像。